Entire nucleotide sequences of Gossypium raimondii and G.arboreum mitochondrial genomes revealed A-genome species as cytoplasmic donor of the allotetraploid species

文献类型: 外文期刊

第一作者: Chen, Z.

作者: Chen, Z.;Nie, H.;Li, P.;Wang, M.;Pei, H.;Zhao, Y.;Li, S.;Hua, J.;Grover, C. E.;Wendel, J. F.;Wang, Y.;Li, P.

作者机构:

关键词: Comparative genomics;Gossypium mitochondrial genome;phylogenetic analysis;unique regions

期刊名称:PLANT BIOLOGY ( 影响因子:3.081; 五年影响因子:2.972 )

ISSN:

年卷期:

页码:

收录情况: SCI

摘要: Cotton (Gossypium spp.) is commonly grouped into eight diploid genomic groups, designated A-G and K, and an allotetraploid genomic group, AD. Gossypium raimondii (D-5) and G.arboreum (A(2)) are the putative contributors to the progenitor of G.hirsutum (AD(1)), the economically important fibre-producing cotton species.

分类号: Q94

  • 相关文献

[1]The Tea Tree Genome Provides Insights into Tea Flavor and Independent Evolution of Caffeine Biosynthesis. Zhang, Hai-Bin,Li, Kui,Zhang, Qun-Jie,Zhang, Yun,Liu, Yuan,Zhu, Ting,Li, Wei,Huang, Hui,Tong, Yan,Nan, Hong,Shi, Cong,Shi, Chao,Jiang, Jian-Jun,Mao, Shu-Yan,Jiao, Jun-Ying,Zhang, Dan,Zhao, You-Jie,Zhang, Li-Ping,Liu, Yun-Long,Gao, Li-Zhi,Xia, En-Hua,Zhang, Hai-Bin,Li, Kui,Liu, Yuan,Li, Wei,Huang, Hui,Shi, Chao,Jiang, Jian-Jun,Zhang, Dan,Gao, Li-Zhi,Xia, En-Hua,Nan, Hong,Shi, Cong,Sheng, Jun,Zhao, Yuan,Zhang, Qun-Jie,Kim, Changhoon,Yu, Yue,Zhu, Ting,Liu, Ben-Ying,Shao, Sheng-Fu,Ni, De-Jiang,Eichler, Evan E.. 2017

[2]Gene Turnover Contributes to the Evolutionary Adaptation of Acidithiobacillus caldus: Insights from Comparative Genomics. Zhang, Xian,Liu, Xueduan,Dong, Weiling,Yin, Huaqun,Zhang, Xian,Liu, Xueduan,Yin, Huaqun,He, Qiang,Zhang, Xiaoxia,Fan, Fenliang,Peng, Deliang,Huang, Wenkun. 2016

[3]Maize network analysis revealed gene modules involved in development, nutrients utilization, metabolism, and stress response. Ma, Shisong,Ding, Zehong,Li, Pinghua. 2017

[4]pirAB(vp)-Bearing Vibrio parahaemolyticus and Vibrio campbellii Pathogens Isolated from the Same AHPND-Affected Pond Possess Highly Similar Pathogenic Plasmids. Dong, Xuan,Wang, Hailiang,Zou, Peizhuo,Xie, Guosi,Wan, Xiaoyuan,Yang, Qian,Zhu, Yanping,Chen, Mengmeng,Guo, Chengcheng,Wang, Wenchao,Huang, Jie,Bi, Dexi,Zou, Peizhuo,Chen, Mengmeng,Liu, Zhen. 2017

[5]Identification and functional analysis of anthocyanin biosynthesis genes in Phalaenopsis hybrids. Wang, L. M.,Zhang, J.,Dong, X. Y.,Fu, Z. Z.,Jiang, H.,Zhang, H. C.. 2018

[6]Rapid evolutionary divergence of diploid and allotetraploid Gossypium mitochondrial genomes. Chen, Zhiwen,Nie, Hushuai,Pei, Haili,Li, Shuangshuang,Hua, Jinping,Wang, Yumei,Zhang, Lida. 2017

[7]Rapid and Recent Evolution of LTR Retrotransposons Drives Rice Genome Evolution During the Speciation of AA-Genome Oryza Species. Zhang, Qun-Jie,Gao, Li-Zhi,Zhang, Qun-Jie,Zhang, Qun-Jie. 2017

[8]The complete mitochondrial genome of the tapeworm Cladotaenia vulturi (Cestoda: Paruterinidae): gene arrangement and phylogenetic relationships with other cestodes. Guo, Aijiang,Guo, Aijiang. 2016

[9]Artificial selection for determinate growth habit in soybean. Lee, Rian,McClean, Phillip E.,Lee, Rian,McClean, Phillip E.,Wang, Xiaobo,Li, Yinghui,Qiu, Lijuan,Tian, Zhixi,Ma, Jianxin,Specht, James E.,Nelson, Randall L.,Nelson, Randall L..

