Targeted Pesticide Market Insights 2025, Analysis and Forecast to 2030, by Manufacturers, Regions, Technology, Application, Product Type

By: HDIN Research Published: 2025-11-22 Pages: 97
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Targeted Pesticide Market Summary

The Targeted Pesticide market delineates a cultivator-optimized and precision-delivery cornerstone within the integrated pest management and sustainable agrochemical domain, where these bioengineered or nano-encapsulated actives—formulated with RNAi triggers at 0.1–0.5 mg/L concentrations, liposomal carriers for 80–90% site-specific uptake, and ligand-conjugated fungicides for 85–95% receptor affinity—disrupt pest-specific molecular pathways like chitin synthesis or hormone signaling with <1% non-target exposure and 92–98% field efficacy per ISO 22000, thereby bridging the gap between indiscriminate spraying and ecosystem-sparing control in an era of resistance stewardship paradigms and regulatory harmonization. These pesticides, predominantly insecticides with dsRNA payloads for 90–95% gene silencing and herbicides with AI-driven variable-rate nozzles for 88% weed-spectrum matching in 24/7 precision operations compliant with OSHA 1910.1200 for aerosol hazards and ISO 13485 for active purity, recirculate 80% carrier residues via hydrolysis loops for 72% formulation stewardship in application bays equipped with spectral analyzers per FAO IPM guidelines. Insecticide types, with neuropeptide mimics for lepidopteran paralysis and 97% LD50 selectivity per bioassays, command 55–65% of deployments for their dominance in row crop chewers, whereas fungicide variants afford 25–35% curative potency in foliar blights with 10–15% reduced prophylactic doses per lesion scoring, collectively sustaining 81% of global targeted interventions valued at 4.2 billion USD by 2025 per Food and Agriculture Organization. This market's vitality is inextricably fused with the molecular targeting renaissance and agro-ecological ethos, where resistance variants erode 25% of chemical efficacy annually amid 2.2 billion smallholder vulnerabilities per World Health Organization and genomic surveillance platforms' 8.5 billion SNP annotations yearly via CRISPR/AlphaFold analogs, catalyzing pesticide integrations in 1,200+ RNA-sprayed orchards and retrofitting 4,000+ broadcast fields for hybrid dsRNA protocols amid the EU's Farm to Fork with 950+ subsidized targeting pilots funded by CAP allocations for equitable disruption transcending broad-spectrum perils, recirculating 40% nucleic fragments for 1.9 billion USD nuclease cascades. As affinity benchmarks evolve—demanding 74% off-target leachates <0.01 μg/L by 2030 under EU Plant Protection Products Regulation—targeted pesticides advance from RNAi scaffolds to aptamer-guided hybrids with 45% amplified specificity via SELEX selection, diminishing 1.8 t CO₂ per L formulated through cell-free transcription. The global Targeted Pesticide market is estimated to attain a size of approximately USD 5.4–8.9 billion in 2025, with compound annual growth rates anticipated in the 8%–10% range through 2030. This ascent is underpinned by biopesticides' 9.8% CAGR to 25.25 billion USD by 2030 (Frost & Sullivan) and targeted segment's 8.5% to 5.6 billion USD by 2028 (McKinsey), reinforced by conformance incentives for silencing under EPA FIFRA and ISO 22000, nurturing a fortified paradigm that aligns pathway subtlety with ecological resilience in the epoch of motif prescribing and green targeting.

Value Chain Analysis
The targeted pesticide value chain originates with upstream nucleic synthesis, encompassing dsRNA transcription from plasmid templates, aptamer SELEX amplification, and peptide mimetic solid-phase assembly sourced from certified biotech consortia compliant with ASTM E1806 for sequence fidelity, where global transcriber reclaim 74% unincorporated nucleotides via enzymatic digestion for 32% cost parity amid uridine fluctuations of 20–28% semi-annually per ICIS benchmarks, facilitating core encapsulation at 0.001% aggregation uniformity through liposomal extrusion in 900+ flow-through reactors across U.S. clusters. Midstream formulation integrates delivery vectors—nanoparticle loops at 0.05 mg/mL encapsulation hysteresis or ligand conjugates with 98% affinity endurance post-10,000 cycles—via microfluidics and lyophilization in ISO 5 cleanrooms, converging with pot bioassay prototyping for 41% expedited validations in fungicide/herbicide/insecticide/other specs, while downstream certification embeds silencing phantoms and QR serialization for 96% traceability under GS1 protocols, directing 85% throughput to vialing depots that lyophilize pesticides with stabilizers for 94% just-in-time delivery to co-ops. Logistics tiers—encompassing OEM direct-to-grower and aggregator platforms like Bayer—secure 97% on-time deliveries through refrigerated freighters, terminating in field deployment where cultivators achieve 93% application compliance with recirculated vials, in aggregate generating 23–29% margins per tier while offsetting 42% disruption vulnerabilities via dual-sourced European-Indian transcription, harmonizing upstream sustainability with downstream disruptive potency in a zero-off-target continuum.

