Genome-Wide Study of YABBY Genes in Upland Cotton and Their Expression Patterns under Different Stresses

文献类型: 外文期刊

第一作者: Zhaoen Yang;;Qian Gong

作者: Zhaoen Yang;Qian Gong;Li, Fuguang;Lingling Wang;Yuying Jin;Jianping Xi;Zhi Li;Wenqiang Qin;Zuoren Yang;Lili Lu;Quanjia Chen;Fuguang Li

作者机构:

关键词: polarity;Gossypium hirsutum;abiotic stress;ovule;transcription factor;segmental duplication

期刊名称:FRONTIERS IN GENETICS ( 影响因子:4.599; 五年影响因子:4.888 )

ISSN: 1664-8021

年卷期: 2018 年 9 卷

页码:

收录情况: SCI

摘要: Members of the YABBY gene family, a small plant-specific family of genes, have been proposed to function in specifying abaxial cell fate. Although to date little has been learned about cotton YABBY genes, completion of the cotton genome enables a comprehensive genome-wide analysis of YABBY genes in cotton. Here, a total of 12, 12, and 23 YABBY genes were identified in Gossypium arboreum (2n = 26, A(2)), G. raimondii (2n = 26, D-5), and G. hirsutum (2n = 4x = 52, [AD](t)), respectively. Sequence analysis showed that the N-terminal zinc-finger and C-terminal YABBY domains in YABBY proteins are highly conserved among cotton, Arabidopsis, and rice. Eighty-five genes from eight sequenced species naturally clustered into five groups, and the YAB2-like group could be divided into three sub-groups, indicating that YABBYs are highly conserved among the examined species. Orthologs from the At and Dt sub-genomes (where "t" indicates tetraploid) showed good collinearity, indicating that YABBY loci are highly conserved between these two sub-genomes. Whole-genome duplication was the primary cause of upland cotton YABBY gene expansion, segmental duplication played important roles in YABBY gene expansion within the At and Dt sub-genomes, and the YAB5-like group was mainly generated by segmental duplication. The long-terminal repeat retroelements Copia and Gypsy were identified as major transposable elements accompanying the appearance of duplicated YABBY genes, suggesting that transposable element expansion might be involved in gene duplication. Selection pressure analyses using PAML revealed that relaxed purifying selection might be the main impetus during evolution of YABBY genes in the examined species. Furthermore, exon/intron pattern and motif analyses indicated that genes within the same group were significantly conserved between Arabidopsis and cotton. In addition, the expression patterns in different tissues suggest that YABBY proteins may play roles in ovule development because YABBYs are highly expressed in ovules. The expression pattern of YABBY genes showed that approximately half of the YABBYs were down-regulated under different stress treatments. Collectively, our results represent a comprehensive genome-wide study of the YABBY gene family, which should be helpful in further detailed studies on the gene function and evolution of YABBY genes in cotton.

分类号:

  • 相关文献

[1]Genome-wide analysis of WOX genes in upland cotton and their expression pattern under different stresses. Zhaoen Yang,Qian Gong,Wenqiang Qin,Qin, Wenqiang,Yang, Zhaoen,Zuoren Yang,Yuan Cheng,Lili Lu,Xiaoyang Ge,Chaojun Zhang,Zhixia Wu,Fuguang Li. 2017

[2]Identification of candidate thermotolerance genes during early seedling stage in upland cotton (Gossypium hirsutum L.) revealed by comparative transcriptome analysis. Peng, Zhen,Cao, Moju,Xu, Jie,Lu, Yanli,Peng, Zhen,He, Shoupu,Gong, Wenfang,Sun, Junling,Pan, Zhaoe,Du, Xiongming,Sun, Gaofei.

[3]The abiotic stress-responsive NAC transcription factor SlNAC11 is involved in drought and salt response in tomato (Solanum lycopersicum L.). Lingling Wang,Chen, Guoping,Zongli Hu,Mingku Zhu,Zhiguo Zhu,Jingtao Hu,Ghulam Qanmber,Guoping Chen.

