نتایج جستجو برای: gossypium

تعداد نتایج: 3515  

2016
Zhiwen Chen Kun Feng Corrinne E Grover Pengbo Li Fang Liu Yumei Wang Qin Xu Mingzhao Shang Zhongli Zhou Xiaoyan Cai Xingxing Wang Jonathan F Wendel Kunbo Wang Jinping Hua

The cotton genus (Gossypium spp.) contains 8 monophyletic diploid genome groups (A, B, C, D, E, F, G, K) and a single allotetraploid clade (AD). To gain insight into the phylogeny of Gossypium and molecular evolution of the chloroplast genome in this group, we performed a comparative analysis of 19 Gossypium chloroplast genomes, six reported here for the first time. Nucleotide distance in non-c...

2012
Qin Xu Guanjun Xiong Pengbo Li Fei He Yi Huang Kunbo Wang Zhaohu Li Jinping Hua

BACKGROUND Cotton (Gossypium spp.) is a model system for the analysis of polyploidization. Although ascertaining the donor species of allotetraploid cotton has been intensively studied, sequence comparison of Gossypium chloroplast genomes is still of interest to understand the mechanisms underlining the evolution of Gossypium allotetraploids, while it is generally accepted that the parents were...

2005
Peng W. Chee Aparna Desai Andrew H. Paterson

Scientific information on the A genome species of Gossypium is limited due to their decline as crop species and low levels of marker polymorphism. As the A subgenome of the allotetraploid species of Gossypium is contributed by A genome progenitors, studies on the A genome will help us understand the evolution of polyploids. We compared DNA marker order along the chromosomes of A, D and At genom...

Journal: :Genetics 2006
Joshua A Udall Jordan M Swanson Dan Nettleton Ryan J Percifield Jonathan F Wendel

Studying gene expression in polyploids is complicated by genomewide gene duplication and the problem of distinguishing transcript pools derived from each of the two homeologous genomes such as the A- and D-genomes of allotetraploid Gossypium. Short oligonucleotide probes designed to specifically target several hundred homeologous gene pairs of Gossypium were printed on custom NimbleGen microarr...

2017
Qi You Wenying Xu Kang Zhang Liwei Zhang Xin Yi Dongxia Yao Chun-Chao Wang Xueyan Zhang Xinhua Zhao Nicholas J. Provart Fuguang Li Zhen Su

Plant genera with both diploid and polyploid species are a common evolutionary occurrence. Polyploids, especially allopolyploids such as cotton and wheat, are a great model system for heterosis research. Here, we have integrated genome sequences and transcriptome data of Gossypium species to construct co-expression networks and identified functional modules from different cotton species, includ...

2017
Zhenzhen Xu Jing Liu Wanchao Ni Zhen Peng Yue Guo Wuwei Ye Fang Huang Xianggui Zhang Peng Xu Qi Guo Xinlian Shen Jianchang Du

Although several diploid and tetroploid Gossypium species genomes have been sequenced, the well annotated web-based transposable elements (TEs) database is lacking. To better understand the roles of TEs in structural, functional and evolutionary dynamics of the cotton genome, a comprehensive, specific, and user-friendly web-based database, Gossypium raimondii transposable elements database (GrT...

Journal: :Molecular phylogenetics and evolution 2017
Zhiwen Chen Corrinne E Grover Pengbo Li Yumei Wang Hushuai Nie Yanpeng Zhao Meiyan Wang Fang Liu Zhongli Zhou Xingxing Wang Xiaoyan Cai Kunbo Wang Jonathan F Wendel Jinping Hua

Cotton (Gossypium spp.) is commonly grouped into eight diploid genomic groups, designated A-G and K, and one tetraploid genomic group, namely AD. To gain insight into the phylogeny of Gossypium and molecular evolution of the chloroplast genome duringdiversification, chloroplast genomes (cpDNA) from 6 D-genome and 2 G-genome species of Gossypium (G. armourianum D2-1, G. harknessii D2-2, G. david...

2017
Quan Sun Guanghao Wang Xiao Zhang Xiangrui Zhang Peng Qiao Lu Long Youlu Yuan Yingfan Cai

TIFY proteins are plant-specific proteins containing TIFY, JAZ, PPD and ZML subfamilies. A total of 50, 54 and 28 members of the TIFY gene family in three cultivated cotton species-Gossypium hirsutum, Gossypium barbadense and Gossypium arboretum-were identified, respectively. The results of phylogenetic analysis showed that these TIFY genes were divided into eight clusters. The different cluste...

2012
Song Luo Jennifer Mach Bradley Abramson Rolando Ramirez Robert Schurr Pierluigi Barone Gregory Copenhaver Otto Folkerts

The centromere is a repeat-rich structure essential for chromosome segregation; with the long-term aim of understanding centromere structure and function, we set out to identify cotton centromere sequences. To isolate centromere-associated sequences from cotton, (Gossypium hirsutum) we surveyed tandem and dispersed repetitive DNA in the genus. Centromere-associated elements in other plants incl...

Journal: :Genetics 1960
C L Rhyne

ACCORDING to STEPHENS (1950) speciation in the genus Gossypium occurs both by cryptic structural differentiation of chromosomes and by major gene substitution and mutation. In the first paper of this series RHYNE (1958) reported a sizeable reduction of recombination values within linkage groups following a transfer of intact diploid Gossypium linkage groups into allotetraploid G. hirsutum. Thes...

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