A Genome-Wide Association Study Dissects the Genetic Architecture of the Metaxylem Vessel Number in Maize Brace Roots

被引:7
|
作者
Liu, Meiling [1 ]
Zhang, Meng [1 ]
Yu, Shuai [1 ]
Li, Xiaoyang [1 ]
Zhang, Ao [1 ]
Cui, Zhenhai [1 ,2 ]
Dong, Xiaomei [1 ]
Fan, Jinjuan [1 ]
Zhang, Lijun [1 ]
Li, Cong [1 ]
Ruan, Yanye [1 ]
机构
[1] Shenyang Agr Univ, Coll Biosci & Biotechnol, Shenyang, Peoples R China
[2] Chinese Acad Sci, Northeast Inst Geog & Agroecol, Key Lab Soybean Mol Design Breeding, Changchun, Peoples R China
来源
基金
美国国家科学基金会;
关键词
maize (Zea mays L; brace root; metaxylem vessel number; GWAS; candidate gene; CELL-WALL BIOSYNTHESIS; POSTDOMESTICATION SPREAD; TRANSCRIPTION FACTOR; ARABIDOPSIS ROOTS; DIRECT TARGET; TRANSPORTER; FAMILY; DIFFERENTIATION; ADAPTATION; ENCODES;
D O I
10.3389/fpls.2022.847234
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Metaxylem vessels in maize brace roots are key tissue, and their number (MVN) affects plant water and inorganic salt transportation and lodging resistance. Dissecting the genetic basis of MVN in maize brace roots can help guide the genetic improvement of maize drought resistance and lodging resistance during late developmental stages. In this study, we used 508 inbred lines with tropical, subtropical, and temperate backgrounds to analyze the genetic architecture of MVN in maize brace roots. The phenotypic variation in MVN in brace roots was evaluated in three environments, which revealed broad natural variation and relative low levels of heritability (h(2) = 0.42). Stiff-stalk lines with a temperate background tended to have higher MVNs than plants in other genetic backgrounds. MVN was significantly positively correlated with plant height, tassel maximum axis length, ear length, and kernel number per row, which indicates that MVN may affect plant morphological development and yield. In addition, MVN was extremely significantly negatively correlated with brace root radius, but significantly positively correlated with brace root angle (BRA), diameter, and number, thus suggesting that the morphological function of some brace root traits may be essentially determined by MVN. Association analysis of MVN in brace roots combined 1,253,814 single nucleotide polymorphisms (SNPs) using FarmCPU revealed a total of nine SNPs significantly associated with MVN at P < 7.96 x 10(-7). Five candidate genes for MVN that may participate in secondary wall formation (GRMZM2G168365, GRMZM2G470499, and GRMZM2G028982) and regulate flowering time (GRMZM2G381691 and GRMZM2G449165). These results provide useful information for understanding the genetic basis of MVN in brace root development. Further functional studies of identified candidate genes should help elucidate the molecular pathways that regulate MVN in maize brace roots.
引用
收藏
页数:12
相关论文
共 50 条
  • [21] Genome-wide association studies and whole-genome prediction reveal the genetic architecture of KRN in maize
    An, Yixin
    Chen, Lin
    Li, Yong-Xiang
    Li, Chunhui
    Shi, Yunsu
    Zhang, Dengfeng
    Li, Yu
    Wang, Tianyu
    BMC PLANT BIOLOGY, 2020, 20 (01)
  • [22] Genome-Wide Association Study Reveals Genetic Architecture of Common Epilepsies
    Thakran, Sarita
    Guin, Debleena
    Singh, Priyanka
    Uppili, Bharathram
    Ramachandran, Srinivasan
    Kushwaha, Suman S.
    Kukreti, Ritushree
    CLINICAL GENETICS, 2025,
  • [23] Genetic architecture of hidradenitis suppurativa revealed by a genome-wide association study
    Argyropoulou, Maria
    Ricano-Ponce, Isis
    Keur, Nick
    Kanni, Theodora
    Netea, Mihai G.
    Giamarellos-Bourboulis, Evangelos J.
    Kumar, Vinod
    EXPERIMENTAL DERMATOLOGY, 2022, 31 : 52 - 52
  • [24] Genome-wide association studies and whole-genome prediction reveal the genetic architecture of KRN in maize
    Yixin An
    Lin Chen
    Yong-Xiang Li
    Chunhui Li
    Yunsu Shi
    Dengfeng Zhang
    Yu Li
    Tianyu Wang
    BMC Plant Biology, 20
  • [25] Genome-wide association study dissects yield components associated with low-phosphorus stress tolerance in maize
    Cheng Xu
    Hongwei Zhang
    Jianhao Sun
    Zifeng Guo
    Cheng Zou
    Wen-Xue Li
    Chuanxiao Xie
    Changling Huang
    Ruineng Xu
    Hong Liao
    Jinxiang Wang
    Xiaojie Xu
    Shanhong Wang
    Yunbi Xu
    Theoretical and Applied Genetics, 2018, 131 : 1699 - 1714
  • [26] Combination of Genome-Wide Association Study and QTL Mapping Reveals the Genetic Architecture of Fusarium Stalk Rot in Maize
    Liu, Shuangshuang
    Fu, Jingxiao
    Shang, Zhigang
    Song, Xiyun
    Zhao, Meiai
    FRONTIERS IN AGRONOMY, 2021, 2
  • [27] Dissection of the genetic architecture of peduncle vascular bundle-related traits in maize by a genome-wide association study
    Sun, Gaoyang
    Zhang, Xuehai
    Duan, Haiyang
    Gao, Jionghao
    Li, Na
    Su, Pingping
    Xie, Huiling
    Li, Weihua
    Fu, Zhiyuan
    Huang, Yubi
    Tang, Jihua
    PLANT BIOTECHNOLOGY JOURNAL, 2022, 20 (06) : 1042 - 1053
  • [28] Genome-Wide Association Studies Provide Insights Into the Genetic Architecture of Seed Germination Traits in Maize
    Li, Yuntong
    Liang, Yameng
    Liu, Meiling
    Zhang, Qiyuan
    Wang, Ziwei
    Fan, Jinjuan
    Ruan, Yanye
    Zhang, Ao
    Dong, Xiaomei
    Yue, Jing
    Li, Cong
    FRONTIERS IN PLANT SCIENCE, 2022, 13
  • [29] Genome-wide association study and genomic selection of brace root traits related to lodging resistance in maize
    Lin, Shaohang
    Xu, Xiaoming
    Fan, Zehui
    Jiang, Jiale
    Zeng, Yukang
    Meng, Yao
    Ren, Jiaojiao
    Wu, Penghao
    SCIENTIFIC REPORTS, 2024, 14 (01):
  • [30] A Genome-wide Combinatorial Strategy Dissects Complex Genetic Architecture of Seed Coat Color in Chickpea
    Bajaj, Deepak
    Das, Shouvik
    Upadhyaya, Hari D.
    Ranjan, Rajeev
    Badoni, Saurabh
    Kumar, Vinod
    Tripathi, Shailesh
    Gowda, C. L. Laxmipathi
    Sharma, Shivali
    Singh, Sube
    Tyagi, Akhilesh K.
    Parida, Swarup K.
    FRONTIERS IN PLANT SCIENCE, 2015, 6