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从感染苹果蠹蛾(Dorysthenes huegelii)的异小杆线虫(Heterorhabditis indica)中分离出的枯草芽孢杆菌和地衣芽孢杆菌抑制了大蜡螟(Galleria mellonella)中的线虫产生。

Bacillus subtilis and B. licheniformis Isolated from Heterorhabditis indica Infected Apple Root Borer (Dorysthenes huegelii) Suppresses Nematode Production in Galleria mellonella.

机构信息

Research Scholar Department of Life Sciences, Mewar University, Gangrar, Chittorgarh, 312901, India.

Division of Nematology, ICAR-Indian Agricultural Research Institute, New Delhi, 110012, India.

出版信息

Acta Parasitol. 2021 Sep;66(3):989-996. doi: 10.1007/s11686-021-00366-8. Epub 2021 Mar 26.

Abstract

PURPOSE

Heterorhabdits indica successfully controlled apple root borer Dorysthenes huegelii in the orchards, but nematode-infected cadavers revealed the presence of non-symbiotic bacterial B. subtilis and B. licheniformis, and no subsequent generations of H. indica were produced (hampered recycling phenomenon). Intrigued, we tested the effect of the two Bacillus species on symbiotic association of H. indica-Photorhabdus luminescens.

METHODS

One-to-one competitive parallel line in vitro assays were carried out between P. luminescens and the two Bacillus spp., while in vivo H. indica development was studied on the test insect Galleria mellonella which were fed with Bacillus mixed diet, followed by nematode exposure.

RESULTS

Where P. luminescens was flanked by either of the two Bacillus species, only B. subtilis significantly suppressed its growth, while in reversed assays both the Bacillus growth was unaffected. Heterorhabditis indica was able to kill Galleria larvae pre-fed with the two Bacillus spp.; these cadavers did not develop the characteristic evenly distributed brick red coloration. Besides P. luminesecns, both Bacillus spp. were found to coexist in these cadavers. Development of hermaphrodites was not affected, but second-generation females, and final nematode progeny was reduced significantly. Monozenic lawns of B. subtilis and B. licheniformis did not support H. indica development.

CONCLUSION

These results show the reduced development of H. indica by the presence of the non-symbiotic bacteria in G. mellonella is likely to affect their ability to recycle in other insect larvae. Reduced recycling caused by non-symbiotic bacteria will reduce the overall long-term pest control benefits and have implications in the development of application strategies using entomopathogenic nematodes (EPNs) as insect control agents.

摘要

目的

印度异小杆线虫成功控制了果园中的苹果蠹蛾,但线虫感染的尸体中发现了非共生细菌枯草芽孢杆菌和地衣芽孢杆菌,且不再产生后续代的印度异小杆线虫(阻碍了循环现象)。受此启发,我们测试了这两种芽孢杆菌对印度异小杆线虫-发光杆菌共生关系的影响。

方法

在体外进行了 P. luminescens 与两种芽孢杆菌的一对一竞争平行线试验,同时在测试昆虫家蚕上研究了印度异小杆线虫的体内发育情况,这些昆虫喂食了混合有芽孢杆菌的饮食,然后暴露于线虫。

结果

当 P. luminescens 被两种芽孢杆菌中的任何一种包围时,只有枯草芽孢杆菌显著抑制了其生长,而在反向试验中,两种芽孢杆菌的生长均不受影响。印度异小杆线虫能够杀死预先喂食了两种芽孢杆菌的家蚕幼虫;这些尸体没有发育出特征性的均匀分布的砖红色。除了 P. luminesecns 外,还发现两种芽孢杆菌都存在于这些尸体中。雌雄同体的发育没有受到影响,但第二代雌性和最终的线虫后代明显减少。枯草芽孢杆菌和地衣芽孢杆菌的单殖菌草坪不能支持印度异小杆线虫的发育。

结论

这些结果表明,非共生细菌在家蚕中的存在会影响印度异小杆线虫在其他昆虫幼虫中循环的能力,从而导致其发育减少。非共生细菌引起的循环减少将降低昆虫防治用病原线虫(EPNs)的整体长期害虫防治效益,并对 EPNs 的应用策略的发展产生影响。

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