A CsYcf54 variant conferring light green coloration in cucumber

文献类型: 外文期刊

第一作者: Wang, Xin

作者: Wang, Xin;Yang, Li;Gao, Dongli;Huang, Sanwen;Wang, Xin;Zhang, Chunzhi;Yang, Li;Gao, Dongli;Huang, Sanwen;Chen, Huiming

作者机构:

关键词: Cucumis sativus L.;Mutant;Whole genome re-sequencing;Ycf54

期刊名称:EUPHYTICA ( 影响因子:1.895; 五年影响因子:2.181 )

ISSN:

年卷期:

页码:

收录情况: SCI

摘要: The color of cucumber fruits, which is mainly determined by the content of chlorophylls, largely influences consumers' preference. A recessive mutant showing light green fruits and leaves was identified in an M-2 population derived from ethylmethane sulfonate mutagenized elite cucumber line 406. By MutMap analysis of bulked F-2 DNA with normal and mutant phenotype, respectively, the causative SNP co-segregating with the mutant phenotype was identified. The gene Csa6G133820, harboring the causative SNP, encodes an Ycf54-like protein that has recently been implicated in the cyclase step of chlorophyll biosynthesis. Subcellular localization showed that Csa6G133820 was localized in the chloroplasts, supporting its role in the chlorophyll biosynthesis. The light green mutant provides a novel locus for cucumber breeding.

分类号: S3

  • 相关文献

[1]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

[2]An ACCUMULATION AND REPLICATION OF CHLOROPLASTS 5 gene mutation confers light green peel in cucumber. Wang, Shenhao,Hu, Bowen,Zhang, Zhonghua,Huang, Sanwen,Zhou, Qian,Huang, Sanwen,Chen, Huiming. 2015

[3]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

[4]Cucumber (Cucumis sativus L.) seed performance as influenced by ovary and ovule position. Jing, HC,Bergervoet, JHW,Jalink, H,Klooster, M,Du, SL,Bino, RJ,Hilhorst, HWM,Groot, SPC. 2000

[5]Molecular mapping and candidate gene analysis for yellow fruit flesh in cucumber. Lu, H. W.,Miao, H.,Tian, G. L.,Gu, X. F.,Zhang, S. P.,Wehner, T. C..

[6]Genome-wide identification, phylogeny and expression analysis of the lipoxygenase gene family in cucumber. Jiang, L. W.,Liu, X. H.. 2011

[7]Current status of genetic transformation technology developed in cucumber (Cucumis sativus L.). Wang Shun-li,Ku, Seong Sub,Choi, Pil Son,Ye Xing-guo,He Cong-fen,Kwon, Suk Yoon. 2015

[8]A major quantitative trait locus conferring resistance to fusarium wilt was detected in cucumber by using recombinant inbred lines. Zhang, Sheng-ping,Miao, Han,Yang, Yu-hong,Xie, Bing-yan,Wang, Ye,Gu, Xing-fang.

[9]Gibberellin A(3) pretreatment increased antioxidative capacity of cucumber radicles and hypocotyls under suboptimal temperature. Li, Qingzhu,Li, Chaohan,Shi, Qinghua,Yu, Xianchang. 2011

[10]Molecular Mapping and Candidate Gene Analysis for Numerous Spines on the Fruit of Cucumber. Zhang, Shengping,Liu, Shulin,Miao, Han,Wang, Min,Liu, Panna,Gu, Xingfang,Wehner, Todd C..

[11]Characterization and immunogenicity of an apxIA mutant of Actinobacillus pleuropneumoniae. Xu, Fuzhou,Chen, Xiaoling,Shi, Aihua,Yang, Bing,Wang, Jinluo,Li, Yongqing,Guo, Xin,Blackall, P. J.,Yang, Hanchun. 2006

[12]Genetic analysis and fine-mapping of a dwarfing with withered leaf-tip mutant in rice. Jiang, Liang,Guo, Longbiao,Jiang, Hua,Zeng, Dali,Hu, Jiang,Wu, Liwen,Liu, Jian,Gao, Zhenyu,Qian, Qian,Jiang, Liang,Wu, Liwen. 2008

[13]Levels of cytokinins in the ovules of cotton mutants with altered fiber development. Chen, JG,Du, XM,Zhou, X,Zhao, HY. 1997

[14]Binding affinity of five PBPs to Ostrinia sex pheromones. Sun, Yaqi,He, Kanglai,Wang, Zhenying,Sun, Yaqi,Wanner, Kevin W.,Coates, Brad S.. 2017

[15]Effect of N-terminal and C-terminal Deletion of Cry1Ie of Bacillus thuringiensis on its Expression and Purification. Zhang, Chunlu,Guo, Shuyuan,Zhang, Jie,Song, Fuping. 2009

[16]Identification and gene mapping of a soybean chlorophyll-deficient mutant. Zhang, H.,Zhang, D.,Han, S.,Zhang, X.,Yu, D.,Han, S.. 2011

[17]Identification and characterization of a novel adenine phosphoribosyltransferase gene (ZmAPT2) from maize (Zea mays L.). Wu, Suowei,Yu, Zhanwang,Li, Weihua,Yang, Qingkai,Ye, Chunjiang,Sun, Yan,Jin, Demin,Wang, Bin,Wu, Suowei,Li, Weihua,Yang, Qingkai,Wang, Fengge,Zhao, Jiuran.

[18]ISOLATION AND CHARACTERIZATION OF A POLLEN-SPECIFIC GENE ZMSTK2_USP FROM ZEA MAYS. Javeed, A.,Fan, M. X.,Zhang, C. Y.,Ma, W. J.,Chen, M. M.,Liu, K. C.,Cai, F. C.,Lin, F.,Shi, L.,Hussain, K.. 2018

[19]Fine mapping of a day-length-sensitive dwarf gene in rice. Wang, Min,Qin, Ruizhen,Luo, Sheng,Cheng, Zhijun,Chen, Liping,Wang, Fan,Zhang, Haitao,Shi, Yingrao,Chen, Qinquan.

[20]Fine mapping and marker-assisted selection (MAS) of a low glutelin content gene in rice. Wang, YH,Liu, SJ,Ji, SL,Zhang, WW,Wang, CM,Jiang, L,Wan, JM.

作者其他论文 更多>>