QTL analysis and the development of closely linked markers for days to flowering in spring oilseed rape (Brassica napus L.)

文献类型: 外文期刊

第一作者: Liu, Haidong

作者: Liu, Haidong;Du, Dezhi;Guo, Shaomin;Xiao, Lu;Zhao, Zhigang;Zhao, Zhi;Xing, Xiaorong;Tang, Guoyong;Xu, Liang;Fu, Zhong;Yao, Yanmei;Duncan, Robert W.

作者机构:

关键词: Spring;Brassica napus L.;Doubled haploid lines;Days to flowering;QTL analysis;Molecular markers

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: Days to flowering (DTF) is an important trait impacting cultivar performance in oilseed rape (Brassica napus L.), but the interaction of all loci controlling this trait in spring-type oilseed rape is not fully understood. We identified quantitative trait loci (QTL) for variation in DTF in a doubled haploid (DH) population from the Qinghai-Tibet Plateau that includes 217 lines derived from a cross between spring-type oilseed rape (B. napus L.) line No. 5246 and line No. 4512, the latter of which is responsive to the effective accumulated temperature (EAT). A linkage map was constructed for the DH population, using 202 SSR and 293 AFLP markers. At least 22 DTF QTL were found in multiple environments. Four major QTL were located on linkage groups A7, C2, C8 and C8. Among these QTL, cqDTFA7a and cqDTFC2a were identified in five environments and individually explained 10.4 and 23.0 % of the trait variation, respectively. cqDTFC8, a major QTL observed in spring environments, and a unique winter environment QTL, qDTFC8-3, were identified; these QTL explained 10.0 and 46.5 % of the phenotypic variation, respectively. Minor QTL (for example, cqDTFC2c) and epistatic interactions seemed evident in this population. Two closely linked SSR markers for cqDTFA7a and cqDTFC8 were developed (G1803 and S034). BnAP1, a B. napus gene with homology to Arabidopsis thaliana that was identified as a cqDTFA7a candidate gene, played a major role in this study. The allelic effects of the major and minor QTL on DTF were further validated in the DH population and in 93 breeding genotypes.

分类号: Q94

  • 相关文献

[1]Study on the feeding habits of fishery organisms in the Yangtze River estuary and the southern Yellow Sea in spring with delta C-13 method. Li, Zhongyi,Zhuang, Zhimeng,Dai, Fangqun,Jin, Xianshi. 2011

[2]QTL Mapping for Adult Plant Resistance to Powdery Mildew in Italian Wheat cv. Strampelli. Asad Muhammad Azeem,BAI Bin,LAN Cai-xia,YAN Jun,XIA Xian-chun,ZHANG Yong,HE Zhong-hu. 2013

[3]SSR-based genetic mapping and QTL analysis for timing of spring bud flush, young shoot color, and mature leaf size in tea plant (Camellia sinensis). Tan, Li-Qiang,Wang, Li-Yuan,Xu, Li-Yi,Wu, Li-Yun,Zhang, Cheng-Cai,Wei, Kang,Bai, Pei-Xian,Li, Hai-Lin,Cheng, Hao,Tan, Li-Qiang,Xu, Li-Yi,Peng, Min,Qi, Gui-Nian,Wang, Li-Yuan,Wu, Li-Yun,Zhang, Cheng-Cai,Wei, Kang,Bai, Pei-Xian,Li, Hai-Lin,Cheng, Hao. 2016

[4]Identification of QTLs associated with oil content and mapping FAD2 genes and their relative contribution to oil quality in peanut (Arachis hypogaea L.). Pandey, Manish K.,Qiao, Lixian,Feng, Suping,Khera, Pawan,Wang, Hui,Guo, Baozhu,Pandey, Manish K.,Khera, Pawan,Varshney, Rajeev K.,Pandey, Manish K.,Qiao, Lixian,Feng, Suping,Khera, Pawan,Wang, Hui,Culbreath, Albert K.,Guo, Baozhu,Wang, Ming Li,Tonnis, Brandon,Barkley, Noelle A.,Qiao, Lixian,Feng, Suping,Wang, Hui,Wang, Jianping,Holbrook, C. Corley. 2014

[5]Construction of an ultrahigh-density genetic linkage map for Jatropha curcas L. and identification of QTL for fruit yield. Xia, Zhiqiang,Zhang, Shengkui,Wen, Mingfu,Lu, Cheng,Sun, Yufang,Zou, Meiling,Wang, Wenquan,Xia, Zhiqiang,Zhang, Shengkui,Zou, Meiling. 2018

[6]QTLs and candidate genes for chlorate resistance in rice (Oryzasativa L.). Teng, Sheng,Tian, Chaoguang,Chen, Mingsheng,Zeng, Dali,Guo, Longbiao,Zhu, Lihuang,Han, Bin,Qian, Qian. 2006