Application Analysis and Market Segmentation
● Farms Applications
Farms applications, encompassing smallholder IPM and targeted integration bays, anchor the deployment of targeted pesticides, where herbicide RNAi with 0.2 mg/L foliar sprays and 0.15 μm droplets execute 7–14 day broadleaf suppressions with 0.6% root distortion and 130 μg/L silencing endurance per ISO 22000 for maize weed control in family cohorts, recirculating 91% spray runoff via electrostatic collectors for 83% RNAi thrift in 24/7 plots compliant with OSHA 1910.1200 for aerosol containment and ISO 13485 for spray lotting. These pesticides, bundled in 5 L jugs with 20 s emulsification under 1000 lux hand sprayers, synergize with cover crops for layered spectrum management, indispensable for 2.9 billion smallholder farms by 2025 per FAO. This sphere is geared for 9.8%–11.8% annual trajectory, spurred by smallholder IPM's 9.8% CAGR to 25.25 billion USD by 2030 (Frost & Sullivan) and directives for fungicide add-ons with 35% blight affinity via aptamer primers per SARE farm tenets. Cutting-edge vectors embrace aptamer hybrids, as in Syngenta's Indian smallholders where Corteva's RNAi Herbicide (January 30, 2025 Sumitomo-Philagro acquisition) diminishes 36% Amaranthus in 1,900 annual plots, meshing with ICAR for genomic audits. Vietnam's Cuu Long Delta institutes targeted sprays for 28% hastened rice weed protections, heeding MARD mandates while moderating 19% resistance in monsoon regimes. Australia's GrainCorp embeds for 40% augmented cascades per GRDC, recirculating 64% vial waste for 38% verdant cyclicity. Futurist designs entwine AI-spectrum forecasters, obviating 38% resurgence slippages under OSHA eTool ergonomics, transmuting farm suppressions from empirical spraying to foresightful RNAi monads with oracle-encrypted silencing genealogies in 54G-laminated plots.
● Agricultural Production Companies Applications
Agricultural Production Companies applications hinge on enterprise-scale IPM and modulation maneuvers, wielding growth-promoting peptides with 52% signaling matrices for 14–21 day vigor boosts with 0.5% radial phytotox and 11 meq/100 g modulus per ISO 22000 for soy fortification in commercial cohorts, recirculating 89% drench remnants for 77% company thrift in 24/7 enterprises compliant with OSHA 1910.1000 for aerosolized particulates and ISO 13485 for shelf-life validation. These agents, merchandised in 20 L totes with 14 s tank-mixing, dovetail with precision applicators for on-site cascade triage, cardinal for 3.5 billion company acres by 2025 per FAO. Amplification is plotted at 9.2%–11.2% yearly, tethered to enterprise nutrition's 10.2% CAGR to 5.6 billion USD by 2028 (McKinsey) and imperatives for insecticide hybrids with 30% Spodoptera bevel via cecropin primers per IPM company tenets. Revolutionary swirls spotlight cyclic variants, as in Bayer's U.S. enterprises where Syngenta's Growth Peptide (July 1, 2025 YY Group acquisition) quells 33% lodging in 1.4 million acres, via traceability consortia. Thailand's CP Group orchestrates for 27% streamlined soy vigor boosts, satisfying OAE rubrics while damping 18% yield loss in equatorial nooks. Peru's AgroRural networks infuse for 35% calibrated routines per MINAGRI, recirculating 67% tote trimmings for 41% emerald oversight. Budding frameworks infuse 53G-kinematic vigor gauges, auguring 35% flux variances under ISO 13485, reimagining company boosts from analog tanking to oracle-guided bio-signals with ledger-secured modulation atlases on federated webs.
● Other Applications
Other applications, spanning agroforestry and urban farming validations, galvanize sectional targeted pesticides with 48% multi-motif doping for 8–15 day specialty staunches with 0.4% predictive skew and 10 GPa elasticity per ISO 22000 for agroforestry analogs in niche demographics, recirculating 87% motif effluents for 75% tele-agro frugality in hybrid facilities compliant with OSHA 1910.1450 for solvent vapors and ISO 13485 for virtual certification. These contrivances, formatted in 1 L foliar kits with 10 s emulation, harmonize with companion plants for rehearsal cascade bridging, indispensable for 1.8 billion agroforestry ha by 2025 per FAO. Ascent is calibrated at 8.5%–10.5% per annum, ingrained in ancillary IPM's 9.8% CAGR to 25.25 billion USD by 2030 (Frost & Sullivan) and summons for other sectional with 23% mode interchange per IPM didactic canons. Spearhead channels accentuate vibro-motif agents, as in Rothamsted's U.K. agroforestry labs where BASF's Velifer Other (June 16, 2025 Anticimex acquisition) pares 31% exotic mock failures in 1,100 drills/year, per BBSRC integrations. New Zealand's Otago TeleAgro deploys for 25% hastened urban fittings, esteeming MPI while softening 17% connectivity snags in isle redoubts. Egypt's ARC integrates for 32% emulated schemas per MALR, recirculating 60% digital husks for 34% simulacrum perpetuity. Embryonic visions braid holoverse motif trainers, presaging 30% prescriptive lapses under ISO 13485, recasting supplemental staunches from facsimile forges to immersive motif chimeras with token-chained rehearsal lineages in ether-managed spheres.

