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在毛白杨中,miR319a靶向的PtoTCP20通过与PtoWOX4和PtoWND6相互作用来调控次生生长。

MiR319a-targeted PtoTCP20 regulates secondary growth via interactions with PtoWOX4 and PtoWND6 in Populus tomentosa.

作者信息

Hou Jie, Xu Huimin, Fan Di, Ran Lingyu, Li Jianqiu, Wu Shuang, Luo Keming, He Xin-Qiang

机构信息

State Key Laboratory of Protein and Plant Gene Research, School of Life Sciences, Peking University, Beijing, 100871, China.

Chongqing Key Laboratory of Plant Resource Conservation and Germplasm Innovation, School of Life Sciences, Southwest University, Chongqing, 400715, China.

出版信息

New Phytol. 2020 Nov;228(4):1354-1368. doi: 10.1111/nph.16782. Epub 2020 Jul 31.

Abstract

Secondary growth is a key characteristic of trees, which requires the coordination of multiple regulatory mechanisms including transcriptional regulators and microRNAs (miRNAs). However, the roles of microRNAs in the regulation of secondary growth need to be explored in depth. Here, the role of miR319a and its target, PtoTCP20, in the secondary growth of Populus tomentosa stem was investigated using genetic and molecular analyses. The expression level of miR319a gradually decreased from primary to secondary growth in P. tomentosa, while that of PtoTCP20 gradually increased. MiR319a overexpression in seedlings resulted in delayed secondary growth and decreased xylem production, while miR319a knockdown and PtoTCP20 overexpression promoted secondary growth and increased xylem production. Further analysis showed that PtoTCP20 interacted with PtoWOX4a and activated PtoWND6 transcription in vitro and in vivo. Our data show that PtoTCP20 controls vascular cambium proliferation by binding to PtoWOX4a, and promotes secondary xylem differentiation by activating PtoWND6 transcription, thereby regulating secondary growth in P. tomentosa. Our findings provide insight into the molecular mechanisms underlying secondary growth in trees.

摘要

次生生长是树木的一个关键特征,它需要多种调控机制的协同作用,包括转录调节因子和微小RNA(miRNA)。然而,微小RNA在次生生长调控中的作用仍有待深入探索。在此,利用遗传学和分子分析方法,研究了miR319a及其靶标PtoTCP20在毛白杨茎次生生长中的作用。在毛白杨中,miR319a的表达水平从初生生长到次生生长逐渐降低,而PtoTCP20的表达水平则逐渐升高。在幼苗中过表达miR319a会导致次生生长延迟和木质部产量降低,而敲低miR319a和过表达PtoTCP20则会促进次生生长并增加木质部产量。进一步分析表明,PtoTCP20在体外和体内均与PtoWOX4a相互作用并激活PtoWND6转录。我们的数据表明,PtoTCP20通过与PtoWOX4a结合来控制维管形成层的增殖,并通过激活PtoWND6转录促进次生木质部分化,从而调控毛白杨的次生生长。我们的研究结果为树木次生生长的分子机制提供了见解。

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