[7]Mapping of a major resistance gene to the brown planthopper in the rice cultivar Rathu Heenati. Sun, LH,Su, CC,Wang, CM,Zhai, HQ,Wan, JM. 2005

[8]Detection and analysis of QTLs for ferrous iron toxicity tolerance in rice, Oryza sativa L.. Wan, JL,Zhai, HQ,Wan, JM,Ikehashi, H. 2003

[9]The genetics of phytate and phosphate accumulation in seeds and leaves of Arabidopsis thaliana, using natural variation. Bentsink, L,Yuan, K,Koornneef, M,Vreugdenhil, D. 2003

[10]Genetic mapping of yield traits using RIL population derived from Fuchuan Dahuasheng and ICG6375 of peanut (Arachis hypogaea L.). Chen, Yuning,Ren, Xiaoping,Zheng, Yanli,Zhou, Xiaojing,Huang, Li,Yan, Liying,Jiao, Yongqing,Chen, Weigang,Huang, Shunmou,Wan, Liyun,Lei, Yong,Liao, Boshou,Huai, Dongxin,Wei, Wenhui,Jiang, Huifang.

[11]QTL analysis for chalkiness of rice and fine mapping of a candidate gene for qACE9. Gao, Yang,Liu, Chaolei,Li, Yuanyuan,Zhang, Anpeng,Dong, Guojun,Xie, Lihong,Zhang, Bin,Ruan, Banpu,Hong, Kai,Zeng, Dali,Guo, Longbiao,Qian, Qian,Gao, Zhenyu,Gao, Yang,Xue, Dawei. 2016

[12]QTL Analysis of Rice Peduncle Vascular Bundle System and Panicle Traits. Teng, S,Qian, Q,Zeng, DL,Kunihiro, Y,Huang, DN,Zhu, LH.

[13]Quantitative trait locus analysis for pod- and kernel-related traits in the cultivated peanut (Arachis hypogaea L.). Chen, Weigang,Jiao, Yongqing,Cheng, Liangqiang,Huang, Li,Liao, Boshou,Tang, Mei,Ren, Xiaoping,Zhou, Xiaojing,Chen, Yuning,Jiang, Huifang. 2016

[14]Detection and fine mapping of two quantitative trait loci for partial resistance to stripe virus in rice (Oryza sativa L.). Zhang, Ying-Xin,Wang, Qi,Jiang, Ling,Wang, Bao-Xiang,Liu, Ling-Long,Shen, Ying-Yue,Cheng, Xia-Nian,Wan, Jian-Min,Wan, Jian-Min.

[15]Genetic analysis of morphological traits in a new, versatile, rapid-cycling Brassica rapa recombinant inbred line population. Bagheri, Hedayat,El-Soda, Mohamed,van Oorschot, Inge,Hanhart, Corrie,Keurentjes, Joost J. B.,Koornneef, Maarten,Aarts, Mark G. M.,Bagheri, Hedayat,El-Soda, Mohamed,Bonnema, Guusje,Jansen-van den Bosch, Tanja,Mank, Rolf,Meng, Lin,Wu, Jian,Koornneef, Maarten. 2012

[16]Genetic analysis of morphological index and its related taxonomic traits for classification of indica/japonica rice. Qian, Q,He, P,Zheng, XW,Chen, Y,Zhu, LH. 2000

[17]QTL analysis of leaf photosynthetic rate and related physiological traits in rice (Oryza sativa L.). Teng, S,Qian, Q,Zeng, DL,Kunihiro, Y,Fujimoto, K,Huang, DN,Zhu, LH. 2004

[18]Identification of quantitative trait loci associated with aluminum tolerance in rice (Oryza sativa L.). Xue, Yong,Wan, Jianmin,Jiang, Ling,Wang, Chunming,Liu, Linglong,Zhang, Yuan-ming,Zhai, Huqu. 2006

[19]Small brown planthopper resistance loci in wild rice (Oryza officinalis). Zhang, Weilin,Yang, Ling,Ma, Bojun,Wang, Changchun,Hu, Haitao,Dong, Yan,Huang, Fudeng,Li, Chunshou,Ma, Rongrong,Yan, Chengqi,Chen, Jianping.

[20]Genetic analysis of leaffolder resistance in rice. Rao, Yuchun,Dong, Guojun,Zeng, Dali,Hu, Jiang,Zeng, Longjun,Gao, Zhengyu,Zhang, Guanghen,Guo, Longbiao,Qian, Qian,Rao, Yuchun,Dong, Guojun. 2010

作者其他论文 更多>>