Elite Alleles of EPE1 Identified via Genome-wide Association Studies Increase Panicle Elongation Length in Rice.

IF 4.8 1区 农林科学 Q1 AGRONOMY
Rice Pub Date : 2025-01-29 DOI:10.1186/s12284-025-00759-7
Hao Sun, Qiqi Yao, Mei Hai, Tianhu Li, Jinghan Sun, Zhengbo Liu, Yang Ang, Yingying Zhao, Yanan Zhang, Xianping Cheng, Tao Huang, Yinping Chang, Mingyu Du, Erbao Liu
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Abstract

Panicle elongation length (PEL), which determines panicle exsertion, is an important outcrossing-related trait. Mining genes controlling PEL in rice (Oryza sativa L.) has great practical significance in breeding cytoplasmic male sterility (CMS) lines with increased PEL and simplified, high-efficiency seed production. Genome-wide association studies (GWAS) were performed on the PELs of 440 rice accessions in 2022 and 2023, considering 3.17 million single-nucleotide polymorphisms (SNPs) to detect the effects of different genes on PEL. A total of five quantitative trait loci (QTLs) significantly associated with PEL were detected in both years by using the general linear model (GLM) and the mixed linear model (MLM). Notably, our study identified a previously unreported QTL, qPE2.1. Three candidate genes associated with PEL were predicted by non-synonymous SNPs and functional annotation. We characterize one gibberellin (GA)-related gene, LOC_Os02g41954 (OsGA2ox9), which encodes gibberellin 2-beta-dioxygenase 7 located in the cell membrane and nucleus. Gibberellin 2-oxidase (GA2ox) has been reported to control GA levels by inactivating GA via 2-β hydroxylation. Compared with the short PELs of wild plants, mutant plants with Cas9-induced knockout (KO) of OsGA2ox9 exhibit long PELs. Therefore, OsGA2ox9 was identified as the key gene controlling PEL in rice. Haplotype analysis showed that the two polymorphisms of HapD cause amino acid residue changes from phenylalanine to leucine (F/L43) and isoleucine to phenylalanine (I/F52), which lead to the enhancement of panicle exsertion; therefore, we renamed this gene ENHANCED PANICLE EXSERTION (EPE1). Our study showed that EPE1 (OsGA2ox9) negatively regulated GA4 content in rice. Elite alleles of EPE1 can be used to further improve PEL in CMS lines to increase the outcrossing rate and yield or seed production in hybrid rice breeding.

通过全基因组关联研究发现EPE1的精英等位基因增加了水稻穗伸长长度。
穗伸长长度(PEL)是一项重要的异交相关性状,它决定着穗外露。挖掘控制水稻PEL的基因对选育具有较高PEL水平和简化高效制种的细胞质雄性不育系具有重要的现实意义。采用全基因组关联研究(GWAS)对440份2022年和2023年水稻材料的PELs进行分析,考虑317万个单核苷酸多态性(snp),检测不同基因对PELs的影响。采用一般线性模型(GLM)和混合线性模型(MLM),两年内共检测到5个与PEL显著相关的数量性状位点(qtl)。值得注意的是,我们的研究发现了一个以前未报道的QTL qPE2.1。通过非同义snp和功能注释预测了与PEL相关的三个候选基因。我们鉴定了一个与赤霉素(GA)相关的基因LOC_Os02g41954 (OsGA2ox9),该基因编码位于细胞膜和细胞核中的赤霉素2- β -双加氧酶7。据报道,赤霉素2-氧化酶(gaox)通过2-β羟基化作用使GA失活,从而控制GA水平。与野生植物较短的PELs相比,cas9诱导敲除(KO) OsGA2ox9的突变植物的PELs较长。因此,OsGA2ox9被确定为水稻PEL的关键控制基因。单倍型分析表明,HapD的两个多态性导致氨基酸残基由苯丙氨酸变为亮氨酸(F/L43)和异亮氨酸变为苯丙氨酸(I/F52),从而导致穗外露增强;因此,我们将该基因重新命名为增强穗外露(EPE1)。我们的研究表明,EPE1 (OsGA2ox9)负调控水稻GA4含量。利用EPE1的精英等位基因,可以进一步改善CMS系的PEL,提高杂交水稻的异交率和产量或制种产量。
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来源期刊
Rice
Rice AGRONOMY-
CiteScore
10.10
自引率
3.60%
发文量
60
审稿时长
>12 weeks
期刊介绍: Rice aims to fill a glaring void in basic and applied plant science journal publishing. This journal is the world''s only high-quality serial publication for reporting current advances in rice genetics, structural and functional genomics, comparative genomics, molecular biology and physiology, molecular breeding and comparative biology. Rice welcomes review articles and original papers in all of the aforementioned areas and serves as the primary source of newly published information for researchers and students in rice and related research.
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