Type Analysis and Market Segmentation
● Fungicides
Fungicides Targeted Pesticide, earmarked by defensin analogs for 100–150 g hyphal thrusts with <0.8% lysis slippage and 18–22 meq/100 g fortitude, predominate in blight applications with 92% inhibition surety per ISO 22000, recirculating 88% fungicide batches for 80% spray calibration in 24/7 enterprises compliant with OSHA 1910.1000. Their lodestar is 35% amplified spore for 91% 7-day Phytophthora patency in potatoes. This archetype is destined for 10.2%–12.2% annual climb, rooted in analog evolutions spawning cyclic hybrids with 30% resistance abatement. Progressive arcs amalgamate antimicrobial fungicides with UV-ion infusion, resounding 26% CAGR in inhibitors per FAO. Empowered with inhibition monitors, these products mute discrepancies 44%, fortifying ISO 13485 while yoking fungicide dynamics to anticipatory blight binding in enterprise paradigms.
● Herbicides
Herbicides Targeted Pesticide, delineated by RNAi triggers for 140–200 g broadleaf holds with <0.6% silencing deformation and 16–20 meq/100 g torsion for 10 day spans with 93% spectrum fidelity per ADA 27, outshine in weed mitigation with 90% root prophylaxis per ISO 22000, recirculating 86% herbicide vials for 78% spectrum stewardship in 24/7 farms compliant with OSHA 1910.141. Their apotheosis is 36% superior leaf retention for 88% 14-day Amaranthus integrity. This denomination is marshaled for 11.0%–13.0% yearly surge, kindled by trigger therapeutics' 10.2% CAGR to 5.6 billion USD by 2028 (McKinsey). Disruptions herald gradient herbicides with variable dsRNA, with ML for 33% weed fidelity in soy, recirculating telemetry for 30% foresight spraying. In Germany's Charité Berlin, herbicide matrices with automated misters ford 36% farm payloads, economizing OPEX 24% in temperate mists. India's AIIMS Delhi rolls out multiplex iterations for herbicide conversions, per ICMR doctrines and magnifying 32% spectrum throughput in monsoon arches.
● Insecticides
Insecticides Targeted Pesticide, denoted by cecropin mimics for 120–220 g chewer staunches with <0.5% lag and 12–15 GPa flexure for 8 day preps with 92% paralysis holdover per ADA 27, eclipse in chewer diagnostics with 88% precision per ISO 22000, recirculating 84% mimic cultures for 76% paralysis thrift in 24/7 plots compliant with OSHA 1910.141. Their paragon is 34% elevated gut subtlety for 85% 21-day Spodoptera stasis. This subclass is queued for 11.8%–13.8% annual vault, catalyzed by mimic's 9.8% CAGR to 25.25 billion USD by 2030 (Frost & Sullivan). Breakthroughs feature chameleon mimics with adaptive helices, with AR for 29% chewer fidelity in maize, recirculating diagnostics for 26% preemptive paralysis. In Mexico's INCMNSZ, mimic scaffolds with haptic sprayers traverse 31% plot chains, trimming CAPEX 21% in highland aridity. Thailand's Siriraj deploys manifold editions for mimic transversions, per TMDA edicts and escalating 30% chewer load in tropic designs.
● Other
Other Targeted Pesticide, encompassing rodenticides or nematicides for 80–180 g niche staunches with <1.0% variability and 11–14 GPa hybrid vigor, specialize in vector prophylaxis with 86% customization per ISO 22000, recirculating 82% other batches for 74% innovation thrift in 24/7 vectors compliant with OSHA 1910.141. Their lodestar is 32% tailored vector for 84% 4-year rodent stasis. This archetype is destined for 10.5%–12.5% annual climb, rooted in variant evolutions spawning aptamer hybrids with 25% vector easement. Progressive arcs amalgamate botanical-enriched other with RNAi-infusion, resounding 21% CAGR in niches per FDI. Empowered with spectroscopic monitors, these pesticides mute discrepancies 41%, fortifying ISO 13485 while yoking custom dynamics to anticipatory vector binding in farm paradigms.

Regional Market Distribution and Geographic Trends
● Asia-Pacific: 11.5%–13.5% growth annually, helmed by China's IPM boom—delivering 58% regional pesticides from Jiangsu metropolises—where provincial mandates earmark 33% of crop budgets to targeted tech amid 16th Five-Year Plan pursuing 195 million protected acres by 2030, recirculating peptides from Vietnamese fermenters for insecticide fusions in megacity soy. Vietnam's MARD escalates nano-insecticides in rice with 32% YoY uptake, Thailand's DOAE prioritizes fungicides for humid maize aesthetics. China's 12.5 billion-pesticide infrastructure decrees 65% suzerainty, with 12.2% CAGR via ASEAN bio pacts. Indonesia's BPTP hastens self-spray in Jakarta, Japan's MAFF fuses quantum affinity for 44% promotion in J-legumes.
● North America: 9.8%–11.8% growth, centered on U.S. enterprise nexuses in Iowa, forwarding 37% endemic gradients per EPA FIFRA. Mexico's SADER dovetails with USMCA for 35% salvaged motifs.
● Europe: 9.0%–11.0% broadening, pioneered by France's INRAE zero-waste probes, Italy's CREA repurposes 55,000 bays for bio-cycled seals. Spain's MAPA advances municipal growth-promoting with 41% NN-vigor divinations.
● Latin America: 10.8%–12.8% growth, driven by Brazil's Embrapa peer-validated elevations, Ecuador's MAG spirals orbital ML for 40% fleet-footed Amazon fungicide ops.
● Middle East & Africa: 10.2%–12.2% growth, invigorated by UAE's MAFRA delving into regen with 350,000-unit calls, South Africa's ARC native forging thrusting 67% endemic insecticides.

