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携带参与蚜虫内共生菌(蚜虫内共生菌)亮氨酸生物合成相关基因的质粒的假定进化起源。

Putative evolutionary origin of plasmids carrying the genes involved in leucine biosynthesis in Buchnera aphidicola (endosymbiont of aphids).

作者信息

van Ham R C, Moya A, Latorre A

机构信息

Department of Genetics, University of Valencia, Spain.

出版信息

J Bacteriol. 1997 Aug;179(15):4768-77. doi: 10.1128/jb.179.15.4768-4777.1997.

Abstract

An 8.5-kb plasmid encoding genes (leuABCD) involved in leucine biosynthesis and a small plasmid of 1.74 kb of yet unknown function were found in the intracellular symbiont, Buchnera aphidicola, of two divergent aphid species, Thelaxes suberi and Tetraneura caerulescens, respectively. The leuABCD-carrying plasmid (pBTs1) was amplified from total aphid DNA by inverse long PCR, using outwardly oriented oligonucleotide primers specific to leuA. The resulting 8.2-kb PCR fragment as well as the 1.74-kb plasmid (pBTc1) were cloned and sequenced. pBTs1 differed from a previously described B. aphidicola plasmid (pRPE) of the aphid Rhopalosiphum padi by the presence of a small heat shock gene (ibp) and in the order of the leuABCD and repA genes. Comparison of both leucine plasmids to the small plasmid pBTc1 revealed extensive similarity with respect to putative replication functions as well as in the presence of a highly conserved open reading frame that was found to be homologous to Escherichia coli YqhA and Haemophilus influenzae HI0507 and which may encode an integral membrane protein. The three B. aphidicola plasmids most likely evolved from a common ancestral replicon, which in turn may be distantly related to IncFII plasmids. Phylogenetic affiliations of the B. aphidicola strains of the two aphid species were assessed by sequencing of their 16S rRNA genes. Evaluation of the distribution of the leuABCD-encoding plasmids within a phylogenetic framework suggests independent origins for pBTs1 and pRPE from an ancestral replicon resembling pBTc1. The implications for symbiotic essential amino acid biosynthesis and provisioning are discussed.

摘要

在两种不同的蚜虫物种——栓皮蚜(Thelaxes suberi)和蓝四脉绵蚜(Tetraneura caerulescens)的细胞内共生菌——蚜虫内共生菌(Buchnera aphidicola)中,分别发现了一个编码参与亮氨酸生物合成的基因(leuABCD)的8.5 kb质粒和一个功能未知的1.74 kb小质粒。携带leuABCD的质粒(pBTs1)通过反向长PCR从蚜虫总DNA中扩增得到,使用的是针对leuA的外向寡核苷酸引物。所得的8.2 kb PCR片段以及1.74 kb质粒(pBTc1)被克隆并测序。pBTs1与之前描述的来自禾谷缢管蚜(Rhopalosiphum padi)的蚜虫内共生菌质粒(pRPE)不同,在于它存在一个小热休克基因(ibp),以及leuABCD和repA基因的顺序不同。将这两个亮氨酸质粒与小质粒pBTc1进行比较,发现它们在假定的复制功能方面以及存在一个高度保守的开放阅读框方面具有广泛的相似性,该开放阅读框被发现与大肠杆菌YqhA和流感嗜血杆菌HI0507同源,可能编码一种整合膜蛋白。这三个蚜虫内共生菌质粒很可能起源于一个共同的祖先复制子,而这个复制子反过来可能与IncFII质粒有远缘关系。通过对两种蚜虫物种的蚜虫内共生菌菌株的16S rRNA基因进行测序,评估了它们的系统发育关系。在系统发育框架内对编码leuABCD的质粒分布的评估表明,pBTs1和pRPE起源于一个类似于pBTc1的祖先复制子,但彼此独立。文中讨论了其对共生必需氨基酸生物合成和供应的影响。

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