[10]Population genomic analyses from low-coverage RAD-Seq data: a case study on the non-model cucurbit bottle gourd. Xu, Pei,Wu, Xiaohua,Wang, Baogen,Wang, Sha,Lu, Zhongfu,Li, Guojing,Xu, Shizhong,Tao, Ye,Qin, Dehui. 2014

[11]Diverse approaches to achieving grain yield in wheat. Zhang, Xueyong,Barrero, Roberto A.,Bellgard, Matthew.

[12]Application of comparative genomics in developing markers tightly linked to the Pm-2F gene for powdery mildew resistance in melon (Cucumis melo L.). Zhang, Chunqiu,Ren, Yi,Guo, Shaogui,Zhang, Haiying,Gong, Guoyi,Xu, Yong,Zhang, Chunqiu,Du, Yongchen.

[13]Genomic Analysis of Phylotype I Strain EP1 Reveals Substantial Divergence from Other Strains in the Ralstonia solanacearum Species Complex. Li, Peng,Wang, Dechen,Yan, Jinli,Zhou, Jianuan,Deng, Yinyue,Jiang, Zide,Zhang, Lianhui,Deng, Yinyue,Cao, Bihao,He, Zifu,Zhang, Lianhui. 2016

[14]Transcriptome analysis of Brassica napus pod using RNA-Seq and identification of lipid-related candidate genes. Xu, Hai-Ming,Kong, Xiang-Dong,Chen, Fei,Huang, Ji-Xiang,Zhao, Jian-Yi,Lou, Xiang-Yang. 2015

[15]Identification of cotton microRNAs and their targets. Baohong Zhang,Qinglian Wang,Kunbo Wang,Xiaoping Pan,Fang Liu,Tenglong Guo,George P. Cobb,Todd A. Anderson. 2007

[16]Carotenoid biosynthetic genes in Brassica rapa: comparative genomic analysis, phylogenetic analysis, and expression profiling. Li, Peirong,Zhang, Shujiang,Zhang, Shifan,Li, Fei,Zhang, Hui,Cheng, Feng,Wu, Jian,Wang, Xiaowu,Sun, Rifei. 2015

[17]Glucosinolate biosynthetic genes in Brassica rapa. Wang, Xiaowu. 2011

[18]Comparative genomics reveals cotton-specific virulence factors in flexible genomic regions in Verticillium dahliae and evidence of horizontal gene transfer from Fusarium. Chen, Jie-Yin,Gui, Yue-Jing,Zhang, Dan-Dan,Wang, Jie,Li, Nan-Yang,Zhang, Wen-Qi,Ma, Xue-Feng,Li, Ting-Gang,Zhou, Lei,Wang, Bao-Li,Bao, Yu-Ming,Dai, Xiao-Feng,Liu, Chun,Si, Kai-Wei,Huang, Jin-Qun,Liang, Yong,Yang, Lin,Zhang, Geng-Yun,Short, Dylan P. G.,Subbarao, Krishna V.. 2018

[19]Bolbase: a comprehensive genomics database for Brassica oleracea. Yu, Jingyin,Zhao, Meixia,Tong, Chaobo,Huang, Shunmou,Tehrim, Sadia,Hua, Wei,Liu, Shengyi,Wang, Xiaowu,Liu, Yumei,Zhao, Meixia. 2013

[20]Comparative Genomics Unravels the Functional Roles of Co-occurring Acidophilic Bacteria in Bioleaching Heaps. Liu, Xueduan,Liang, Yili,Xiao, Yunhua,Ma, Liyuan,Guo, Xue,Miao, Bo,Liu, Hongwei,Yin, Huaqun,Zhang, Xian,Liu, Xueduan,Liang, Yili,Miao, Bo,Liu, Hongwei,Yin, Huaqun,Peng, Deliang,Huang, Wenkun. 2017

作者其他论文 更多>>