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Molecular Systematics of Aphids and Their Primary Endosymbionts

机译:蚜虫及其初级内生菌的分子系统学

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Aphids constitute a monophyletic group within the order Homoptera (i.e., superfamily Aphidoidea). The Aphidoidea originated in the Jurassic about 150 my ago from some aphidiform ancestor whose origin can be traced back to about 250 my ago. They exhibit a mutualistic association with intracellular bacteria (Buchnera sp.) related to Escherichia coli. Buchnera is usually considered the aphids' primary endosymbiont. The association is obligate for both partners. The 16S rDNA-based phylogeny of Buchnera from four aphid families showed complete concordance with the morphology-based phylogeny of their aphid hosts, which pointed to a single original infection in a common ancestor of aphids some 100-250 my ago followed by cospeciation of aphids and Buchnera. This study concentrated on the molecular phylogeny of both the aphids and their primary endosymbionts of five aphid families including for the first time representatives of the family Lachnidae. We discuss results based on two Buchnera genes (16S rDNA and the β subunit of the F-ATPase complex) and on one host mitochondrial gene (the subunit 6 of the F-ATPase complex). Although our data do not allow definitive evolutionary relationships to be established among the different aphid families, some traditionally accepted groupings are put into question from both bacterial and insect data. In particular, the Lachnidae and the Aphididae, which from morphological data are considered recently evolved sister groups, do not seem to be as closely related as is usually accepted. Finally, we discuss our results in the light of the proposed parallel evolution of aphids and their endosymbionts.
机译:蚜虫在同翅目(Aphidoidea)的超家族中构成单亲系统。蚜虫起源于约150年前的侏罗纪,起源于一些蚜虫的祖先,其起源可以追溯到约250年前。它们与与大肠杆菌有关的细胞内细菌(Buchnera sp。)表现出相互关系。布氏杆菌通常被认为是蚜虫的主要内共生菌。协会对两个伙伴都有义务。来自四个蚜虫科的Buchnera基于16S rDNA的系统发育与它们蚜虫寄主的基于形态学的系统发育完全一致,这表明大约在我之前的100-250个蚜虫的共同祖先中发生了一次原始感染,随后进行了蚜虫的共同鉴定和布赫纳(Buchnera)。这项研究集中在五个蚜虫科的蚜虫及其主要内共生体的分子系统发育上,其中包括首次成为La科的代表。我们讨论基于两个布奇纳基因(16S rDNA和F-ATPase复合物的β亚基)和一个宿主线粒体基因(F-ATPase复合物的6亚基)的结果。尽管我们的数据不允许在不同的蚜虫科之间建立确定的进化关系,但细菌和昆虫数据都对一些传统上公认的分组提出了质疑。尤其是,从形态学数据上被认为是近来进化的姐妹群的天蛾科和蚜虫似乎并不像通常所接受的那样紧密。最后,根据拟议的蚜虫及其内共生菌的平行进化,我们讨论了我们的结果。

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