QTL mapping of seedling traits in cucumber using recombinant inbred lines

文献类型: 外文期刊

第一作者: Wang, Min

作者: Wang, Min;Liu, Shulin;Zhang, Shengping;Miao, Han;Tian, Guili;Lu, Hongwei;Liu, Panna;Wang, Ye;Gu, Xingfang

作者机构:

关键词: Cucumis sativus L;seedling traits;inheritance analysis;QTL

期刊名称:PLANT BREEDING ( 影响因子:1.832; 五年影响因子:1.956 )

ISSN:

年卷期:

页码:

收录情况: SCI

摘要: Seedling traits are important for development, flower bud differentiation, fruit production and fruit quality of cucumber (Cucumis sativus L.). In this study, 160 recombinant inbred lines (RILs), derived from crossing wild cucumber inbred line PI 183967 (C. sativus var. hardwickii) with 931' northern China cultivated cucumber inbred line 931, were employed to identify quantitative trait loci (QTLs) of cotyledon length (Cl), cotyledon width (Cw), hypocotyl length (Hl), first true leaf length (Fll), first true leaf width (Flw), aboveground fresh biomass (Afb) and aboveground dry biomass (Adb) at seedling stage. A genetic map including 307 SSR markers was developed which spanned 993.3cM, with an average genetic distance of 3.23cM between adjacent markers. 36 QTLs associated with the seven traits were detected on chromosomes 1, 2, 3, 5 and 6 in four environments (spring and autumn of 2012 and 2013), explaining 6.1 to 23.6% of the observed phenotypic variations. Among the 36 QTLs, 21 were responsible for more than 10% of observed phenotypic variations. We obtained 2, 2, 1 and 3 QTL loci for the traits of Fll, Flw, Afw and Adw, respectively. In addition, genes in the genetic region spanned by SSR15321-SSR07711 on chr. 5 may contribute to Flw, Afw and Adw.

分类号: S3

  • 相关文献

[1]Blast-Resistance Inheritance of Space-Induced Rice Lines and Their Genomic Polymorphism by Microsatellite Markers. Xiao Wu-ming,Yang Qi-yun,Zhu Xiao-yuan,Xiao Wu-ming,Chen Zhi-qiang,Wang Hui,Guo Tao,Liu Yong-zhu. 2009

[2]Identification of molecular markers linked to the genes for purple grain color in wheat (Triticum aestivum). Li, Xing-Pu,Lan, Su-Que,Zhang, Ye-Lun,Liu, Yu-Ping.

[3]Mannose selection system used for cucumber transformation. He, Zhengquan,Duan, ZhenZhen,Liang, Wei,Chen, Faju,Yao, Wei,Liang, Hongwei,Yue, Chaoyin,Sun, Zongxiu,Chen, Fan,Dai, Jianwu. 2006

[4]Molecular mapping and candidate gene analysis for fruit epidermal structure in cucumber. Zhang, Song,Miao, Han,Song, Zichao,Liu, Panna,Wang, Ye,Gu, Xingfang,Zhang, Shengping,Wehner, Todd C..

[5]Localization of a New Gene for Bitterness in Cucumber. Zhang, Shengping,Miao, Han,Sun, Rifei,Wang, Xiaowu,Huang, Sanwen,Gu, Xingfang,Wehner, Todd C.. 2013

[6]23,24-Dihydrocucurbitacin C: A new compound regarded as the next metabolite of cucurbitacin C. Qing, Zhi-Xing,Zeng, Jian-Guo,Zhou, Yuan,Liu, Xiu-Bin,Cheng, Pi,Zeng, Jian-Guo.

[7]An exon skipping in a SEPALLATA-Like gene is associated with perturbed floral and fruits development in cucumber. Wang, Xiaofeng,Huang, Sanwen,Wang, Xin,Gao, Dongli,Sun, Jinjing,Liu, Min,Lun, YaoYao,Wang, Shenhao,Huang, Sanwen,Gao, Dongli,Zheng, Jianshu,Cui, Qingzhi. 2016

[8]Regional association analysis-based fine mapping of three clustered QTL for verticillium wilt resistance in cotton (G. hirsutum. L). Yunlei Zhao,Wang, Hongmei,Hongmei Wang,Wei Chen,Pei Zhao,Haiyan Gong,Xiaohui Sang,Yanli Cui. 2017

[9]Quantitative trait loci mapping of adult-plant resistance to powdery mildew in Chinese wheat cultivar Lumai 21. Caixia Lan,Xiaowen Ni,Jun Yan,Yong Zhang,Xianchun Xia,Xinmin Chen,Zhonghu He.

