A potential candidate gene associated with the angles of the ear leaf and the second leaf above the ear leaf in maize
文献类型: 外文期刊
第一作者: Kuang, Tianhui
作者: Kuang, Tianhui;Hu, Can;Shaw, Ranjan Kumar;Zhang, Yudong;Fan, Jun;Bi, Yaqi;Jiang, Fuyan;Guo, Ruijia;Fan, Xingming;Hu, Can
作者机构:
关键词: Maize; Ear leaf angle; Angle of the second leaf above the ear leaf; GWAS; QTL
期刊名称:BMC PLANT BIOLOGY ( 影响因子:5.3; 五年影响因子:5.9 )
ISSN: 1471-2229
年卷期: 2023 年 23 卷 1 期
页码:
收录情况: SCI
摘要: BackgroundLeaf angle is a key trait for maize plant architecture that plays a significant role in its morphological development, and ultimately impacting maize grain yield. Although many studies have been conducted on the association and localization of genes regulating leaf angle in maize, most of the candidate genes identified are associated with the regulation of ligule-ear development and phytohormone pathways, and only a few candidate genes have been reported to enhance the mechanical strength of leaf midrib and vascular tissues.ResultsTo address this gap, we conducted a genome-wide association study (GWAS) using the leaf angle phenotype and genotyping-by-sequencing data generated from three recombinant inbred line (RIL) populations of maize. Through GWAS analysis, we identified 156 SNPs significantly associated with the leaf angle trait and detected a total of 68 candidate genes located within 10 kb upstream and downstream of these individual SNPs. Among these candidate genes, Zm00001d045408, located on chromosome 9 emerged as a key gene controlling the angles of both the ear leaf and the second leaf above the ear leaf. Notably, this new gene's homolog in Arabidopsis promotes cell division and vascular tissue development. Further analysis revealed that a SNP transversion (G/T) at 7.536 kb downstream of the candidate gene Zm00001d045408 may have caused a reduction in leaf angles of the ear and the second leaf above the ear leaf. Our analysis of the 10 kb region downstream of this candidate gene revealed a 4.337 kb solo long-terminal reverse transcription transposon (solo LTR), located 3.112 kb downstream of Zm00001d045408, with the SNP located 87 bp upstream of the solo LTR.ConclusionsIn summary, we have identified a novel candidate gene, Zm00001d045408 and a solo LTR that are associated with the angles of both the ear leaf and the second leaf above the ear leaf. The future research holds great potential in exploring the precise role of newly identified candidate gene in leaf angle regulation. Functional characterization of this gene can help in gaining deeper insights into the complex genetic pathways underlying maize plant architecture.
分类号:
- 相关文献
作者其他论文 更多>>
-
Electrochemiluminescence Resonance Energy Transfer Biosensor for the Human-Associated Clade of Streptococcus suis Based on Prereduction-Enhanced Yttrium MOFs
作者:Hu, Can;Xiang, Hongzhang;Yin, Yashi;Li, Jiawen;Zhang, Yutian;Huang, Xingao;Guo, Yating;He, Yingsi;Gao, Yanru;Ren, Kejing;Han, Heyou;Wang, Wenjing;Li, Jinquan;Hu, Can;Li, Jiawen;Huang, Xingao;Guo, Yating;Han, Heyou;Li, Jinquan;Xiang, Hongzhang;Yin, Yashi;Zhang, Yutian;He, Yingsi;Gao, Yanru;Ren, Kejing;Han, Heyou;Wang, Wenjing;Li, Jinquan;Li, Jinquan
关键词:
-
Review: Recent advances in unraveling the genetic architecture of kernel row number in maize
作者:Wang, Yizhu;Shaw, Ranjan K.;Fan, Xingming
关键词:Kernel row number (KRN); Maize; Inflorescence development; Genomics; Functional validation; CRISPR-Cas9
-
Key technologies in apple harvesting robot for standardized orchards: A comprehensive review of innovations, challenges, and future directions☆
作者:Hua, Wanjia;Zhang, Wenqiang;Zhang, Zhao;Liu, Xiaohang;Mhamed, Mustafa;Khan, Wali Ullah;Zhang, Zhao;Liu, Xiaohang;Mhamed, Mustafa;Khan, Wali Ullah;Hu, Can;He, Yichuan;Li, Xiaolong;Dong, Haoxuan;Saha, Chayan Kumer;Abid, Fazeel;Abdelhamid, Mahmoud A.
关键词:AI; Robotics; Apple harvesting; Developments; Mechanization; Machine vision
-
Novel candidate genes and genetic basis analysis of kernel starch content in tropical maize
作者:Yang, Xiaoping;Yang, Xiaoping;Shaw, Ranjan K.;Li, Linzhuo;Jiang, Fuyan;Fan, Xingming
关键词:Maize; Kernel starch content; QTL mapping; Genome-wide association analysis; Candidate genes
-
Genome-wide association study of Northern corn leaf blight (NCLB) resistance using temperate and subtropical maize recombinant inbred lines
作者:Gong, Xiaodong;Jiang, Fuyan;Shaw, Ranjan K.;Sun, Jiachen;Dai, Tao;Bi, Yaqi;Pan, Yanhui;Kong, Jiao;Zong, Haiyang;Yang, Xiaoping;Ijaz, Babar;Fan, Xingming;Gong, Xiaodong;Dai, Tao;Pan, Yanhui;Zong, Haiyang;Yang, Xiaoping;Sun, Jiachen;Kong, Jiao
关键词:Maize; NCLB;
Setosphaeria turcica ; GWAS; QRT-PCR -
Genetic dissection of hundred-kernel weight through combined genome-wide association study and linkage analysis in tropical maize
作者:Shi, Mengfei;Jiang, Fuyan;Shaw, Ranjan K.;Ijaz, Babar;Sun, Jiachen;Fan, Xingming;Shi, Mengfei;Sun, Jiachen
关键词:Maize; Hundred-kernel weight; Multi-parent population; Genome-wide association study
-
MoOrp-mediated PtdIns4P transportation is essential for autophagy and pathogenicity in Magnaporthe oryzae
作者:Wang, Jian;Wang, Yu-Jie;Yang, Si-Ru;Liu, Ning;Peng, You-Liang;Fan, Jun;Chen, Meng-Meng;Xu, Hai-Jiao;Chen, Xiao-Lin
关键词:Atg8; autophagy;
Magnaporthe oryzae ; oxysterol-binding protein-related protein; pathogenicity; phosphatidylinositol-4-phosphate