...
首页> 外文期刊>Molecular biology and evolution >A Dead Gene Walking: Convergent Degeneration of a Clade of MADS-Box Genes in Crucifers
【24h】

A Dead Gene Walking: Convergent Degeneration of a Clade of MADS-Box Genes in Crucifers

机译:死基因行走:在十字架上的疯子箱基因薄膜的会聚变性

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Genes are "born," and eventually they "die." These processes shape the phenotypic evolution of organisms and are hence of great biological interest. If genes die in plants, they generally do so quite rapidly. Here, we describe the fate of GOA-like genes that evolve in a dramatically different manner. GOA-like genes belong to the subfamily of B-sister genes of MIKC-type MADS-box genes. Typical MIKC-type genes encode conserved transcription factors controlling plant development. We show that ABS-like genes, a Glade of B-sister genes, are indeed highly conserved in crucifers (Brassicaceae) maintaining the ancestral function of B-sister genes in ovule and seed development. In contrast, their closest paralogs, the GOA-like genes, have been undergoing convergent gene death in Brassicaceae. Intriguingly, erosion of GOA-like genes occurred after millions of years of coexistence with ABS-like genes. We thus describe Delayed Convergent Asymmetric Degeneration, a so far neglected but possibly frequent pattern of duplicate gene evolution that does not fit classical scenarios. Delayed Convergent Asymmetric Degeneration of GOA-like genes may have been initiated by a reduction in the expression of an ancestral GOA-like gene in the stem group of Brassicaceae and driven by dosage subfunctionalization. Our findings have profound implications for gene annotations in genomics, interpreting patterns of gene evolution and using genes in phylogeny reconstructions of species.
机译:基因是“出生”,最终他们“死亡”。这些过程塑造了生物体的表型演化,因此是巨大的生物学兴趣。如果基因在植物中死亡,它们通常会非常迅速。在这里,我们描述了果阿的基因的命运,以急剧不同的方式发展。 GOA样基因属于MIKC型疯箱基因的B姐妹基因的亚家族。典型的MIKC型基因编码控制植物开发的保守转录因子。我们表明ABS样基因,B姐妹基因的林位,确实是在霉菌(Brassicaceae)中高度保守,维持胚珠和种子发育中B姐妹基因的祖先功能。相比之下,他们最近的伞生素是果阿的基因,在芸苔痤疮中一直在进行会聚基因死亡。有趣的是,在数百万年与ABS样基因共存后发生果实基因的侵蚀。因此,我们描述了延迟的会聚不对称退化,到目前为止忽略了,但可能频繁的重复基因演进模式不适合经典情景。果皮样基因的延迟收敛不对称退化可能已经通过减少了黄铜基氏酸盐茎组中的祖先果皮样基因的表达和由剂量子官能化驱动而引发。我们的研究结果对基因组学中的基因注释产生了深远的影响,解释基因演化的模式和使用基因在系统发生重建中的基因。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号