Mapping quantitative trait loci for cold tolerance at the booting stage in rice by using chromosome segment substitution lines
文献类型: 外文期刊
第一作者: Lei, Jianguo
作者: Lei, Jianguo;Zhu, Shan;Zhu, Changlan;Shao, Caihong;Lei, Jianguo;Zhu, Shan;Tang, Shusheng;Huang, Renliang;Yan, Song
作者机构:
关键词: CSSL; genetic map; phenotyping
期刊名称:CROP & PASTURE SCIENCE ( 影响因子:2.286; 五年影响因子:2.507 )
ISSN: 1836-0947
年卷期: 2018 年 69 卷 3 期
页码:
收录情况: SCI
摘要: Low temperature at the booting stage in rice (Oryza sativa L.) can cause male sterility, resulting in yield losses. A set of chromosome segment substitution lines derived from the varieties Sasanishiki (cold-tolerant, ssp. japonica) and Habataki (cold-susceptible, ssp. indica) was used for analysis across two natural, low-temperature environments to study the genetic basis for cold tolerance at the booting stage. Spikelet fertility was used as the evaluation index for cold tolerance identification. Eight quantitative trait loci (QTLs) for cold tolerance were detected, two of which were located on chromosomes 3 (qCTSF3.1 and qCTSF3.2), and the others on chromosomes 4 (qCTSF4), 5 (qCTSF5), 6 (qCTSF6), 7 (qCTSF7), 8 (qCTSF8) and 9 (qCTSF9). The phenotypic variation explained by each QTL ranged from 5.4% to 25.3%. Of the eight QTLs, six (qCTSF3.2, qCTSF5, qCTSF6, qCTSF7, qCTSF8, qCTSF9) were repeatedly detected in two environments. QTLs qCTSF3.1, qCTSF7 and qCTSF9 overlapped with previously reported QTLs. All tolerant alleles for all QTLs were contributed by Sasanishiki.
分类号:
- 相关文献
作者其他论文 更多>>
-
Wild species rice OsCERK1DY-mediated arbuscular mycorrhiza symbiosis boosts yield and nutrient use efficiency in rice breeding
作者:Han, Ruicai;Yang, Zhou;Zhu, Shan;Tang, Guoping;Shen, Xianhua;Huang, Renliang;Duanmu, Deqiang;Cao, Yangrong;Wang, Chunquan
关键词:OsCERK1; Natural variation; Arbuscular mycorrhizal; Rice yield
-
Rapid improvement of grain appearance in three-line hybrid rice via CRISPR/Cas9 editing of grain size genes
作者:Huang, Juan;Chen, Weiwei;Qing, Dongjin;Pan, Yinghua;Zhou, Weiyong;Li, Jingcheng;Dai, Gaoxing;Deng, Guofu;Gao, Lijun;Wu, Hao;Ma, Chonglie;Zhu, Changlan
关键词:
-
Biochemical characterization, structure-guided mutagenesis, and application of a recombinant D-allulose 3-epimerase from Christensenellaceae bacterium for the biocatalytic production of D-allulose
作者:Guan, Lijun;Zhu, Ling;Wang, Kunlun;Gao, Yang;Li, Jialei;Yan, Song;Zhang, Xindi;Fan, Jing;Zhou, Ye;Yao, Xinmiao;Li, Bo;Guan, Lijun;Zhu, Ling;Wang, Kunlun;Gao, Yang;Li, Jialei;Yan, Song;Zhang, Xindi;Fan, Jing;Zhou, Ye;Yao, Xinmiao;Li, Bo;Ji, Nina
关键词:D-allulose; D-allulose 3-epimerase; bioconversion; site-directed iteration mutagenesis; apple juice
-
A review of the extraction and purification methods, biological activities, and applications of active compounds in Acanthopanax senticosus
作者:Zhang, Xindi;Guan, Lijun;Zhu, Ling;Wang, Kunlun;Gao, Yang;Li, Jialei;Yan, Song;Zhou, Ye;Yao, Xinmiao;Li, Bo;Zhang, Xindi;Guan, Lijun;Zhu, Ling;Wang, Kunlun;Gao, Yang;Li, Jialei;Yan, Song;Zhou, Ye;Yao, Xinmiao;Li, Bo;Ji, Nina
关键词:Acanthopanax senticosus; eleutheroside; polysaccharide; flavonoid; biological activity; application
-
In silico genome-wide analysis of homeodomain-leucine zipper transcription factors in Cannabis sativa L
作者:Zhang, Zhan-Ping;Wang, Zhen;Lu, Jia-Xin;Yan, Song;He, Lian-Qing;Wang, Pan-Pan;Qin, Chen;Ren, Wei-Chao;Ma, Wei;Lu, Jia-Xin;Liu, Xiu-Bo;Ma, Wei;Xu, Jiao;Wu, Jian-Li
关键词:Cannabis sativa L.; Homeodomain-leucine zipper; Genome-wide analysis; bioinformatics
-
Genomic and transcriptomic analyses of the elite rice variety Huizhan provide insight into disease resistance and heat tolerance
作者:Yang, Zhou;Li, Zheng;Huang, Renliang;Yang, Wei;Yang, Lei;Li, Zheng;Li, Guotian;Zhang, Zhaowu;Wei, Tong;Zhang, Zhaowu;Wei, Tong
关键词:Genome assembly; Heat tolerance; Oryza sativa; Plant immunity; Ultra-long Nanopore sequencing
-
OsCIPK2 mediated rice root microorganisms and metabolites to improve plant nitrogen uptake
作者:Chen, Mengying;Lv, He;Wang, Zewen;Zeng, Yuhang;Lin, Wenxiong;Zhang, Zhixing;Chen, Mengying;Feng, Shizhong;Lv, He;Wang, Zewen;Zeng, Yuhang;Lin, Wenxiong;Zhang, Zhixing;Feng, Shizhong;Lin, Wenxiong;Zhang, Zhixing;Shao, Caihong
关键词:OsCIPK2; Nitrogen uptake; Rhizosphere soil; Root microbiome; Metabolites; Synthetic microbial communities