Transcription factor OsWRKY72 controls rice leaf angle by regulating LAZY1-mediated shoot gravitropism

Author:

Liu Lei12ORCID,Zhao Lirong12ORCID,Liu Yunwei3ORCID,Zhu Yi34ORCID,Chen Shidie35ORCID,Yang Lu3ORCID,Li Xia35ORCID,Chen Wanqin3ORCID,Xu Zhiyu3ORCID,Xu Peng1ORCID,Wang Houping34ORCID,Yu Diqiu345ORCID

Affiliation:

1. CAS Key Laboratory of Tropical Plant Resources and Sustainable Use, Xishuangbanna Tropical Botanical Garden, Chinese Academy of Sciences , Mengla , China

2. College of Life Sciences, University of Chinese Academy of Sciences , Beijing , China

3. State Key Laboratory for Conservation and Utilization of Bio-Resources in Yunnan, Yunnan University , 650500 Kunming , China

4. School of Life Sciences, Yunnan University , 650500 Kunming , China

5. Southwest United Graduate School , 650092 Kunming , China

Abstract

Abstract Leaf angle is a major trait of ideal architecture, which is considered to influence rice (Oryza sativa) cultivation and grain yield. Although a few mutants with altered rice leaf inclination angles have been reported, the underlying molecular mechanism remains unclear. In this study, we showed that a WRKY transcription factor gene, OsWRKY72, was highly expressed in the leaf sheath and lamina joint. Phenotypic analyses showed that oswrky72 mutants had smaller leaf angles than the wild type, while OsWRKY72 overexpression lines exhibited an increased leaf angle. This observation suggests that OsWRKY72 functions as a positive regulator, promoting the enlargement of the leaf angle. Our bioinformatics analysis identified LAZY1 as the downstream gene of OsWRKY72. Electrophoretic mobility shift assays and dual-luciferase analysis revealed that OsWRKY72 directly inhibited LAZY1 by binding to its promoter. Moreover, knocking out OsWRKY72 enhanced shoot gravitropism, which contrasted with the phenotype of lazy1 plants. These results imply that OsWRKY72 regulates the leaf angle through gravitropism by reducing the expression of LAZY1. In addition, OsWRKY72 could directly regulate the expression of other leaf angle–related genes such as FLOWERING LOCUS T-LIKE 12 (OsFTL12) and WALL-ASSOCIATED KINASE 11 (OsWAK11). Our study indicates that OsWRKY72 contributes positively to the expansion of the leaf angle by interfering with shoot gravitropism in rice.

Funder

Natural Science Foundation of China

Yunnan Applied Basic Research Projects

Yunnan High Level Talents Special Support Plan

Yunnan University

Publisher

Oxford University Press (OUP)

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