QTL mapping of cucumber fruit flesh thickness by SLAF-seq

被引:0
|
作者
Xuewen Xu
Lu Lu
Biyun Zhu
Qiang Xu
Xiaohua Qi
Xuehao Chen
机构
[1] School of Horticulture and Plant Protection,
[2] Yangzhou University,undefined
来源
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Cucumber is an agriculturally and economically important vegetable crop worldwide. Fruit flesh thickness is an important trait for cucumber and also a central determinant of yield, yet little is known about the underlying mechanism of this trait. In this study, bulked segregant analysis (BSA) combined with specific length amplified fragment sequencing (SLAF-seq) was applied to finely map the gene that underlies fruit flesh thickness in cucumber. A 0.19-Mb-long quantitative trait locus on chromosome 2 controlling fruit flesh thickness (QTL fft2.1) was identified and further confirmed by simple sequence repeat (SSR) marker-based classical QTL mapping in 138 F2 individuals. Gene prediction of this 0.19-Mb region identified 20 genes. Quantitative RT-PCR revealed higher expression levels of Csa2 M058670.1 (SET domain protein-lysine methyltransferase) in D8 (thick fruit flesh parent) compared with that in XUE1 (thin fruit flesh parent) during fruit development. Sequence alignment analysis of Csa2M058670.1 from thick and thin fruit flesh cucumber lines revealed a 4-bp deletion mutation in the promoter region of this candidate gene, which may result in the loss of Csa2M058670.1 activation in thin fruit flesh lines. The data presented herein suggest that Csa2M058670.1 is a possible candidate gene for controlling flesh thickness in cucumber.
引用
收藏
相关论文
共 50 条
  • [1] QTL mapping of cucumber fruit flesh thickness by SLAF-seq
    Xu, Xuewen
    Lu, Lu
    Zhu, Biyun
    Xu, Qiang
    Qi, Xiaohua
    Chen, Xuehao
    SCIENTIFIC REPORTS, 2015, 5
  • [2] QTL Mapping by SLAF-seq and Expression Analysis of Candidate Genes for Aphid Resistance in Cucumber
    Liang, Danna
    Chen, Minyang
    Qi, Xiaohua
    Xu, Qiang
    Zhou, Fucai
    Chen, Xuehao
    FRONTIERS IN PLANT SCIENCE, 2016, 7
  • [3] QTL mapping of downy mildew resistance in foxtail millet by SLAF-seq and BSR-seq analysis
    Liu, Xu
    Zhang, Nuo
    Sun, Yurong
    Fu, Zhenxin
    Han, Yuanhuai
    Yang, Yang
    Jia, Jichun
    Hou, Siyu
    Zhang, Baojun
    THEORETICAL AND APPLIED GENETICS, 2024, 137 (07)
  • [4] 基于SLAF-seq技术的烟草抗CMV主效QTL定位
    潘旭浩
    程立锐
    陈小翠
    蒋彩虹
    任民
    杨爱国
    中国烟草科学, 2018, 39 (05) : 1 - 8
  • [5] 基于BSA和SLAF-Seq技术对大豆主茎节数QTL精细定位
    杨玉花
    白志元
    卫保国
    雷阳
    张瑞军
    核农学报, 2021, 35 (09) : 1953 - 1963
  • [6] QTL analysis of low-temperature tolerance in maize germination by SLAF-seq and BSA techniqueq,qq
    Abc, Tao Yu
    Ma, Xuena
    Cao, Shiliang
    Li, Wenyue
    Yang, Gengbin
    Li, Sinan
    ELECTRONIC JOURNAL OF BIOTECHNOLOGY, 2024, 70 : 14 - 22
  • [7] Construction of a SNP-Based Genetic Map Using SLAF-Seq and QTL Analysis of Morphological Traits in Eggplant
    Wei, Qingzhen
    Wang, Wuhong
    Hu, Tianhua
    Hu, Haijiao
    Wang, Jinglei
    Bao, Chonglai
    FRONTIERS IN GENETICS, 2020, 11
  • [8] Uncovering SNP and indel variations of tetraploid cottons by SLAF-seq
    Chao Shen
    Xin Jin
    De Zhu
    Zhongxu Lin
    BMC Genomics, 18
  • [9] Uncovering SNP and indel variations of tetraploid cottons by SLAF-seq
    Shen, Chao
    Jin, Xin
    Zhu, De
    Lin, Zhongxu
    BMC GENOMICS, 2017, 18
  • [10] A high density SLAF-seq SNP genetic map and QTL for seed size, oil and protein content in upland cotton
    Wenwen Wang
    Ying Sun
    Peng Yang
    Xiaoyan Cai
    Le Yang
    Junrui Ma
    Yuncan Ou
    Tianpeng Liu
    Iftikhar Ali
    Dajun Liu
    Jian Zhang
    Zhonghua Teng
    Kai Guo
    Dexin Liu
    Fang Liu
    Zhengsheng Zhang
    BMC Genomics, 20