Malavathu Kavya, Godbole Varsha, Singh Anupama, Chandrika K S V Poorna, Prasad Ravulapalli Durga
ICARIndian Institute of Oilseeds Research, Rajendranagar, Hyderabad, Telangana 500030, India.
Division of Agricultural Chemicals, Indian Agricultural Research Institute, New Delhi 110012, India.
ACS Omega. 2025 May 11;10(20):20723-20731. doi: 10.1021/acsomega.5c01710. eCollection 2025 May 27.
Amidst the growing challenges posed by soilborne phytopathogens and the dual threats of abiotic and biotic stressors, sustainable solutions are imperative for safeguarding agricultural productivity. Chemical pesticides, though widely used, face limitations due to resistance development, residual toxicity, and overuse. Additionally, traditional filler-based bio formulations, such as wettable powders and suspension concentrates, often compromise spore viability, necessitating innovative alternatives. This study introduces eco-friendly controlled-release carrier-based biopolymers entrapping Trichoderma harzianum (Th4d) spores within cross-linked polymer-1 (CP-1) and polymer-2 (CP-2) matrices. Evaluated for spore viability, root colonization, and disease management, the formulation demonstrated slow and sustained spore release in soil and buffered environments. Notably, it retained spore viability for six months at elevated temperatures of 31 and 40 °C, underscoring its thermal stability and adaptability to warmer climates. Enhanced root colonization, both surface-level and endophytic, was observed, alongside improved agronomic parameters. Seed treatment with the CP-2 + Th4d boosted germination rates to 73.3% in soybean and 96.6% in castor, with seedling vigor indices reaching 1025 and 3536, respectively. Disease incidence was notably reduced, with quantifiable suppression levels, with Macrophomina root rot in soybean decreasing to 23.3% and Fusarium wilt in castor to 20%. These results highlight the potential of this novel formulation as a robust, sustainable alternative to conventional methods, offering a scalable solution to manage plant diseases effectively while addressing the challenges of chemical pesticide use.
在土传植物病原体带来的挑战日益增加以及非生物和生物胁迫双重威胁的背景下,可持续解决方案对于保障农业生产力至关重要。化学农药虽然广泛使用,但由于抗药性发展、残留毒性和过度使用而面临局限性。此外,传统的基于填料的生物制剂,如可湿性粉剂和悬浮剂,常常会损害孢子活力,因此需要创新的替代方案。本研究介绍了一种环保的基于控释载体的生物聚合物,它将哈茨木霉(Th4d)孢子包裹在交联聚合物-1(CP-1)和聚合物-2(CP-2)基质中。对该制剂进行了孢子活力、根部定殖和病害管理评估,结果表明其在土壤和缓冲环境中孢子释放缓慢且持续。值得注意的是,在31和40°C的高温下,它能保持孢子活力达六个月之久,凸显了其热稳定性以及对温暖气候的适应性。观察到根部定殖增强,包括表面定殖和内生定殖,同时农艺参数也得到改善。用CP-2 + Th4d进行种子处理,大豆的发芽率提高到73.3%,蓖麻的发芽率提高到96.6%,幼苗活力指数分别达到1025和3536。病害发生率显著降低,有可量化的抑制水平,大豆的菜豆壳球孢根腐病降至23.3%,蓖麻的镰刀菌枯萎病降至20%。这些结果突出了这种新型制剂作为传统方法的强大、可持续替代方案的潜力,提供了一种可扩展的解决方案,既能有效管理植物病害,又能应对化学农药使用带来的挑战。