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木虱与其主要原核内共生菌的共物种形成。

Cospeciation of psyllids and their primary prokaryotic endosymbionts.

作者信息

Thao M L, Moran N A, Abbot P, Brennan E B, Burckhardt D H, Baumann P

机构信息

Microbiology Section, University of California, Davis, California 95616-8665, USA.

出版信息

Appl Environ Microbiol. 2000 Jul;66(7):2898-905. doi: 10.1128/AEM.66.7.2898-2905.2000.

Abstract

Psyllids are plant sap-feeding insects that harbor prokaryotic endosymbionts in specialized cells within the body cavity. Four-kilobase DNA fragments containing 16S and 23S ribosomal DNA (rDNA) were amplified from the primary (P) endosymbiont of 32 species of psyllids representing three psyllid families and eight subfamilies. In addition, 0.54-kb fragments of the psyllid nuclear gene wingless were also amplified from 26 species. Phylogenetic trees derived from 16S-23S rDNA and from the host wingless gene are very similar, and tests of compatibility of the data sets show no significant conflict between host and endosymbiont phylogenies. This result is consistent with a single infection of a shared psyllid ancestor and subsequent cospeciation of the host and the endosymbiont. In addition, the phylogenies based on DNA sequences generally agreed with psyllid taxonomy based on morphology. The 3' end of the 16S rDNA of the P endosymbionts differs from that of other members of the domain Bacteria in the lack of a sequence complementary to the mRNA ribosome binding site. The rate of sequence change in the 16S-23S rDNA of the psyllid P endosymbiont was considerably higher than that of other bacteria, including other fast-evolving insect endosymbionts. The lineage consisting of the P endosymbionts of psyllids was given the designation Candidatus Carsonella (gen. nov.) with a single species, Candidatus Carsonella ruddii (sp. nov.).

摘要

木虱是取食植物汁液的昆虫,在体腔内的特化细胞中携带着原核内共生体。从代表三个木虱科和八个亚科的32种木虱的初级(P)内共生体中扩增出含有16S和23S核糖体DNA(rDNA)的4千碱基DNA片段。此外,还从26种木虱中扩增出了0.54千碱基的木虱核基因无翅基因片段。由16S - 23S rDNA和宿主无翅基因构建的系统发育树非常相似,数据集兼容性测试表明宿主和内共生体系统发育之间没有显著冲突。这一结果与木虱共同祖先的单一感染以及随后宿主和内共生体的共同物种形成相一致。此外,基于DNA序列的系统发育一般与基于形态学的木虱分类法一致。P内共生体的16S rDNA的3'端与细菌域的其他成员不同,缺乏与mRNA核糖体结合位点互补的序列。木虱P内共生体的16S - 23S rDNA中的序列变化速率明显高于其他细菌,包括其他快速进化的昆虫内共生体。由木虱的P内共生体组成的谱系被命名为候选卡氏菌属(新属),只有一个物种,即鲁氏候选卡氏菌(新种)。

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1
Cospeciation of psyllids and their primary prokaryotic endosymbionts.木虱与其主要原核内共生菌的共物种形成。
Appl Environ Microbiol. 2000 Jul;66(7):2898-905. doi: 10.1128/AEM.66.7.2898-2905.2000.

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