Development of a large number of SSR and InDel markers and construction of a high-density genetic map based on a RIL population of pepper (Capsicum annuum L.)

文献类型: 外文期刊

第一作者: Zhang, Xiao-fen

作者: Zhang, Xiao-fen;Wang, Qian;Zhang, Xiao-fen;Sun, Hong-he;Xu, Yong;Chen, Bin;Yu, Shuan-cang;Geng, San-sheng

作者机构:

关键词: Capsicum annuum L.;Genetic map;InDel;SSR

期刊名称:MOLECULAR BREEDING ( 影响因子:2.589; 五年影响因子:2.75 )

ISSN:

年卷期:

页码:

收录情况: SCI

摘要: Capsicum annuum, the most widely cultivated species of pepper, is used worldwide for its important nutritional and medicinal values. The construction of an intraspecific high-density genetic linkage map would be of practical value for pepper breeding. However, the numbers of PCR-based simple sequence repeat (SSR) and insertion/deletion (InDel) markers that are available are limited, and there is a need to develop a saturated, intraspecific linkage map. The non-redundant Capsicum species' expressed sequence tag (EST) database from the National Center for Biotechnology Information was used in this study to develop a total of 902 usable EST-SSR markers. Additionally, 177,587 SSR loci were identified based on the pepper genomic information, including 9182 SSR loci 500 bp both upstream and downstream of coding regions. Another 4497 stable and reliable InDel loci were also developed. From 9182 SSR and 4497 InDel loci, 3356 pairs of genomic SSR primers and 1400 pairs of InDel primers that were evenly distributed in 12 chromosomes were selected. A high-density intraspecific genetic map of C. annuum was constructed using the F-10-generation recombinant inbred line of parents PM702 and FS871 as the mapping population, screening the selected 3356 pairs of genomic SSR primers and 1400 pairs of InDel primers and the 902 EST-SSR markers developed earlier, and 524 published SSR markers and 299 orthologous markers (including 263 COSII markers and 36 tomato-derived markers) used previously to develop an interspecific genetic map (C. annuum 9 C. frutescens). Eventually, a high-density complete genetic intraspecific linkage map of C. annuum containing 12 linkage groups and 708 molecular markers with a length of 1260.00 cM and an average map distance of 1.78 cM was produced. This intraspecific, high-density, complete genetic linkage map of C. annuum contains the largest number of SSR and InDel markers and the highest amount of saturation so far, and it will be of considerable significance for the breeding of improved cultivars of this important field crop in the future.

分类号: Q94

  • 相关文献

[1]Construction of a High-Density Simple Sequence Repeat Consensus Genetic Map for Pear (Pyrus spp.). Chen, Hui,Song, Yue,Li, Lei-Ting,Wu, Jun,Zhang, Shao-Ling,Khan, M. Awais,Korban, Schuyler S.,Li, Xiu-Gen,Korban, Schuyler S..

[2]Construction of a high-density genetic linkage map in pear (Pyrus communis x Pyrus pyrifolia nakai) using SSRs and SNPs developed by SLAF-seq. Wang, Long,Wu, Jun,Yin, Hao,Zhang, Shaoling,Wang, Long,Li, Xiugen,Wang, Lei,Xue, Huabai.

[3]Latest Advances in Watermelon Genomics. Guo, Shaogui,Xu, Yong,Zhang, Haiying,Gong, Guoyi,Guo, Shaogui,Zheng, Yi,Fei, Zhangjun,Huang, Sanwen,Yi, Hongping,Wu, Mingzhu,Fei, Zhangjun,Zheng, Yi. 2010

[4]Identification of Sesame Genomic Variations from Genome Comparison of Landrace and Variety. Wei, Xin,Zhu, Xiaodong,Yu, Jingyin,Wang, Linhai,Zhang, Yanxin,Li, Donghua,Zhou, Rong,Zhang, Xiurong. 2016

[5]Development of novel InDel markers and genetic diversity in Chenopodium quinoa through whole-genome re-sequencing. Zhang, Tifu,Lv, Yuanda,Zhou, Ling,Lu, Haiyan,Liang, Shuaiqiang,Bao, Huabin,Zhao, Han,Gu, Minfeng,Liu, Yuhe. 2017

[6]Association Mapping Reveals Genetic Loci Associated with Important Agronomic Traits in Lentinula edodes, Shiitake Mushroom. Li, Chuang,Gong, Wenbing,Zhang, Lin,Bian, Yinbing,Xiao, Yang,Gong, Wenbing,Yang, Zhiquan,Nong, Wenyan,Kwan, Hoi-Shan,Cheung, Man-Kit. 2017

[7]Development of InDel markers for the restorer gene and Rf1 assessment of their utility for marker-assisted selection in cotton. Jianyong Wu,Xing, Chaozhu,Meng Zhang,Xuexian Zhang,Liping Guo,Tingxiang Qi,Hailin Wang,Huini Tang,Jinfa Zhang,Chaozhu Xing.

