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体外大豆蚜Aphis glycines(半翅目:蚜科)的建立:一种促进蚜虫共生体、植物 - 昆虫相互作用及杀虫剂功效研究的工具。

Establishment of in vitro soybean aphids, Aphis glycines (Hemiptera: Aphididae): a tool to facilitate studies of aphid symbionts, plant-insect interactions and insecticide efficacy.

作者信息

Gunadi Andika, Bansal Raman, Finer John J, Michel Andy

机构信息

Department of Horticulture and Crop Science, Ohio Agricultural Research and Development Center, The Ohio State University, Wooster, OH, USA.

Department of Entomology, Ohio Agricultural Research and Development Center, The Ohio State University, Wooster, OH, USA.

出版信息

Pest Manag Sci. 2017 Jun;73(6):1229-1235. doi: 10.1002/ps.4448. Epub 2016 Dec 16.

DOI:10.1002/ps.4448
PMID:27680689
Abstract

BACKGROUND

Studies on plant-insect interactions of the soybean aphid, Aphis glycines (Matsumura), can be influenced by environmental fluctuations, status of the host plant and variability in microbial populations. Maintenance of aphids on in vitro-grown plants minimizes environmental fluctuations, provides uniform host materials and permits the selective elimination of aphid-associated microbes for more standardized controls in aphid research.

RESULTS

Aphids were reared on sterile, in vitro-grown soybean seedlings germinated on plant tissue culture media amended with a mixture of antimicrobials. For initiation and maintenance of in vitro aphid colonies, single aphids were inoculated onto single in vitro seedlings. After three rounds of transfer of 'clean' aphids to fresh in vitro seedlings, contamination was no longer observed, and aphids performed equally well when compared with those reared on detached leaves. The addition of the insecticides thiamethoxam and chlorantraniliprole to the culture medium confirmed uptake and caused significant mortality to the in vitro aphids. The use of the antimicrobial mixture removed the associated bacteria Arsenophonus but retained Buchnera and Wolbachia within the in vitro aphids.

CONCLUSION

The in vitro aphid system is a novel and highly useful tool to understand insecticidal efficacy and expand our knowledge of tritrophic interactions among plants, insects and symbionts. © 2016 Society of Chemical Industry.

摘要

背景

对大豆蚜(Aphis glycines,松村)植物-昆虫相互作用的研究可能会受到环境波动、寄主植物状态以及微生物种群变异性的影响。在体外培养的植物上饲养蚜虫可将环境波动降至最低,提供均匀的寄主材料,并允许选择性去除与蚜虫相关的微生物,从而在蚜虫研究中实现更标准化的控制。

结果

蚜虫饲养在添加了抗菌剂混合物的植物组织培养基上萌发的无菌体外培养大豆幼苗上。为了启动和维持体外蚜虫群落,将单个蚜虫接种到单个体外幼苗上。经过三轮将“清洁”蚜虫转移到新鲜的体外幼苗后,不再观察到污染,并且与在离体叶片上饲养的蚜虫相比,体外饲养的蚜虫表现同样良好。向培养基中添加杀虫剂噻虫嗪和氯虫苯甲酰胺证实蚜虫能够摄取,并导致体外饲养的蚜虫显著死亡。使用抗菌剂混合物去除了相关细菌Arsenophonus,但体外饲养的蚜虫体内仍保留了布赫纳氏体和沃尔巴克氏体。

结论

体外蚜虫系统是一种新颖且非常有用的工具,可用于了解杀虫效果,并扩展我们对植物、昆虫和共生体之间三营养相互作用的认识。© 2016 化学工业协会。

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