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植物基因组中类Ty1-copia内源性逆转录病毒的系统发育证据。

Phylogenetic evidence for Ty1-copia-like endogenous retroviruses in plant genomes.

作者信息

Laten H M

机构信息

Biology Department, Loyola University Chicago, IL 60626, USA.

出版信息

Genetica. 1999;107(1-3):87-93.

Abstract

SIRE-1 is a multi-copy, Ty1-copia-like retroelement family found in the genome of Glycine max. A sequenced SIRE-1 genomic copy has an uninterrupted ORF that can be translated into a gag-pol polyprotein, followed by an unprecedented second ORF whose conceptual translation yielded a theoretical protein predicted to possess many of the same secondary structural elements found in mammalian retroviral envelope proteins. Similar, but clearly pseudogenic, envelope-like sequences were recovered from conceptual translations of 10 Arabidopsis GenBank accessions. All were associated with identifiable Ty1-copia-like retroelements. Phylogenetic analysis of the adjacent ribonuclease H regions from these sequences and three similarly endowed elements, two from maize and one from tomato, indicate that the 14 elements constitute a monophyletic group distinct from several closely related plant Ty1-copia-like elements in which pol is immediately followed by a downstream LTR. The conservation of identifiable env-like gene features suggests that these plant elements are endogenous retroviruses whose ancestors were acquired from animal vectors. The finding that the env and env-less retroelements identified in this study form distinct lineages does not support the hypothesis that horizontal transmission of retrotransposons is sponsored by ancestral infectious retroviruses that subsequently lost all traces of env genes.

摘要

SIRE - 1是在大豆基因组中发现的一个多拷贝、类似Ty1 - copia的逆转录元件家族。一个已测序的SIRE - 1基因组拷贝有一个不间断的开放阅读框(ORF),可被翻译成一种gag - pol多蛋白,随后是一个前所未有的第二个开放阅读框,其概念性翻译产生一种理论蛋白,预计该蛋白具有许多在哺乳动物逆转录病毒包膜蛋白中发现的相同二级结构元件。从10个拟南芥基因库登录号的概念性翻译中获得了相似但明显为假基因的包膜样序列。所有这些序列都与可识别的类似Ty1 - copia的逆转录元件相关。对这些序列以及来自玉米的两个和来自番茄的一个具有类似特征的元件的相邻核糖核酸酶H区域进行系统发育分析表明,这14个元件构成一个单系群,与几个密切相关的植物类似Ty1 - copia的元件不同,在这些植物元件中,pol紧接着是下游的长末端重复序列(LTR)。可识别的类似env基因特征的保守性表明,这些植物元件是内源性逆转录病毒,其祖先从动物载体获得。本研究中鉴定出的env和无env逆转录元件形成不同谱系这一发现,不支持逆转座子水平传播由随后失去所有env基因痕迹的祖传感染性逆转录病毒促成这一假说。

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