[8]Genetic analysis and molecular characterization of Chinese sesame (Sesamum indicum L.) cultivars using Insertion-Deletion (InDel) and Simple Sequence Repeat (SSR) markers. Wu, Kun,Yang, Minmin,Liu, Hongyan,Mei, Ju,Zhao, Yingzhong,Tao, Ye. 2014

[9]Development of 1047 insertion-deletion markers for rice genetic studies and breeding. Zeng, Y. X.,Wen, Z. H.,Ma, L. Y.,Ji, Z. J.,Li, X. M.,Yang, C. D.. 2013

[10]Genome re-sequencing of two accessions and fine mapping the locus of lobed leaflet margins in mungbean. Jiao, Keyuan,Guo, Wuxiu,Jiao, Keyuan,Li, Xin,Yuan, Xingxing,Yuan, Xingxing,Cui, Xiaoyan,Chen, Xin.

[11]Exploiting Illumina sequencing for the development of InDel markers in watermelon (Citrullus lanatus). Liu, G.,Xu, J. H.,Zhang, M.,Li, P. F.,Yao, X. F.,Hou, Q.,Zhu, L. L.,Ren, R. S.,Yang, X. P..

[12]Disruption of the sheep BMPR-IB gene by CRISPR/Cas9 in in vitro-produced embryos. Zhang, Xuemei,Li, Wenrong,Liu, Mingjun,Zhang, Xuemei,Li, Wenrong,Wu, Yangsheng,Peng, Xinrong,Lou, Bian,Wang, Liqin,Liu, Mingjun,Zhang, Xuemei,Li, Wenrong,Wu, Yangsheng,Peng, Xinrong,Lou, Bian,Wang, Liqin,Liu, Mingjun.

[13]Effect of continuous negative pressure water supply on the growth, development and physiological mechanism of Capsicum annuum L.. Li Di,Shao Hong-ying,Wang Peng,Long Huai-yu,Zhang Shu-xiang,Wu Xue-ping. 2017

[14]Comparative proteome analysis in hot pepper (Capsicum annuum L.) after space flight. Xie, L. B.,Wang, X.,Zhou, Y.,Chen, L. X.,Gao, Y. L.,Guo, Y. H.,Peng, M.,Liu, L. X.. 2017

[15]A SCAR marker linked to the N gene for resistance to root knot nematodes (Meloidogyne spp.) in pepper (Capsicum annuum L.). Wang, L. H.,Gu, X. H.,Hua, M. Y.,Mao, S. L.,Zhang, Z. H.,Zhang, B. X.,Gu, X. H.,Hua, M. Y.,Yun, X. F.,Peng, D. L..

[16]RELATIONSHIP OF ASCORBIC ACID METABOLISM WITH THE CYTOPLASMIC MALE STERILITY IN PEPPER (CAPSICUM ANNUUM L.). Deng, Minghua,Deng, Minghua,Huo, Jinlong,Zhu, Haishan,Lv, Junheng,Dai, Xiongze,Zhang, Zhuqing,Zou, Xuexiao. 2015

[17]Genome-wide analysis of the CaHsp20 gene family in pepper: comprehensive sequence and expression profile analysis under heat stress. Guo, Meng,Liu, Jin-Hong,Lu, Jin-Ping,Zhai, Yu-Fei,Wang, Hu,Gong, Zhen-Hui,Lu, Ming-Hui,Wang, Shu-Bin. 2015

[18]Molecular characteristics and expression of cytoplasmic genes in cytoplasmic male sterility of pepper (Capsicum annuum L.). Zhang Zhuqing,Dai Xiongze,Zou Xuexiao,Ou Lijun,Ou Lijun. 2012

[19]Cloning and characterization of CaGID1s and CaGAI in Capsicum annuum L.. Cao Ya-cong,Sul Xiao-lei,Zhang Zhen-xian,Cao Ya-cong,Zhang Zheng-hai,Wang Li-hao,Zhang Bao-xi. 2016

[20]Cloning and functional analyses of pepper CaRKNR involved in Meloidogyne incognita resistance. Mao, Zhenchuan,Zhu, Pingping,Liu, Feng,Huang, Yonghong,Ling, Jian,Chen, Guohua,Yang, Yuhong,Feng, Dongxin,Xie, Bingyan.

作者其他论文 更多>>