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一个与B类花同源异型基因具有姐妹群关系的新型MADS盒基因亚家族。

A novel MADS-box gene subfamily with a sister-group relationship to class B floral homeotic genes.

作者信息

Becker A, Kaufmann K, Freialdenhoven A, Vincent C, Li M-A, Saedler H, Theissen G

机构信息

Department of Molecular Plant Genetics, Max-Planck-Institute for Breeding Research, Köln, Germany.

出版信息

Mol Genet Genomics. 2002 Feb;266(6):942-50. doi: 10.1007/s00438-001-0615-8. Epub 2001 Dec 15.

Abstract

Class B floral homeotic genes specify the identity of petals and stamens during the development of angiosperm flowers. Recently, putative orthologs of these genes have been identified in different gymnosperms. Together, these genes constitute a clade, termed B genes. Here we report that diverse seed plants also contain members of a hitherto unknown sister clade of the B genes, termed B(sister) (B(s)) genes. We have isolated members of the B(s) clade from the gymnosperm Gnetum gnemon, the monocotyledonous angiosperm Zea mays and the eudicots Arabidopsis thaliana and Antirrhinum majus. In addition, MADS-box genes from the basal angiosperm Asarum europaeum and the eudicot Petunia hybrida were identified as B(s) genes. Comprehensive expression studies revealed that B(s) genes are mainly transcribed in female reproductive organs (ovules and carpel walls). This is in clear contrast to the B genes, which are predominantly expressed in male reproductive organs (and in angiosperm petals). Our data suggest that the B(s) genes played an important role during the evolution of the reproductive structures in seed plants. The establishment of distinct B and B(s) gene lineages after duplication of an ancestral gene may have accompanied the evolution of male microsporophylls and female megasporophylls 400-300 million years ago. During flower evolution, expression of B(s) genes diversified, but the focus of expression remained in female reproductive organs. Our findings imply that a clade of highly conserved close relatives of class B floral homeotic genes has been completely overlooked until recently and awaits further evaluation of its developmental and evolutionary importance. Electronic supplementary material to this paper can be obtained by using the Springer Link server located at http://dx.doi.org/10.1007/s00438-001-0615-8.

摘要

B类花同源异型基因在被子植物花的发育过程中决定花瓣和雄蕊的特征。最近,在不同的裸子植物中已鉴定出这些基因的假定直系同源基因。这些基因共同构成一个进化枝,称为B基因。在此我们报告,多种种子植物还包含一个此前未知的B基因姐妹进化枝的成员,称为B(姐妹)(B(s))基因。我们已从裸子植物马来买麻藤、单子叶被子植物玉米以及双子叶植物拟南芥和金鱼草中分离出B(s)进化枝的成员。此外,已确定基部被子植物欧洲细辛和双子叶植物矮牵牛中的MADS盒基因为B(s)基因。全面的表达研究表明,B(s)基因主要在雌性生殖器官(胚珠和心皮壁)中转录。这与主要在雄性生殖器官(以及被子植物花瓣)中表达的B基因形成鲜明对比。我们的数据表明,B(s)基因在种子植物生殖结构的进化过程中发挥了重要作用。在一个祖先基因复制后,不同的B和B(s)基因谱系的建立可能与4亿至3亿年前雄性小孢子叶和雌性大孢子叶的进化相伴。在花的进化过程中,B(s)基因的表达多样化,但表达重点仍在雌性生殖器官。我们的研究结果表明,直到最近,B类花同源异型基因的一个高度保守的近亲进化枝一直被完全忽视,有待进一步评估其发育和进化重要性。本文的电子补充材料可通过位于http://dx.doi.org/10.1007/s00438-001-0615-8的Springer Link服务器获取。

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