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苔藓植物(小立碗藓)同源物揭示的植物MADS-box基因的起源

Ancestry of plant MADS-box genes revealed by bryophyte (Physcomitrella patens) homologues.

作者信息

Krogan N T, Ashton N W

机构信息

1 Department of Biology, University of Regina, Regina, Saskatchewan, S4S 0A2, Canada.

出版信息

New Phytol. 2000 Sep;147(3):505-517. doi: 10.1046/j.1469-8137.2000.00728.x.

Abstract

Three MADS-box cDNA clones and two corresponding genomic sequences (gDNAs) have been isolated from the bryophyte Physcomitrella patens and sequenced. Our findings indicate that the genes may be expressed in a tissue- or age-specific manner, and that expression of one of them is regulated by an alternative splicing mechanism. Conceptual translation of the clones reveals that the encoded MADS-domain proteins have the typical plant-domain pattern (MIKC). Additionally, there is a high degree of conservation of intron number and positions between angiosperm MADS-box genes and the moss loci. These observations confirm the homology of moss and higher plant MADS-box genes. We conclude that the MIKC pattern evolved in MADS-box genes after the separation of the plant lineage from that of fungi and animals, and that it must have been present in the common ancestor of mosses, ferns and seed plants. Therefore it evolved at least 400 million yr ago. Phylogenetic analysis of a large subset of the sequenced plant MADS-box genes, incorporating those from P. patens, indicates that the bryophyte genes are not orthologues of spermatophyte genes belonging to any of the well recognized higher plant gene subfamilies. This conclusion accords well with reports that the known fern MADS-box genes also comprise subfamilies distinct from those of higher plants. Therefore we tentatively propose that the gene duplication and diversification events that created the MADS-box gene subfamilies, discernible in extant angiosperm and other spermatophyte groups, occurred after separation of the moss and fern lineages from the lineage which produced the higher plants.

摘要

已从苔藓植物小立碗藓中分离出三个MADS-box cDNA克隆和两个相应的基因组序列(gDNA)并进行了测序。我们的研究结果表明,这些基因可能以组织或年龄特异性方式表达,其中一个基因的表达受可变剪接机制调控。对这些克隆的概念性翻译表明,编码的MADS结构域蛋白具有典型的植物结构域模式(MIKC)。此外,被子植物MADS-box基因与苔藓基因座之间的内含子数量和位置高度保守。这些观察结果证实了苔藓和高等植物MADS-box基因的同源性。我们得出结论,MIKC模式在植物谱系与真菌和动物谱系分离后在MADS-box基因中进化,并且它一定存在于苔藓、蕨类植物和种子植物的共同祖先中。因此,它至少在4亿年前就已进化。对大量已测序植物MADS-box基因(包括来自小立碗藓的基因)的系统发育分析表明,苔藓植物基因不是属于任何公认的高等植物基因亚家族的种子植物基因的直系同源物。这一结论与已知蕨类植物MADS-box基因也包含与高等植物不同的亚家族的报道非常吻合。因此,我们初步提出,在现存被子植物和其他种子植物群体中可识别的产生MADS-box基因亚家族的基因复制和多样化事件,发生在苔藓和蕨类植物谱系与产生高等植物的谱系分离之后。

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