[10]Characterization of a cell wall invertase gene TaCwi-A1 on common wheat chromosome 2A and development of functional markers. Dongyun Ma,Jun Yan,Zhonghu He,Ling Wu,Xianchun Xia.

[11]DISTRIBUTION OF SEVEN GRAIN GENES AND EVALUATION OF THEIR GENETIC EFFECTS ON GRAIN TRAITS. Zhang, Yadong,Zhao, Qingyong,Zhao, Chunfang,Chen, Tao,Zhu, Zhen,Zhou, Lihui,Yao, Shu,Zhao, Ling,Wang, Cailin. 2016

[12]QTL variations for growth-related traits in eight distinct families of common carp (Cyprinus carpio). Lv, Weihua,Yan, Yunqin,Lv, Weihua,Zheng, Xianhu,Kuang, Youyi,Cao, Dingchen,Sun, Xiaowen. 2016

[13]Genetic dissection of growth traits in a Chinese indigenous x commercial broiler chicken cross. Sheng, Zheya,Hu, Xiaoxiang,Li, Ning,Sheng, Zheya,Pettersson, Mats E.,Shen, Xia,Carlborg, Orjan,Luo, Chenglong,Qu, Hao,Shu, Dingming. 2013

[14]A Rare Allele of GS2 Enhances Grain Size and Grain Yield in Rice. Hu, Jiang,Wang, Yuexing,Fang, Yunxia,Xu, Jie,Yu, Haiping,Shi, Zhenyuan,Pan, Jiangjie,Zhang, Dong,Zhu, Li,Dong, Guojun,Guo, Longbiao,Zeng, Dali,Zhang, Guangheng,Xie, Lihong,Qian, Qian,Zeng, Longjun,Kang, Shujing,Xiong, Guosheng,Qian, Qian,Li, Jiayang,Li, Jiayang. 2015

[15]New insights into the genetic networks affecting seed fatty acid concentrations in Brassica napus. Wang, Xiaodong,Yin, Yongtai,Gan, Lu,Yu, Longjiang,Li, Maoteng,Long, Yan,Zhang, Chunyu,Meng, Jinling,Long, Yan,Wang, Xiaodong,Liu, Liezhao. 2015

[16]Bayesian dissection for genetic architecture of traits associated with nitrogen utilization efficiency in rice. Yang, Runqing,Piao, Zhongze,Li, Maobai,Zhang, Jianming,Wang, Hui,Li, Peide,Zhu, Chunmei,Luo, Zhixiang,Lee, Jungro. 2009

[17]QTL Mapping by Whole Genome Re-sequencing and Analysis of Candidate Genes for Nitrogen Use Efficiency in Rice. Xia, Xiuzhong,Zhang, Zongqiong,Nong, Baoxuan,Zeng, Yu,Deng, Guofu,Li, Danting,Xiong, Faqian,Wu, Yanyan,Gao, Ju. 2017

[18]Quantitative trait loci analysis and genome-wide comparison for silique related traits in Brassica napus. Wang, Xiaodong,Chen, Li,Chao, Hongbo,Li, Maoteng,Wang, Xiaodong,Chen, Li,Xiang, Jun,Gan, Jianping,Wang, Aina,Wang, Hao,Tian, Jianhua,Zhao, Xiaoping,Zhao, Yajun,Zhao, Weiguo. 2016

[19]QTL Mapping of Isoflavone, Oil and Protein Contents in Soybean (Glycine max L. Merr.). Liang Hui-zhen,Yu Yong-liang,Wang Shu-feng,Lian Yun,Wang Ting-feng,Wei Yan-li,Gong Peng-tao,Fang Xuan-jun,Liu Xue-yi,Zhang Meng-chen. 2010

[20]Analysis of QTLs for yield-related traits in Yuanjiang common wild rice (Oryza rufipogon Griff.). Fu, Qiang,Tan, Lubin,Zhu, Zuofeng,Ma, Dan,Fu, Yongcai,Cai, Hongwei,Sun, Chuanqing,Fu, Qiang,Zhang, Peijiang,Zhan, Xinchun. 2010

作者其他论文 更多>>