昆虫病原线虫(异habditidae和Steinernematidae)防治印度大白菜白病菌(Pieris canidia)的体外研究

H. Lalramnghaki, Lalram liana, V. Liana, Vanlalhlim puia, H. Lalremsanga, S. T. Lalzarzovi
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引用次数: 0

摘要

蚤是十字花科作物的严重害虫之一,对农作物造成广泛危害。因此,昆虫病原线虫(epn)是生物防治害虫的理想候选者。在实验室条件下,研究了米佐拉姆邦4种本地EPNs——印度异芽孢杆菌(Heterorhabditis indica)、包氏异芽孢杆菌(Heterorhabditis baujardi)、桑氏异芽孢杆菌(steinerma sangi)和苏氏异芽孢杆菌(steinerma surkhetense)对假单胞菌的抑菌效果。采用10、25、50、100和200条感染幼虫/幼虫(IJs/幼虫)不同浓度测定昆虫尸体上的幼虫死亡率、寄主渗透率和后代产生量。4种EPN在不同的线虫浓度和观察期均表现出较高的致病性。在200 IJs/幼虫的浓度下,苏氏弧菌孵育72小时,桑氏弧菌和印度弧菌孵育96小时,包氏弧菌孵育120小时的死亡率为100%。从LC50和LT50的值来看,4种线虫中印度僵菌的致病性最强,桑氏僵菌的致病性最低。孵育24 h后,印度伊蚊、包氏伊蚊、苏氏伊蚊和桑吉伊蚊的LC50值分别为88.60、98.29、113.26和95.61 IJs/幼虫。在10 IJs/幼虫时,籼稻丝蛾、鲍家氏丝蛾、桑吉氏丝蛾和苏氏丝蛾的LT50值分别为88.12、90.69、88.102.30和88.11 hr。研究还发现,4种EPN均能成功感染害虫,并表现出较高的渗透率。此外,所有的线虫分离株都能在假单胞虫的幼虫尸体中产生大量的ij,这在不同的EPN物种之间存在显著差异。以包氏弧菌最多,其次为印度弧菌、苏氏弧菌和桑吉弧菌。因此,我们的研究结果表明,所有四种EPN分离株都有潜力开发为假单胞菌的生物防治剂。
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In-vitro Study on the Efficacy of Entomopathogenic Nematodes (Heterorhabditidae and Steinernematidae) for the Control of the Indian Cabbage White, Pieris canidia
Pieris canidia is one of the serious pests of cruciferous crops causing extensive damage to agricultural crops. Entomopathogenic nematodes (EPNs) therefore represent ideal candidates for biological control of the pest. In this study, the efficacy of four indigenous EPNs species, Heterorhabditis indica, Heterorhabditis baujardi, Steinernema sangi, and Steinernema surkhetense from Mizoram was evaluated against P. canidia under laboratory condition. Different concentrations of nematodes, 10, 25, 50, 100, and 200 infective juveniles per larva (IJs/larva) were used to evaluate larval mortality rate, host penetration rate, and progeny production in insect cadaver. All the four EPN species showed high pathogenicity against the pest for different nematode concentrations and observation periods. At a concentration of 200 IJs/larva, cent percent mortality of the pest was recorded at 72 hr post-incubation for S. surkhetense, 96 hr for S. sangi and H. indica, and 120 hr post-incubation for H. baujardi. Based on the values of LC50 and LT50, H. indica was the most pathogenic among the four nematode species while S. sangi was the least pathogenic. After 24 hr of incubation, the LC50 values of H. indica, H. baujardi, S. surkhetense, and S. sangi were 88.60, 98.29, 113.26 and 95.61 IJs/larva, respectively. At 10 IJs/larva, the LT50 values of H. indica, H. baujardi, S. sangi, and S. surkhetense were 88.12, 90.69, 88.102.30, and 88.11 hr, respectively. The study also disclosed that all the four EPN species successfully infect the pest and showed high rate of penetration into the host. Furthermore, all the nematode isolates were capable of producing large numbers of IJs in larval cadaver of P. canidia that significantly varies between the EPN species. The isolate H. baujardi produced the highest number of IJs followed by H. indica, S. surkhetense, and S. sangi. Our findings therefore reveal that all the four EPN isolates have the potential to be developed as biological control agents for P. canidia.
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