...
首页> 外文期刊>Molecular biology and evolution >Secondary Plastids of Euglenids and Chlorarachniophytes Function with a Mix of Genes of Red and Green Algal Ancestry
【24h】

Secondary Plastids of Euglenids and Chlorarachniophytes Function with a Mix of Genes of Red and Green Algal Ancestry

机译:Euglenids的二级塑性和喉肌菌具有红色和绿色藻类血管基因的混合物

获取原文
获取原文并翻译 | 示例
           

摘要

Endosymbiosis has been common all along eukaryotic evolution, providing opportunities for genomic and organellar innovation. Plastids are a prominent example. After the primary endosymbiosis of the cyanobacterial plastid ancestor, photosynthesis spread in many eukaryotic lineages via secondary endosymbioses involving red or green algal endosymbionts and diverse heterotrophic hosts. However, the number of secondary endosymbioses and how they occurred remain poorly understood. In particular, contrasting patterns of endosymbiotic gene transfer have been detected and subjected to various interpretations. In this context, accurate detection of endosymbiotic gene transfers is essential to avoid wrong evolutionary conclusions. We have assembled a strictly selected set of markers that provides robust phylogenomic evidence suggesting that nuclear genes involved in the function and maintenance of green secondary plastids in chlorarachniophytes and euglenids have unexpected mixed red and green algal origins. This mixed ancestry contrasts with the clear red algal origin of most nuclear genes carrying similar functions in secondary algae with red plastids.
机译:硫代菌病一直普遍普遍,沿着真核生物演化,为基因组和细胞细胞创新提供机会。塑料是一个突出的例子。在蓝藻塑体祖先的原发性内联症之后,光合作用在许多真核序列中通过次生患者涉及红色或绿藻内末端和不同的异养宿主。然而,次生胚胎的数量以及它们的发生方式仍然明白。特别地,已经检测到硫生物基因转移的对比模式并进行各种解释。在这种情况下,准确地检测胚胎基因转移对于避免错误的进化结论是必不可少的。我们已经组装了一组严格选择的标记,提供了强大的系统托儿述证据,表明参与血小伤血症和尤金菌的绿色二级塑体的功能和维持的核基因具有意想不到的混合红色和绿色藻类起源。这种混合的血汁与大多数核基因的透明红藻类起源与次藻中患有红色的藻类的透明红藻类起源对比。

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