The ldp1 Mutation Affects the Expression of Auxin-Related Genes and Enhances SAM Size in Rice

Author:

Sun Zhanglun1,Mei Tianrun1ORCID,Tan Xuan1,Feng Tingting1,Li Ruining1ORCID,Duan Sumei1,Zhao Heming1,Ye Yafeng2,Liu Binmei2ORCID,Zhou Aifeng3,Ai Hao1ORCID,Huang Xianzhong1ORCID

Affiliation:

1. Center for Crop Biotechnology, College of Agriculture, Anhui Science and Technology University, Chuzhou 239000, China

2. Key Laboratory of High Magnetic Field and Ion Beam Physical Biology, Hefei Institutes of Physical Science, Chinese Academy of Sciences, Hefei 230001, China

3. Anhui Xin Fu Xiang Tian Ecological Agriculture Co., Ltd., Maanshan 238200, China

Abstract

Panicle type is one of the important factors affecting rice (Oryza sativa L.) yield, and the identification of regulatory genes in panicle development can provide significant insights into the molecular network involved. This study identified a large and dense panicle 1 (ldp1) mutant produced from the Wuyunjing 7 (WYJ7) genotype, which displayed significant relative increases in panicle length, number of primary and secondary branches, number of grains per panicle, grain width, and grain yield per plant. Scanning electron microscopy results showed that the shoot apical meristem (SAM) of ldp1 was relatively larger at the bract stage (BM), with a significantly increased number of primary (PBM) and secondary branch (SBM) meristematic centers, indicating that the ldp1 mutation affects early stages in SAM development Comparative RNA-Seq analysis of meristem tissues from WYJ7 and ldp1 at the BM, PBM, and SBM developmental stages indicated that the number of differentially expressed genes (DEGs) were highest (1407) during the BM stage. Weighted gene coexpression network analysis (WGCNA) revealed that genes in one module (turquoise) are associated with the ldp1 phenotype and highly expressed during the BM stage, suggesting their roles in the identity transition and branch differentiation stages of rice inflorescences. Hub genes involved in auxin synthesis and transport pathways, such as OsAUX1, OsAUX4, and OsSAUR25, were identified. Moreover, GO and KEGG analysis of the DEGs in the turquoise module and the 1407 DEGs in the BM stage revealed that a majority of genes involved in tryptophan metabolism and auxin signaling pathway were differentially expressed between WYJ and ldp1. The genetic analysis indicated that the ldp1 phenotype is controlled by a recessive monogene (LDP1), which was mapped to a region between 16.9 and 18.1 Mb on chromosome seven. This study suggests that the ldp1 mutation may affect the expression of key genes in auxin synthesis and signal transduction, enhance the size of SAM, and thus affect panicle development. This study provides insights into the molecular regulatory network underlying rice panicle morphogenesis and lays an important foundation for further understanding the function and molecular mechanism of LDP1 during panicle development.

Funder

Education Department of Anhui Province

Anhui Province Key Research and Development Program

Talent Introduction Start-up Fund Project of Anhui Science and Technology University

Industry University Research Cooperation Project Shouxian Branch Center for the Transformation of Scientific and Technological Achievements of Anhui University of Science and Technology

Anhui Province College Student Innovation and Entrepreneurship Training Program

Publisher

MDPI AG

Reference62 articles.

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