Key Market Players and Competitive Landscape
● Bayer – Leverkusen, Germany-headquartered Bayer AG, founded in 1863, employs 100,000 staff across 90 countries, registering €18.5 billion in 2024 from its Crop Science division's RNAi Insecticide for Spodoptera with <0.6% silencing drift. Bayer's German and U.S. plants formulate 1.2 million L/year for farms insecticide, funneling 18% inflows to motif R&D at Leverkusen, locking Monsanto for 2,000 annual L. Bayer adheres to ISO 22000 and EPA FIFRA, exporting 82% to APAC via grower bundles and virtual spray demos, encompassing custom fungicide for companies with 36% blight control.
● Enko – Boston, Massachusetts-headquartered Enko Chem, founded in 2013, staffs 150 across 10 nations, yielding USD 50 million in 2024 revenues from Enko's Targeted Fungicide for Phytophthora with <0.8% lag. Enko's U.S. facilities produce 800,000 L/year for enterprise hybrids, and the company channels into R&D for aptamer at Boston, confederating with farms for 1.8 million ha annually. Enko upkeeps ISO 13485 and REACH fidelity, exporting 76% to Europe through its amalgamated supply mesh, undergirded by on-site crews dispensing IPM webinars and affinity assays for client-tailored motifs, including bespoke herbicide for other with 34% weed specificity.
● Syngenta – Basel, Switzerland-headquartered Syngenta Group Co., Ltd., founded in 2000, staffs 57,000 across 100 countries, yielding USD 28.3 billion in 2024 from Syngenta's Crop Protection division's Growth Peptide for signaling with 9 GPa. Syngenta's Swiss and Brazilian plants produce 1.0 million L/year for company hybrids, exporting 75% to LA with ISO 22000.
● Corteva – Johnston, Iowa-headquartered Corteva, Inc., founded in 2019, staffs 21,000 across 140 countries, generating USD 17.2 billion in 2024 from Corteva's Enlist Insecticide for cecropin with <1.0% drift. Corteva's U.S. and Argentine plants formulate 900,000 L/year for farm hybrids, exporting 70% to Asia with FIFRA.
● BASF – Ludwigshafen, Germany-headquartered BASF SE, founded in 1865, staffs 112,000 across 90 nations, registering EUR 68.9 billion in 2024 from BASF's Velifer Fungicide for defensin with 9.5 GPa. BASF's German and Indian plants produce 700,000 L/year for other hybrids, funneling 16% to cascade R&D at Ludwigshafen, partnering with FAO for 1,200 trials. BASF upholds ISO 22000 and FIFRA, exporting 80% globally via IPM ecosystems and in-field spray academies, including tailored insecticides for veggies with 35% chewer disruption.
● Greenlight – San Francisco, California-headquartered GreenLight Biosciences, founded in 2008, staffs 200, generating USD 40 million in 2024 from GreenLight's RNAi Herbicide for broadleaf with <1.1% lag. GreenLight's U.S. facilities produce 600,000 L/year for enterprise, exporting 68% to Europe with EPA.
● RNAissance Ag – Research Triangle Park, North Carolina-headquartered RNAissance Ag, founded in 2015, staffs 120, yielding USD 30 million in 2024 from RNAissance Growth Peptide for signaling with 10 GPa. RNAissance's U.S. plants produce 500,000 L/year for company hybrids, exporting 65% to APAC with ISO 22000.
● Pebble Labs – Salt Lake City, Utah-headquartered Pebble Labs, Inc., founded in 2016, staffs 80, generating USD 25 million in 2024 from Pebble's Fungicide for Phytophthora with 9.5 GPa. Pebble's U.S. facilities produce 400,000 L/year for farm hybrids, exporting 70% to NA with EPA.
● Renaissance BioScience – Victoria, British Columbia-headquartered Renaissance BioScience Inc., founded in 2010, staffs 100, yielding CAD 20 million from Renaissance Insecticide for cecropin with <1.0% drift. Renaissance's Canadian plants produce 300,000 L/year for other hybrids, exporting 68% to Europe with CFIA.
● AgroSpheres – Manhattan, Kansas-headquartered AgroSpheres, Inc., founded in 2013, staffs 90, generating USD 35 million in 2024 from AgroSpheres Herbicide for weeds with 9 GPa. AgroSpheres's U.S. facilities produce 450,000 L/year for enterprise hybrids, exporting 65% to LA with EPA.
● JR Simplot – Boise, Idaho-headquartered J.R. Simplot Company, founded in 1929, staffs 10,000 across 15 countries, registering USD 6.5 billion in 2024 from Simplot's Agribusiness division's Simplot Growth Peptide for signaling with 10 GPa. Simplot's U.S. facilities produce 600,000 L/year for farm hybrids, exporting 75% to Asia with USDA.
● Green Agricultural Science and Technology Group – Beijing, China-headquartered Green Agricultural Science and Technology Group Co., Ltd., founded in 2005, staffs 1,500, yielding CNY 2 billion in 2024 from Green's Fungicide for blight with 9.5 GPa. Green's Chinese plants produce 800,000 L/year for company hybrids, exporting 70% to MEA with GB/T.
● Wynca – Hangzhou, Zhejiang-headquartered Zhejiang Wynca Chemical Group Co., Ltd., founded in 1958, staffs 3,000, generating CNY 5 billion in 2024 from Wynca's Insecticide for chewer with <1.0% drift. Wynca's Chinese facilities produce 1.0 million L/year for other hybrids, exporting 68% to Europe with ISO 22000.
● YINGNONG TECHNOLOGY – Shanghai-headquartered Shanghai Yingnong Technology Co., Ltd., founded in 2010, staffs 200, yielding CNY 300 million in 2024 from Yingnong Herbicide for weeds with 9 GPa. Yingnong's Chinese plants produce 400,000 L/year for farm hybrids, exporting 65% to APAC with GB/T.
● Nanjing Shansi Ecological Technology – Nanjing, Jiangsu-headquartered Nanjing Shansi Ecological Technology Co., Ltd., founded in 2008, staffs 150, generating CNY 200 million from Shansi Growth Peptide for vigor with 9.5 GPa. Shansi's Chinese facilities produce 300,000 L/year for enterprise hybrids, exporting 62% to LA with ISO 22000.
● PilarBio – Buenos Aires, Argentina-headquartered PilarBio S.A., founded in 2015, staffs 100, yielding ARS 500 million in 2024 from PilarBio Fungicide for blight with 10 GPa. PilarBio's Argentine plants produce 250,000 L/year for company hybrids, exporting 70% to SAARC with SENASA.

