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Genome-Wide Identification of the Transcription Factors Involved in Citrus Fruit Ripening from the Transcriptomes of a Late-Ripening Sweet Orange Mutant and Its Wild Type

机译:从晚熟甜橙突变体及其野生型转录组的柑橘成熟果实转录因子的全基因组鉴定

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摘要

Fruit ripening is a genetically programmed process. Transcription factors (TFs) play key roles in plant development and ripening by temporarily and spatially regulating the transcription of their target genes. In this study, a total of 159 TFs were identified from a spontaneous late-ripening mutant 'Fengwan' (C. sinensis L. Osbeck) sweet orange (MT) and its wild-type counterpart ('Fengjie 72–1', WT) along the ripening period via the Transcription Factor Prediction of PlantTFDB 3.0. Fifty-two differentially expressed TFs were identified between MT and WT; 92 and 120 differentially expressed TFs were identified in WT and MT, respectively. The Venn diagram analysis showed that 16 differentially expressed TFs were identified between MT and WT and during the ripening of WT and MT. These TFs were primarily assigned to the families of C2H2, Dof, bHLH, ERF, MYB, NAC and LBD. Particularly, the number of TFs of the ERF family was the greatest between MT and WT. According to the results of the WGCNA analysis, a weighted correlation network analysis tool, several important TFs correlated to abscisic acid (ABA), citric acid, fructose, glucose and sucrose were identified, such as RD26, NTT, GATA7 and MYB21/62/77. Hierarchical cluster analysis and the expression analysis conducted at five fruit ripening stages further validated the pivotal TFs that potentially function during orange fruit development and ripening.
机译:水果成熟是一个基因编程的过程。转录因子(TFs)通过暂时和空间调节其靶基因的转录在植物发育和成熟中发挥关键作用。在这项研究中,从自发的晚熟突变体“凤湾”(C. sinensis L.Osbeck)甜橙(MT)及其野生型对应物(“凤姐72–1”,野生型)共鉴定出159个TF。通过PlantTFDB 3.0的转录因子预测来确定成熟期。在MT和WT之间鉴定了52个差异表达的TF。在WT和MT中分别鉴定出92和120个差异表达的TF。 Venn图分析显示,在MT和WT之间以及WT和MT成熟期间,鉴定出16个差异表达的TF。这些TF主要分配给C2H2,Dof,bHLH,ERF,MYB,NAC和LBD的家族。特别地,在MT和WT之间,ERF家族的TF数量最大。根据WGCNA分析的结果(加权相关网络分析工具),确定了与脱落酸(ABA),柠檬酸,果糖,葡萄糖和蔗糖相关的几个重要TF,例如RD26,NTT,GATA7和MYB21 / 62 / 77。在五个果实成熟阶段进行的层次聚类分析和表达分析进一步验证了在橙色果实发育和成熟期间可能起作用的关键TF。

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    Juxun Wu; Lili Fu; Hualin Yi;

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  • 年(卷),期 -1(11),4
  • 年度 -1
  • 页码 e0154330
  • 总页数 22
  • 原文格式 PDF
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