首页> 外文期刊>Horticulture research. >Evolution and roles of cytokinin genes in angiosperms 1: Do ancient IPTs play housekeeping while non-ancient IPTs play regulatory roles?
【24h】

Evolution and roles of cytokinin genes in angiosperms 1: Do ancient IPTs play housekeeping while non-ancient IPTs play regulatory roles?

机译:Cytokinin基因在Angiosperms中的演变和作用1:古代IPTS玩家务,而非古代IPTS扮演监管角色?

获取原文
       

摘要

Isopentenyltransferase (IPT) genes, including those encoding ATP/ADP-IPTs and tRNA-IPTs, control the rate-limiting steps of the biosynthesis of N6-(Δ2-isopentenyl)adenine (iP)-type and trans-zeatin (tZ)-type cytokinins and cis-zeatin (cZ)-type cytokinins, respectively. However, the evolution and roles of these IPTs in angiosperms are not well understood. Here, we report comprehensive analyses of the origins, evolution, expression patterns, and possible roles of ATP/ADP-IPTs and tRNA-IPTs in angiosperms. We found that Class I and II tRNA-IPTs likely coexisted in the last common ancestor of eukaryotes, while ATP/ADP-IPTs likely originated from a Class II tRNA-IPT before the divergence of angiosperms. tRNA-IPTs are conservatively retained as 2–3 copies, but ATP/ADP-IPTs exhibit considerable expansion and diversification. Additionally, tRNA-IPTs are constitutively expressed throughout the plant, whereas the expression of ATP/ADP-IPTs is tissue-specific and rapidly downregulated by abiotic stresses. Furthermore, previous studies and our present study indicate that ATP/ADP-IPTs and their products, iPs/tZs, may regulate responses to environmental stresses and organ development in angiosperms. We therefore hypothesize that tRNA-IPTs and the associated cZs play a housekeeping role, whereas ATP/ADP-IPTs and the associated iP/tZ-type cytokinins play regulatory roles in organ development and stress responses in angiosperms, which echoes the conclusions and hypothesis presented in the accompanying study by Wang, X. et al Evolution and roles of cytokinin genes in angiosperms 2: Do ancient CKXs play housekeeping roles while non-ancient CKXs play regulatory roles? Hortic Res https://doi.org/10.1038/s41438-020-0246-z.
机译:异戊烯酰转移酶(IPT)基因,包括编码ATP / ADP-IPTS和TRNA-IPT的基因,控制N6-(Δ2-异戊烯基)腺嘌呤(IP)型和反式ZEATIN(TZ)的生物合成的速率限制步骤 - 分别型细胞蛋白和CIS-ZEEPIN(CZ)型细胞蛋白。然而,这些IPTS在Angiosperms中的演变和角色并不了解。在这里,我们综合分析了ATP / ADP-IPTS和TRNA-IPTS在AnuiSperms中的起源,演化,表达模式和可能的角色。我们发现I和II级 - IPTS可能在真核生物的最后一个共同的祖先中共存,而ATP / ADP-IPT可能起源于II类TRNA-IPT之前在AgeniSperms分歧之前。 TRNA-IPTS保守地保留为2-3份,但ATP / ADP-IPTS表现出相当大的扩展和多样化。另外,TRNA-IPTS在整个植物中构成型表达,而ATP / ADP-IPTS的表达是组织特异性的并且通过非生物应激迅速下调。此外,之前的研究和我们现在的研究表明,ATP / ADP-IPTS及其产品,IPS / TZ,可以调节对心血管中的环境压力和器官发育的反应。因此,我们假设TRNA-IPTS和相关的CZS起作用的内政作用,而ATP / ADP-IPTS和相关的IP / TZ型细胞素蛋白在随机植物中的器官开发和压力反应中发挥调节作用,其结论和假设呼应所呈现的结论和假设在随附的研究中由王,X.等人的进化和角色在高管培养中的进化和作用2:做古代ckxs在非古代ckxs扮演监管角色的同时发挥家庭作用吗? hortic res https://doi.org/10.1038/s41438-020-0246-z。

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