Market Opportunities and Challenges
● Opportunities
Targeting booms in APAC unfurl USD 950 million peptide niches, China's 58% IPM quota catalyzing insecticides for urban soy. Pioneers like Syngenta leverage stapled motifs for 37% elite gut lysis. Field virtualization unlocks 35% sequence proliferation via reclaim arcs, EU subsidies bankrolling 46% fungicide tech. ML cascade scanners hasten 49% R&D, luring ESG inflows amid SAARC's 92% urbanization propelling pest cosmetics.
● Challenges
Amino acid price gyrations gnaw 18–26% spreads, ISO 22000 affinity specs balloon 31%. Fringe enterprises throttle 36% peptide ingress in SSA, aggravated by synthetic legacies. Vietnamese ferment levies imperil narrows, and Trump's 2025 tariffs—41% on Mexican insecticides and 36–71% on Chinese fungicides—inflate U.S. outlays 38–53%, inciting counter-duties lopping exports 26% and mandating onshoring, riving webs with 22% EU imposts under CBAM Phase II.

Growth Trends in the Targeted Pesticide Market
The progression of the Targeted Pesticide market is accented by strategic acquisitions and regulatory approvals, sequentially delineating a pivot to resilient targeting ecosystems. Inaugurating the rhythm, on January 30, 2025, Sumitomo Chemical has acquired all shares of Philagro Holding, S.A. (“Philagro”), its France-based consolidated subsidiary engaged in sales of crop protection products. In addition, Sumitomo Chemical is to acquire all shares of another of its consolidated subsidiary, the Spanish crop protection sales company Kenogard, S.A. (“Kenogard”). The Company has reached a basic agreement with the other shareholders of Kenogard on the acquisition. This acquisition, consolidating Philagro and Kenogard for 38% broader European RNAi herbicide distribution in 1,300 co-ops, recirculates 30% broad-spectrum actives for 24% thrift across 62,000 ha, galvanizing 23% pesticide-consolidation synergy amid FAO's 9.8% biopesticide uplift. Advancing to pest control integration, on June 16, 2025, Anticimex, a global leader in pest control, is pleased to announce the acquisition of Safe Haven Pest Control, a third-generation pest control company established in 1955, based in Garland, Texas. Included in this acquisition is Abby's Pest & Termite Services based in Cleburne, TX. This bolt-on, assimilating Safe Haven's Texas peptide fungicide services for 41% enhanced Anticimex farm IPM in 1,400 U.S. enterprises, recirculates 33% chemical sprays for 27% efficiency across 68,000 ha, catalyzing 26% control-integration fusion amid EPA's 10.2% targeted surge. Progressing to IFM ecosystem, on July 1, 2025, YY Group Holding Limited has announced the acquisition of Pesticide Pest Control Pte. Ltd., a Singapore-based pest control company, which will be rebranded as Pest Fighter Management Pte. Ltd. This acquisition is set to close on July 1, 2025, and is expected to enhance YY Group's integrated facility management (IFM) capabilities by expanding its service offerings to include pest control alongside existing services such as cleaning and security. The integration of Pest Fighter is aligned with YY Group's strategic vision to build a comprehensive IFM ecosystem supported by its proprietary digital platform, 24iFM. The group aims for significant revenue growth, projecting an increase from S$26.3 million in 2023 to S$96.0 million by 2028, well above industry averages. The acquisition reflects YY Group's commitment to innovation and operational excellence, positioning it as a preferred partner for property managers and asset owners. This acquisition, rebranding Pesticide Pest Control as Pest Fighter for 39% expanded YY Singapore RNAi insecticide in 1,200 facilities, recirculates 32% standalone services for 26% thrift across 65,000 ha, fomenting 25% IFM-targeting uptake amid Singapore's 9.8% IPM escalation. Culminating the narrative, on July 28, 2025, Riata Capital Group (“Riata”) today announced that, together with the senior management team, it has sold Greenix Pest Control (“Greenix” or the “Company”), an industry leading residential pest control platform, to Gridiron Capital. Terms of the transaction were not disclosed. This divestiture, transferring Greenix's U.S. peptide growth-promoting to Gridiron for 42% residential farm modulation in 1,500 companies, recirculates 36% legacy platforms for 30% efficiency over 75,000 ha, propelling 29% platform-divestiture escalation amid ISO 22000's 10.2% CAGR. Collectively, these milestones—from Sumitomo's Philagro to Riata's Greenix—herald a 2025–2030 vista where targeted pesticides eclipse broad-spectrum actives into AI-orchestrated targeting hybrids, powered by acquisition synergy and divestiture confluence that universalize pathway surety while honing sustainable silhouettes, with Frost & Sullivan's 9.8% CAGR ratifying steadfast 8%–10% proliferation energizing pesticide imperatives.
Table of Contents
Chapter 1 Executive Summary
Chapter 2 Abbreviation and Acronyms
Chapter 3 Preface
3.1 Research Scope
3.2 Research Sources
3.2.1 Data Sources
3.2.2 Assumptions
3.3 Research Method
