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miR3954诱导phasiRNAs的产生进而影响柑橘的开花时间

已有 4811 次阅读 2017-9-5 08:32 |个人分类:每日摘要|系统分类:科研笔记

miR3954 is a trigger of phasiRNAs that affects flowering time in citrus


First author:Yuanlong Liu; Affiliations: Huazhong Agricultural University (华中农业大学): Wuhan, China

Corresponding author: Qiang Xu (徐强)


In plant, a few 22-nt miRNAs direct cleavages of their targets and trigger the biogenesis (生物合成) of phased small interfering RNAs (phasiRNAs; 阶段性小干扰RNA) in plant. In this study, we characterized a miRNA triggering phasiRNAs generation, miR3954, and explored its downstream target genes and potential function. Our results demonstrated that miR3954 showed specific expression in the flowers of citrus species, and it targeted a NAC transcription factor (Cs7 g22460) and two non-coding RNA transcripts (lncRNAs, Cs1 g09600 and Cs1 g09635). The production of phasiRNAs was detected from transcripts targeted by miR3954, and was further verified in both sequencing data and transient expression experiments. PhasiRNAs derived from the two lncRNAs targeted not only miR3954-targeted NAC gene but also additional NAC homologous genes. No homologous genes of these two lncRNAs were found in plants other than citrus species, implying that this miR3954-lncRNAs-phasiRNAs-NAC pathway is likely citrus-specific. Transgenic analysis indicated that the miR3954-overexpressing lines showed decreased transcripts of lncRNA, elevated (升高的) abundance of phasiRNAs and reduced expression of NAC genes. Interestingly, the overexpression of miR3954 leads to early flowering in citrus plants. In summary, our results illustrated a model of the regulatory network of miR3954-lncRNA-phasiRNAs-NAC, which may be functionally involved in flowering in citrus.


在植物中,22个核苷酸的miRNA会直接剪切其靶基因,并且诱发一些植物阶段性小干扰RNA的生物合成。本文中,作者鉴定了柑橘中一个由miRNA(即miR3954)诱导产生phasiRNAs的过程,并研究了miR3954下游的靶基因及其功能。研究结果表明miR3954在柑橘类物种的花中特异表达,其靶向一个NAC转录因子Cs7 g22460和两个非编码RNA转录本,即Cs1 g09600Cs1 g09635两个lncRNAs。由miR3954靶向的转录本中检测到了phasiRNAs的产生,并且在后续的测序数据及转基因试验中得到进一步的验证。源自于两个lncRNAs的PhasiRNAs不行靶向miR3954靶向的NAC基因,而且会靶向另外一些的NAC同源基因。这两个lncRNAs在除了柑橘类的其它植物中并未发现同源基因,表明本文发现的miR3954-lncRNAs-phasiRNAs-NAC这一通路是柑橘特异的。转基因试验显示miR3954过表达株系中的lncRNA转录本减少,phasiRNAs的丰度升高,NAC基因的表达降低。有趣的是miR3954的过表达会导致柑橘的提前开花。综上,本文的研究阐释了一个柑橘中参与开花调控的miR3954-lncRNA-phasiRNAs-NAC调控网络。


通讯徐强 (http://linx.hzau.edu.cn/szxx/zzjs/gsx/jiaoshou/201403/t20140305_37532.htm)

个人简介:1998-2002年,华中农业大学,园艺学士;2002-2007年,华中农业大学,园艺博士;2009-2010年,美国康奈尔大学合作研究。


研究方向:柑橘果实品质调控机理研究;耐黄龙病基因发掘与耐病机理解析;基于基因组学的分子工具开发及辅助育种。


(p.s. 徐强老师2013以第一作者身份在Nature Genetics上发表甜橙基因组,2017年又以第一通讯身份在Nature Genetics上发表柑橘基因组)


doi: 10.1111/tpj.13650


Journal: the plant journal
First Published data: September 2, 2017.


(P.S. 欢迎访问个人博客:https://plantfrontiers.wordpress.com

P.S. 欢迎关注微信公众号:微信号Plant_Frontiers


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