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解析棘孢木霉(Tv1)对番茄中镰刀菌-线虫枯萎病复合体的生防潜力

Deciphering the Biocontrol Potential of Trichoderma asperellum (Tv1) Against Fusarium-Nematode Wilt Complex in Tomato.

作者信息

Anbalagan Selva A, Appusamy Sudha, Kumaresan Parthiban V, Chellappan Gopalakrishnan, Narayanan Swarnakumari, Rangasamy Anandham, Perveen Kahkashan, Bukhari Najat A, Sayyed Riyaz

机构信息

Department of Plant Pathology, Tamil Nadu Agricultural University, Coimbatore, Tamil Nadu, India.

Department of Plant Protection (Nematology), Horticultural College and Research Institute for Women, Navalur Kuttapattu, Tiruchirapalli, Tamil Nadu, India.

出版信息

J Basic Microbiol. 2025 Jan;65(1):e2400595. doi: 10.1002/jobm.202400595. Epub 2024 Oct 29.

Abstract

The study assessed Trichoderma spp. as a biocontrol agent for managing wilt-nematode complex in tomato crops, aiming to mitigate yield losses. Fusarium sp. and Meloidogyne sp. were isolated from infected plant samples and confirmed molecularly and morphologically as Fusarium oxysporum f.sp. lycopersici and Meloidogyne incognita. Four Trichoderma spp. procured from the Department of Plant Pathology, Tamil Nadu Agricultural University, India were identified molecularly as Trichoderma asperellum (Tv1), Trichoderma asperelloides (Tasd1), Trichoderma harzianum (Th1), and Trichoderma koningiopsis (Tk1) utilizing ITS and TEF1 primer pairs. Among them, Tv1 effectively inhibited the mycelial growth of pathogen isolates. Furthermore, crude metabolite of Tv1 exhibited similar effects. The mortality rate of M. incognita J2s ranged from 90.48% to 100% after 24-72 h of incubation and inhibition percentage of egg hatching reached 90.20%. The shoot length, root length, fresh weight, and dry weight of the tomato plants treated with Tv1 conidia were increased. In a pot experiment, Tv1 treatment reduced disease incidence by 64.57%, comparable to carbendazim treatment (82.32%). Tv1-treated plants had fewer root galls, egg masses, and J2s per 100 g of roots than the inoculated-untreated control plants. The root-knot index (RKI) was significantly lower in plants treated with carbafuran (1.98 ± 0.047) and Tv1 (3.06 ± 0.086) than in control (4.47 ± 0.109). The bio-control efficiency of Tv1 against M. incognita was 21.04%, and the nematodes' reproductive factor (RF) declined to 0.53 in Tv1 treatment group. Based on the findings above, it was established that Tv1 effectively controlled nematode populations and wilt disease when applied in soil.

摘要

该研究评估了木霉菌作为防治番茄作物青枯病-线虫复合病害的生物防治剂,旨在减轻产量损失。从受感染的植物样本中分离出镰刀菌属和根结线虫属,并通过分子和形态学方法确认为尖孢镰刀菌番茄专化型和南方根结线虫。从印度泰米尔纳德邦农业大学植物病理学系获得的四种木霉菌,利用ITS和TEF1引物对进行分子鉴定,分别为棘孢木霉(Tv1)、拟康氏木霉(Tasd1)、哈茨木霉(Th1)和康宁木霉(Tk1)。其中,Tv1有效抑制了病原菌分离物的菌丝生长。此外,Tv1的粗代谢产物也表现出类似的效果。南方根结线虫J2在培养24-72小时后的死亡率在90.48%至100%之间,卵孵化抑制率达到90.20%。用Tv1分生孢子处理的番茄植株的茎长、根长、鲜重和干重均有所增加。在盆栽试验中,Tv1处理使发病率降低了64.57%,与多菌灵处理(82.32%)相当。与接种未处理的对照植株相比,经Tv1处理的植株每100克根上的根瘤、卵块和J2数量更少。用克百威(1.98±0.047)和Tv1(3.06±0.086)处理的植株的根结指数(RKI)显著低于对照(4.47±0.109)。Tv1对南方根结线虫的生物防治效率为21.04%,在Tv1处理组中线虫的繁殖系数(RF)降至0.53。基于上述研究结果,证实了Tv1施用于土壤时能有效控制线虫种群和青枯病。

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