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最大叶绿体基因(ORF2280)的结构与进化:被子植物进化过程中的内部可塑性与多基因丢失

Structure and evolution of the largest chloroplast gene (ORF2280): internal plasticity and multiple gene loss during angiosperm evolution.

作者信息

Downie S R, Katz-Downie D S, Wolfe K H, Calie P J, Palmer J D

机构信息

Department of Biology, Indiana University, Bloomington 47405.

出版信息

Curr Genet. 1994 Apr;25(4):367-78. doi: 10.1007/BF00351492.

Abstract

We have determined the nucleotide sequence of the Pelargonium x hortorum ORF2280 homolog, the largest gene in the plastid genome of most land plants, and compared it to published homologs from Nicotiana tabacum, Epifagus virginiana, Spinacia oleracea, and Marchantia polymorpha. Multiple alignment of protein sequences requires an extraordinary number of gaps, indicating a very high frequency of insertion/deletion events during the evolution of the protein; however, the overall predicted size of the protein varies relatively little among the five species. At 2,109 codons, the Pelargonium gene is smaller than other land plant ORF2280 homologs and exhibits a rate of nucleotide substitution several times higher relative to Nicotiana, Epifagus, and Spinacia. Southern-blot and restriction-mapping studies were carried out to uncover length variation in ORF2280 homologs from 279 species (representing 111 families) of angiosperms. In many independent angiosperm lineages, this gene has sustained deletions ranging in size from 200 bp to almost 6 kb. Based on the severity of deletions, we postulate that the chloroplast homolog of ORF2280 has become nonfunctional in at least four independent lineages of angiosperms.

摘要

我们已经确定了天竺葵(Pelargonium x hortorum)ORF2280同源基因的核苷酸序列,该基因是大多数陆地植物质体基因组中最大的基因,并将其与烟草(Nicotiana tabacum)、弗吉尼亚无叶寄生草(Epifagus virginiana)、菠菜(Spinacia oleracea)和地钱(Marchantia polymorpha)已发表的同源基因进行了比较。蛋白质序列的多重比对需要大量的空位,这表明该蛋白质在进化过程中插入/缺失事件的频率非常高;然而,这五个物种中该蛋白质的总体预测大小变化相对较小。天竺葵基因有2109个密码子,比其他陆地植物的ORF2280同源基因小,并且相对于烟草、弗吉尼亚无叶寄生草和菠菜,其核苷酸替代率要高几倍。我们进行了Southern杂交和限制性图谱研究,以揭示来自279种被子植物(代表111个科)的ORF2280同源基因的长度变异。在许多独立的被子植物谱系中,该基因发生了大小从200 bp到近6 kb不等的缺失。基于缺失的严重程度,我们推测ORF2280的叶绿体同源基因在至少四个独立的被子植物谱系中已失去功能。

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