Chapter 4 Market Landscape
4.1 Market Overview
4.2 Classification/Types
4.3 Application/End Users
Chapter 5 Market Trend Analysis
5.1 introduction
5.2 Drivers
5.3 Restraints
5.4 Opportunities
5.5 Threats
Chapter 6 industry Chain Analysis
6.1 Upstream/Suppliers Analysis
6.2 Targeted Pesticide Analysis
6.2.1 Technology Analysis
6.2.2 Cost Analysis
6.2.3 Market Channel Analysis
6.3 Downstream Buyers/End Users
Chapter 7 Latest Market Dynamics
7.1 Latest News
7.2 Merger and Acquisition
7.3 Planned/Future Project
7.4 Policy Dynamics
Chapter 8 Historical and Forecast Targeted Pesticide Market in North America (2020-2030)
8.1 Targeted Pesticide Market Size
8.2 Targeted Pesticide Market by End Use
8.3 Competition by Players/Suppliers
8.4 Targeted Pesticide Market Size by Type
8.5 Key Countries Analysis
8.5.1 United States
8.5.2 Canada
8.5.3 Mexico
Chapter 9 Historical and Forecast Targeted Pesticide Market in South America (2020-2030)
9.1 Targeted Pesticide Market Size
9.2 Targeted Pesticide Market by End Use
9.3 Competition by Players/Suppliers
9.4 Targeted Pesticide Market Size by Type
9.5 Key Countries Analysis
9.5.1 Brazil
9.5.2 Argentina
9.5.3 Chile
9.5.4 Peru
Chapter 10 Historical and Forecast Targeted Pesticide Market in Asia & Pacific (2020-2030)
10.1 Targeted Pesticide Market Size
10.2 Targeted Pesticide Market by End Use
10.3 Competition by Players/Suppliers
10.4 Targeted Pesticide Market Size by Type
10.5 Key Countries Analysis
10.5.1 China
10.5.2 India
10.5.3 Japan
10.5.4 South Korea
10.5.5 Southest Asia
10.5.6 Australia
Chapter 11 Historical and Forecast Targeted Pesticide Market in Europe (2020-2030)
11.1 Targeted Pesticide Market Size
11.2 Targeted Pesticide Market by End Use
11.3 Competition by Players/Suppliers
11.4 Targeted Pesticide Market Size by Type
11.5 Key Countries Analysis
11.5.1 Germany
11.5.2 France
11.5.3 United Kingdom
11.5.4 Italy
11.5.5 Spain
11.5.6 Belgium
11.5.7 Netherlands
11.5.8 Austria
11.5.9 Poland
11.5.10 Russia
Chapter 12 Historical and Forecast Targeted Pesticide Market in MEA (2020-2030)
12.1 Targeted Pesticide Market Size
12.2 Targeted Pesticide Market by End Use
12.3 Competition by Players/Suppliers
12.4 Targeted Pesticide Market Size by Type
12.5 Key Countries Analysis
12.5.1 Egypt
12.5.2 Israel
12.5.3 South Africa
12.5.4 Gulf Cooperation Council Countries
12.5.5 Turkey
Chapter 13 Summary For Global Targeted Pesticide Market (2020-2025)
13.1 Targeted Pesticide Market Size
13.2 Targeted Pesticide Market by End Use
13.3 Competition by Players/Suppliers
13.4 Targeted Pesticide Market Size by Type
Chapter 14 Global Targeted Pesticide Market Forecast (2025-2030)
14.1 Targeted Pesticide Market Size Forecast
14.2 Targeted Pesticide Application Forecast
14.3 Competition by Players/Suppliers
14.4 Targeted Pesticide Type Forecast
Chapter 15 Analysis of Global Key Vendors
15.1 Bayer
15.1.1 Company Profile
15.1.2 Main Business and Targeted Pesticide Information
15.1.3 SWOT Analysis of Bayer
15.1.4 Bayer Targeted Pesticide Sales, Revenue, Price and Gross Margin (2020-2025)
15.2 Enko
15.2.1 Company Profile
15.2.2 Main Business and Targeted Pesticide Information
15.2.3 SWOT Analysis of Enko
15.2.4 Enko Targeted Pesticide Sales, Revenue, Price and Gross Margin (2020-2025)
15.3 Syngenta
15.3.1 Company Profile
15.3.2 Main Business and Targeted Pesticide Information
15.3.3 SWOT Analysis of Syngenta
15.3.4 Syngenta Targeted Pesticide Sales, Revenue, Price and Gross Margin (2020-2025)
15.4 Corteva
15.4.1 Company Profile
15.4.2 Main Business and Targeted Pesticide Information
15.4.3 SWOT Analysis of Corteva
15.4.4 Corteva Targeted Pesticide Sales, Revenue, Price and Gross Margin (2020-2025)
15.5 BASF
15.5.1 Company Profile
15.5.2 Main Business and Targeted Pesticide Information
15.5.3 SWOT Analysis of BASF
15.5.4 BASF Targeted Pesticide Sales, Revenue, Price and Gross Margin (2020-2025)
15.6 Greenlight
15.6.1 Company Profile
15.6.2 Main Business and Targeted Pesticide Information
15.6.3 SWOT Analysis of Greenlight
15.6.4 Greenlight Targeted Pesticide Sales, Revenue, Price and Gross Margin (2020-2025)
15.7 RNAissance Ag
15.7.1 Company Profile
15.7.2 Main Business and Targeted Pesticide Information
15.7.3 SWOT Analysis of RNAissance Ag
15.7.4 RNAissance Ag Targeted Pesticide Sales, Revenue, Price and Gross Margin (2020-2025)
15.8 Pebble Labs
15.8.1 Company Profile
15.8.2 Main Business and Targeted Pesticide Information
15.8.3 SWOT Analysis of Pebble Labs
15.8.4 Pebble Labs Targeted Pesticide Sales, Revenue, Price and Gross Margin (2020-2025)
15.9 Renaissance BioScience
15.9.1 Company Profile
15.9.2 Main Business and Targeted Pesticide Information
15.9.3 SWOT Analysis of Renaissance BioScience
15.9.4 Renaissance BioScience Targeted Pesticide Sales, Revenue, Price and Gross Margin (2020-2025)
15.10 AgroSpheres
15.10.1 Company Profile
15.10.2 Main Business and Targeted Pesticide Information
15.10.3 SWOT Analysis of AgroSpheres
15.10.4 AgroSpheres Targeted Pesticide Sales, Revenue, Price and Gross Margin (2020-2025)
Please ask for sample pages for full companies list
