Romanov D A, Zakharov I A, Shaikevich E V
Vavilov Institute of General Genetics of the Russian Academy of Sciences, Moscow, Russia Moscow Region State University, Mytishi, Moscow region, Russia.
Vavilov Institute of General Genetics of the Russian Academy of Sciences, Moscow, Russia.
Vavilovskii Zhurnal Genet Selektsii. 2020 Oct;24(6):673-682. doi: 10.18699/VJ20.661.
Aphids are a diverse family of crop pests. Aphids formed a complex relationship with intracellular bacteria. Depending on the region of study, the species composition of both aphids and their facultative endosymbionts varies. The aim of the work was to determine the occurrence and genetic diversity of Wolbachia, Spiroplasma and Rickettsia symbionts in aphids collected in 2018-2019 in Moscow. For these purposes, 578 aphids from 32 collection sites were tested by PCR using specific primers. At least 21 species of aphids from 14 genera and four families were identified by barcoding method, of which 11 species were infected with endosymbionts. Rickettsia was found in six species, Wolbachia in two species, Spiroplasma in one species. The presence of Rickettsia in Impatientinum asiaticum, Myzus cerasi, Hyalopterus pruni, Eucallipterus tiliae, Chaitophorus tremulae and Wolbachia in Aphis pomi and C. tremulae has been described for the first time. A double infection with Rickettsia and Spiroplasma was detected in a half of pea aphid (Acyrthosiphon pisum) individuals. For the first time was found that six species of aphids are infected with Rickettsia that are genetically different from previously known. It was first discovered that A. pomi is infected with two Wolbachia strains, one of which belongs to supergroup B and is genetically close to Wolbachia from C. tremulae. The second Wolbachia strain from A. pomi belongs to the supergroup M, recently described in aphid species. Spiroplasma, which we observed in A. pisum, is genetically close to male killing Spiroplasma from aphids, ladybirds and moths. Both maternal inheritance and horizontal transmission are the pathways for the distribution of facultative endosymbiotic bacteria in aphids.
蚜虫是一类多样的作物害虫。蚜虫与细胞内细菌形成了复杂的关系。根据研究区域的不同,蚜虫及其兼性内共生体的物种组成也有所差异。这项工作的目的是确定2018 - 2019年在莫斯科采集的蚜虫中沃尔巴克氏体、螺原体和立克次氏体共生体的存在情况和遗传多样性。为此,使用特异性引物通过PCR对来自32个采集地点的578只蚜虫进行了检测。通过条形码方法鉴定出至少14个属、4个科的21种蚜虫,其中11种感染了内共生体。在6种蚜虫中发现了立克次氏体,2种蚜虫中发现了沃尔巴克氏体,1种蚜虫中发现了螺原体。首次描述了在亚洲凤仙花蚜、樱桃瘤头蚜、李短尾蚜、椴绵蚜、颤杨长足大蚜中存在立克次氏体,在苹果蚜和颤杨长足大蚜中存在沃尔巴克氏体。在一半的豌豆蚜个体中检测到立克次氏体和螺原体的双重感染。首次发现6种蚜虫感染了与先前已知的遗传不同的立克次氏体。首次发现苹果蚜感染了两种沃尔巴克氏体菌株,其中一种属于B超群,与颤杨长足大蚜的沃尔巴克氏体在遗传上相近。苹果蚜的第二种沃尔巴克氏体菌株属于M超群,最近在蚜虫物种中被描述。我们在豌豆蚜中观察到的螺原体在遗传上与蚜虫、瓢虫和蛾类中导致雄虫死亡的螺原体相近。母系遗传和水平传播都是兼性内共生细菌在蚜虫中传播的途径。