Identification of a Novel QTL for Panicle Length From Wild Rice (Oryza minuta) by Specific Locus Amplified Fragment Sequencing and High Density Genetic Mapping

被引:13
|
作者
Zhu, Zhengzheng [1 ]
Li, Xiaoqiong [2 ]
Wei, Yu [2 ]
Guo, Sibin [2 ]
Sha, Aihua [1 ]
机构
[1] Yangtze Univ, Hubei Collaborat Innovat Ctr Grain Ind, Jingzhou, Peoples R China
[2] Guangxi Acad Agr Sci, Guangxi Key Lab Rice Genet & Breeding, Rice Res Inst, Nanning, Peoples R China
来源
关键词
introgression lines; yield related traits; RILs; SNPs; linkage map; NATURAL VARIATION; GRAIN-YIELD; PLANT ARCHITECTURE; SATIVA L; ENCODES; PLAYS;
D O I
10.3389/fpls.2018.01492
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Wild rice possesses a large number of valuable genes that have been lost or do not exist in cultivated rice. To exploit the desirable gene controlling panicle length (PL) in wild rice Oryza minuta, a recombinant inbred line (RIL) population was constructed that was derived from a cross between the long panicle introgression line K1561 with Oryza minuta segments and a short panicle accession G1025. Specific Locus Amplified Fragment (SLAF) sequencing technology was used to uncover single nucleotide polymorphisms (SNPs) and construct the high-density genetic linkage map. Using 201 RIL populations, a high-density genetic map was developed, and spanned 2781.76 cM with an average genetic distance 0.45 cM. The genetic map was composed of 5, 521 markers on 12 chromosomes. Based on this high-density genome map, quantitative trait loci (QTL) for PL were analyzed for 2 years under four environments. Seven QTLs were detected, which were distributed within chromosomes 4, 9, and 10, respectively. pl4.1 was detected twice, and pl10.1 was only detected once. Although pl9.1 was only detected once, it was very near pl9.2 in the genetic map which was detected three times. Thus, we speculate one major QTL exists in the region of pl9.1 and pl9.2 to control PL (temporarily referred to as pl9). pl9 is a potentially novel allele derived from Oryza minuta, and it can be used for genetic improvement of cultivar rice.
引用
收藏
页数:9
相关论文
共 50 条
  • [1] A High-Density Genetic Map for Soybean Based on Specific Length Amplified Fragment Sequencing
    Qi, Zhaoming
    Huang, Long
    Zhu, Rongsheng
    Xin, Dawei
    Liu, Chunyan
    Han, Xue
    Jiang, Hongwei
    Hong, Weiguo
    Hu, Guohua
    Zheng, Hongkun
    Chen, Qingshan
    PLOS ONE, 2014, 9 (08):
  • [2] Rapid identification of rice blast resistance gene by specific length amplified fragment sequencing
    Chen, Shen
    Wang, Wen-juan
    Su, Jing
    Wang, Cong-ying
    Feng, Ai-qing
    Yang, Jian-yuan
    Zeng, Lie-xian
    Zhu, Xiao-yuan
    BIOTECHNOLOGY & BIOTECHNOLOGICAL EQUIPMENT, 2016, 30 (03) : 462 - 468
  • [3] High-resolution mapping of QTL for fatty acid composition in soybean using specific-locus amplified fragment sequencing
    Li, Bin
    Fan, Shengxu
    Yu, Fukuan
    Chen, Ying
    Zhang, Shengrui
    Han, Fenxia
    Yan, Shurong
    Wang, Lianzheng
    Sun, Junming
    THEORETICAL AND APPLIED GENETICS, 2017, 130 (07) : 1467 - 1479
  • [4] High-resolution mapping of QTL for fatty acid composition in soybean using specific-locus amplified fragment sequencing
    Bin Li
    Shengxü Fan
    Fukuan Yu
    Ying Chen
    Shengrui Zhang
    Fenxia Han
    Shurong Yan
    Lianzheng Wang
    Junming Sun
    Theoretical and Applied Genetics, 2017, 130 : 1467 - 1479
  • [5] High-density genetic map of Populus deltoides constructed by using specific length amplified fragment sequencing
    Fang, Lecheng
    Liu, Hailin
    Wei, Suyun
    Keefover-Ring, Ken
    Yin, Tongming
    TREE GENETICS & GENOMES, 2018, 14 (05)
  • [6] High-density genetic map of Populus deltoides constructed by using specific length amplified fragment sequencing
    Lecheng Fang
    Hailin Liu
    Suyun Wei
    Ken Keefover-Ring
    Tongming Yin
    Tree Genetics & Genomes, 2018, 14
  • [7] Construction of a high-density genetic map for grape using specific length amplified fragment (SLAF) sequencing
    Wang, Jiahui
    Su, Kai
    Guo, Yinshan
    Xing, Huiyang
    Zhao, Yuhui
    Liu, Zhendong
    Li, Kun
    Guo, Xiuwu
    PLOS ONE, 2017, 12 (07):
  • [8] A high-density genetic map of cucumber derived from Specific Length Amplified Fragment sequencing (SLAF-seq)
    Xu, Xuewen
    Xu, Ruixue
    Zhu, Biyun
    Yu, Ting
    Qu, Wenqin
    Lu, Lu
    Xu, Qiang
    Qi, Xiaohua
    Chen, Xuehao
    FRONTIERS IN PLANT SCIENCE, 2015, 5
  • [9] Genetic Mapping of a Soybean Glabrous Gene Using Specific-Locus Amplified Fragment Sequencing Method
    Yu, Xiaomin
    Jin, Hangxia
    Yang, Qinghua
    Fu, Xujun
    Yuan, Fengjie
    LEGUME RESEARCH, 2020, 43 (04) : 501 - 506
  • [10] A high-density genetic map constructed using specific length amplified fragment (SLAF) sequencing and QTL mapping of seed-related traits in sesame (Sesamum indicum L.)
    Du, Hua
    Zhang, Haiyang
    Wei, Libin
    Li, Chun
    Duan, Yinghui
    Wang, Huili
    BMC PLANT BIOLOGY, 2019, 19 (01)