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首页> 外文期刊>BMC Genomics >Genome-wide analysis and characterization of Aux/IAA family genes related to fruit ripening in papaya ( Carica papaya L.)
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Genome-wide analysis and characterization of Aux/IAA family genes related to fruit ripening in papaya ( Carica papaya L.)

机译:与番木瓜果实成熟相关的Aux / IAA家族基因的全基因组分析和表征

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Background Auxin/indole-3-acetic acid (Aux/IAA) family genes encode short-lived nuclear proteins that mediate the responses of auxin-related genes and are involved in several plant developmental and growth processes. However, how Aux/IAA genes function in the fruit development and ripening of papaya ( Carica papaya L.) is largely unknown. Results In this study, a comprehensive identification and a distinctive expression analysis of 18 C. papaya Aux/IAA ( CpIAA ) genes were performed using newly updated papaya reference genome data. The Aux/IAA gene family in papaya is slightly smaller than that in Arabidopsis , but all of the phylogenetic subfamilies are represented. Most of the CpIAA genes are responsive to various phytohormones and expressed in a tissues-specific manner. To understand the putative biological functions of the CpIAA genes involved in fruit development and ripening, quantitative real-time PCR was used to test the expression profiling of CpIAA genes at different stages. Furthermore, an IAA treatment significantly delayed the ripening process in papaya fruit at the early stages. The expression changes of CpIAA genes in ACC and 1-MCP treatments suggested a crosstalk between auxin and ethylene during the fruit ripening process of papaya. Conclusions Our study provided comprehensive information on the Aux/IAA family in papaya, including gene structures, phylogenetic relationships and expression profiles. The involvement of CpIAA gene expression changes in fruit development and ripening gives us an opportunity to understand the roles of auxin signaling in the maturation of papaya reproductive organs.
机译:背景生长素/吲哚-3-乙酸(Aux / IAA)家族基因编码短暂的核蛋白,介导生长素相关基因的响应,并参与几种植物的发育和生长过程。然而,Aux / IAA基因如何在木瓜(Carica papaya L.)的果实发育和成熟中发挥功能是未知的。结果在这项研究中,使用最新更新的木瓜参考基因组数据,对18个木瓜番木瓜Aux / IAA(CpIAA)基因进行了全面的鉴定和独特的表达分析。木瓜中的Aux / IAA基因家族比拟南芥中的Aux / IAA基因家族要小一些,但是所有的系统发育亚科都可以代表。大多数CpIAA基因对各种植物激素都有反应,并以组织特异性方式表达。为了了解参与果实发育和成熟的CpIAA基因的假定生物学功能,使用定量实时PCR检测CpIAA基因在不同阶段的表达谱。此外,IAA处理在早期阶段显着延迟了木瓜果实的成熟过程。在ACC和1-MCP处理中CpIAA基因的表达变化表明,木瓜果实成熟过程中生长素和乙烯之间存在串扰。结论我们的研究提供了有关木瓜中Aux / IAA家族的全面信息,包括基因结构,系统发育关系和表达谱。 CpIAA基因表达的变化参与了果实的发育和成熟,这使我们有机会了解生长素信号在木瓜生殖器官成熟中的作用。

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