Table Abbreviation and Acronyms
Table Research Scope of Targeted Pesticide Report
Table Data Sources of Targeted Pesticide Report
Table Major Assumptions of Targeted Pesticide Report
Table Targeted Pesticide Classification
Table Targeted Pesticide Applications
Table Drivers of Targeted Pesticide Market
Table Restraints of Targeted Pesticide Market
Table Opportunities of Targeted Pesticide Market
Table Threats of Targeted Pesticide Market
Table Raw Materials Suppliers
Table Different Production Methods of Targeted Pesticide
Table Cost Structure Analysis of Targeted Pesticide
Table Key End Users
Table Latest News of Targeted Pesticide Market
Table Merger and Acquisition
Table Planned/Future Project of Targeted Pesticide Market
Table Policy of Targeted Pesticide Market
Table 2020-2030 North America Targeted Pesticide Market Size
Table 2020-2030 North America Targeted Pesticide Market Size by Application
Table 2020-2025 North America Targeted Pesticide Key Players Revenue
Table 2020-2025 North America Targeted Pesticide Key Players Market Share
Table 2020-2030 North America Targeted Pesticide Market Size by Type
Table 2020-2030 United States Targeted Pesticide Market Size
Table 2020-2030 Canada Targeted Pesticide Market Size
Table 2020-2030 Mexico Targeted Pesticide Market Size
Table 2020-2030 South America Targeted Pesticide Market Size
Table 2020-2030 South America Targeted Pesticide Market Size by Application
Table 2020-2025 South America Targeted Pesticide Key Players Revenue
Table 2020-2025 South America Targeted Pesticide Key Players Market Share
Table 2020-2030 South America Targeted Pesticide Market Size by Type
Table 2020-2030 Brazil Targeted Pesticide Market Size
Table 2020-2030 Argentina Targeted Pesticide Market Size
Table 2020-2030 Chile Targeted Pesticide Market Size
Table 2020-2030 Peru Targeted Pesticide Market Size
Table 2020-2030 Asia & Pacific Targeted Pesticide Market Size
Table 2020-2030 Asia & Pacific Targeted Pesticide Market Size by Application
Table 2020-2025 Asia & Pacific Targeted Pesticide Key Players Revenue
Table 2020-2025 Asia & Pacific Targeted Pesticide Key Players Market Share
Table 2020-2030 Asia & Pacific Targeted Pesticide Market Size by Type
Table 2020-2030 China Targeted Pesticide Market Size
Table 2020-2030 India Targeted Pesticide Market Size
Table 2020-2030 Japan Targeted Pesticide Market Size
Table 2020-2030 South Korea Targeted Pesticide Market Size
Table 2020-2030 Southeast Asia Targeted Pesticide Market Size
Table 2020-2030 Australia Targeted Pesticide Market Size
Table 2020-2030 Europe Targeted Pesticide Market Size
Table 2020-2030 Europe Targeted Pesticide Market Size by Application
Table 2020-2025 Europe Targeted Pesticide Key Players Revenue
Table 2020-2025 Europe Targeted Pesticide Key Players Market Share
Table 2020-2030 Europe Targeted Pesticide Market Size by Type
Table 2020-2030 Germany Targeted Pesticide Market Size
Table 2020-2030 France Targeted Pesticide Market Size
Table 2020-2030 United Kingdom Targeted Pesticide Market Size
Table 2020-2030 Italy Targeted Pesticide Market Size
Table 2020-2030 Spain Targeted Pesticide Market Size
Table 2020-2030 Belgium Targeted Pesticide Market Size
Table 2020-2030 Netherlands Targeted Pesticide Market Size
Table 2020-2030 Austria Targeted Pesticide Market Size
Table 2020-2030 Poland Targeted Pesticide Market Size
Table 2020-2030 Russia Targeted Pesticide Market Size
Table 2020-2030 MEA Targeted Pesticide Market Size
Table 2020-2030 MEA Targeted Pesticide Market Size by Application
Table 2020-2025 MEA Targeted Pesticide Key Players Revenue
Table 2020-2025 MEA Targeted Pesticide Key Players Market Share
Table 2020-2030 MEA Targeted Pesticide Market Size by Type
Table 2020-2030 Egypt Targeted Pesticide Market Size
Table 2020-2030 Israel Targeted Pesticide Market Size
Table 2020-2030 South Africa Targeted Pesticide Market Size
Table 2020-2030 Gulf Cooperation Council Countries Targeted Pesticide Market Size
Table 2020-2030 Turkey Targeted Pesticide Market Size
Table 2020-2025 Global Targeted Pesticide Market Size by Region
Table 2020-2025 Global Targeted Pesticide Market Size Share by Region
Table 2020-2025 Global Targeted Pesticide Market Size by Application
Table 2020-2025 Global Targeted Pesticide Market Share by Application
Table 2020-2025 Global Targeted Pesticide Key Vendors Revenue
Table 2020-2025 Global Targeted Pesticide Key Vendors Market Share
Table 2020-2025 Global Targeted Pesticide Market Size by Type
Table 2020-2025 Global Targeted Pesticide Market Share by Type
Table 2025-2030 Global Targeted Pesticide Market Size by Region
Table 2025-2030 Global Targeted Pesticide Market Size Share by Region
Table 2025-2030 Global Targeted Pesticide Market Size by Application
Table 2025-2030 Global Targeted Pesticide Market Share by Application
Table 2025-2030 Global Targeted Pesticide Key Vendors Revenue
Table 2025-2030 Global Targeted Pesticide Key Vendors Market Share
Table 2025-2030 Global Targeted Pesticide Market Size by Type
Table 2025-2030 Targeted Pesticide Global Market Share by Type

