The lncRNA1‐miR6288b‐3p‐PpTCP4‐PpD2 module regulates peach branch number by affecting brassinosteroid biosynthesis

Author:

Wang Xiaobei123ORCID,Yan Lixia1ORCID,Li Tianhao1ORCID,Zhang Jie1ORCID,Zhang Yajia1ORCID,Zhang Junjie1ORCID,Lian Xiaodong123ORCID,Zhang Haipeng123ORCID,Zheng Xianbo123ORCID,Hou Nan123ORCID,Cheng Jun123ORCID,Wang Wei123ORCID,Zhang Langlang123ORCID,Ye Xia123ORCID,Li Jidong24ORCID,Feng Jiancan123ORCID,Tan Bin123ORCID

Affiliation:

1. College of Horticulture Henan Agricultural University 218 Pingan Road Zhengzhou 450046 China

2. Henan Engineering and Technology Center for Peach Germplasm Innovation and Utilization Zhengzhou 450046 China

3. Henan Provincial International Joint Laboratory of Horticultural Crops Zhengzhou 450046 China

4. College of Forestry Henan Agricultural University 218 Pingan Road Zhengzhou 450046 China

Abstract

Summary Branch number is one of the most important agronomic traits of fruit trees such as peach. Little is known about how LncRNA and/or miRNA modules regulate branching through transcription factors. Here, we used molecular and genetic tools to clarify the molecular mechanisms underlying brassinosteroid (BR) altering plant branching. We found that the number of sylleptic branch and BR content in pillar peach (‘Zhaoshouhong’) was lower than those of standard type (‘Okubo’), and exogenous BR application could significantly promote branching. PpTCP4 expressed great differentially comparing ‘Zhaoshouhong’ with ‘Okubo’. PpTCP4 could directly bind to DWARF2 (PpD2) and inhibited its expression. PpD2 was the only one differentially expressed key gene in the path of BR biosynthesis. At the same time, PpTCP4 was identified as a target of miR6288b‐3p. LncRNA1 could act as the endogenous target mimic of miR6288b‐3p and repress expression of miR6288b‐3p. Three deletions and five SNP sites of lncRNA1 promoter were found in ‘Zhaoshouhong’, which was an important cause of different mRNA level of PpTCP4 and BR content. Moreover, overexpressed PpTCP4 significantly inhibited branching. A novel mechanism in which the lncRNA1‐miR6288b‐3p‐PpTCP4‐PpD2 module regulates peach branching number was proposed.

Funder

National Natural Science Foundation of China

Publisher

Wiley

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