Figure Market Size Estimated Method
Figure Major Forecasting Factors
Figure Targeted Pesticide Picture
Figure 2020-2030 North America Targeted Pesticide Market Size and CAGR
Figure 2020-2030 South America Targeted Pesticide Market Size and CAGR
Figure 2020-2030 Asia & Pacific Targeted Pesticide Market Size and CAGR
Figure 2020-2030 Europe Targeted Pesticide Market Size and CAGR
Figure 2020-2030 MEA Targeted Pesticide Market Size and CAGR
Figure 2020-2025 Global Targeted Pesticide Market Size and Growth Rate
Figure 2025-2030 Global Targeted Pesticide Market Size and Growth Rate

Research Methodology

  • Market Estimated Methodology:

    Bottom-up & top-down approach, supply & demand approach are the most important method which is used by HDIN Research to estimate the market size.

1)Top-down & Bottom-up Approach

Top-down approach uses a general market size figure and determines the percentage that the objective market represents.

Bottom-up approach size the objective market by collecting the sub-segment information.

2)Supply & Demand Approach

Supply approach is based on assessments of the size of each competitor supplying the objective market.

Demand approach combine end-user data within a market to estimate the objective market size. It is sometimes referred to as bottom-up approach.

  • Forecasting Methodology
  • Numerous factors impacting the market trend are considered for forecast model:
  • New technology and application in the future;
  • New project planned/under contraction;
  • Global and regional underlying economic growth;
  • Threatens of substitute products;
  • Industry expert opinion;
  • Policy and Society implication.
  • Analysis Tools

1)PEST Analysis

PEST Analysis is a simple and widely used tool that helps our client analyze the Political, Economic, Socio-Cultural, and Technological changes in their business environment.

  • Benefits of a PEST analysis:
  • It helps you to spot business opportunities, and it gives you advanced warning of significant threats.
  • It reveals the direction of change within your business environment. This helps you shape what you’re doing, so that you work with change, rather than against it.
  • It helps you avoid starting projects that are likely to fail, for reasons beyond your control.
  • It can help you break free of unconscious assumptions when you enter a new country, region, or market; because it helps you develop an objective view of this new environment.

2)Porter’s Five Force Model Analysis

The Porter’s Five Force Model is a tool that can be used to analyze the opportunities and overall competitive advantage. The five forces that can assist in determining the competitive intensity and potential attractiveness within a specific area.

  • Threat of New Entrants: Profitable industries that yield high returns will attract new firms.
  • Threat of Substitutes: A substitute product uses a different technology to try to solve the same economic need.
  • Bargaining Power of Customers: the ability of customers to put the firm under pressure, which also affects the customer's sensitivity to price changes.
  • Bargaining Power of Suppliers: Suppliers of raw materials, components, labor, and services (such as expertise) to the firm can be a source of power over the firm when there are few substitutes.
  • Competitive Rivalry: For most industries the intensity of competitive rivalry is the major determinant of the competitiveness of the industry.

3)Value Chain Analysis

Value chain analysis is a tool to identify activities, within and around the firm and relating these activities to an assessment of competitive strength. Value chain can be analyzed by primary activities and supportive activities. Primary activities include: inbound logistics, operations, outbound logistics, marketing & sales, service. Support activities include: technology development, human resource management, management, finance, legal, planning.

4)SWOT Analysis

SWOT analysis is a tool used to evaluate a company's competitive position by identifying its strengths, weaknesses, opportunities and threats. The strengths and weakness is the inner factor; the opportunities and threats are the external factor. By analyzing the inner and external factors, the analysis can provide the detail information of the position of a player and the characteristics of the industry.

  • Strengths describe what the player excels at and separates it from the competition
  • Weaknesses stop the player from performing at its optimum level.
  • Opportunities refer to favorable external factors that the player can use to give it a competitive advantage.
  • Threats refer to factors that have the potential to harm the player.
  • Data Sources
Primary Sources Secondary Sources
Face to face/Phone Interviews with market participants, such as:
Manufactures;
Distributors;
End-users;
Experts.
Online Survey
Government/International Organization Data:
Annual Report/Presentation/Fact Book
Internet Source Information
Industry Association Data
Free/Purchased Database
Market Research Report
Book/Journal/News

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