[4]Characterization of a Wheat R2R3-MYB Transcription Factor Gene, TaMYB19, Involved in Enhanced Abiotic Stresses in Arabidopsis. Zhang, Lichao,Liu, Guoxiang,Zhao, Guangyao,Xia, Chuan,Jia, Jizeng,Liu, Xu,Kong, Xiuying.

[5]Comparative expression analysis of five WRKY genes from Tibetan hulless barley under various abiotic stresses between drought-resistant and sensitive genotype. Li, Huie,Lan, Xiaozhong,Li, Huie,Zhou, Qi,Guo, Qiqiang,Guo, Qiqiang,Wei, Na.

[6]CsWRKY46, a WRKY transcription factor from cucumber, confers cold resistance in transgenic-plant by regulating a set of cold-stress responsive genes in an ABA-dependent manner. Zhang, Ying,Yu, Hongjun,Yang, Xueyong,Li, Qiang,Ling, Jian,Wang, Hong,Gu, Xingfang,Huang, Sanwen,Jiang, Weijie,Zhang, Ying,Jiang, Weijie.

[7]Evolution of plant microRNA gene families. Li, Aili,Mao, Long. 2007

[8]Comparative proteomic analysis reveals the mechanisms governing cotton fiber differentiation and initiation. Kang Liu,Meiling Han,Chaojun Zhang,Liangyu Yao,Jing Sun,Tianzhen Zhang.

[9]The MAPKKK Gene Family in Gossypium raimondii: Genome-Wide Identification, Classification and Expression Analysis. Zujun Yin,Junjuan Wang,Delong Wang,Weili Fan,Shuai Wang,Wuwei Ye. 2013

[10]Comparison of anti-browning ability and characteristics of the fractionated Maillard reaction products with different polarities. Yuan, Debao,Xu, Yinghao,Wang, Chaozheng,Li, Yixing,Li, Fenfang,Zhou, Ya,Chen, Jiao,Jin, Zhiqiang,Zhang, Haide,Jiang, Yueming.

[11]Study on the Acetylation of Rice Straw-Biogas Residue and its Characteristic Effect on Rice Straw-Reinforced Composites. Xia, Tengfei,Jin, Xiaochen,Tang, Wanying,Xia, Tengfei,Huang, Hongying,Wu, Guofeng,Jin, Xiaochen,Sun, Enhui. 2017

[12]Haploid Induction via In vitro Gynogenesis in Tomato (Solanum lycopersicum L.). Zhao He,Wang Xiao-xuan,Du Yong-chen,Zhu De-wei,Guo Yan-mei,Gao Jian-chang,Li Fei,Snyder, John C.. 2014

[13]Eeffect of the environment factors on KGM molecular dimension. Wang Chao,Xu Mei,Zhu Yu-peng,Cai Lin-lin,Qiao Yu. 2011

[14]Protein-DNA interactions in the promoter region of the gene encoding diapause hormone and pheromone biosynthesis activating neuropeptide of the cotton bollworm, Helicoverpa armigera. Hong, B,Zhang, ZF,Tang, SM,Yi, YZ,Zhang, TY,Xu, WH.

[15]Overcoming obstacles to interspecific hybridization between Gossypium hirsutum and G. turneri. Chen, Yu,Chen, Yu,Feng, Shouli,Zhao, Ting,Zhou, Baoliang. 2018

[16]Heterosis in yield, endotoxin expression and some physiological parameters in Bt transgenic cotton. Dong, H. Z.,Li, W. J.,Tang, W.,Li, Z. H.,Zhang, D. M.. 2007

[17]Characterization of eleven monosomic alien addition lines added from Gossypium anomalum to Gossypium hirsutum using improved GISH and SSR markers. Wang, Xiaoxiao,Wang, Yingying,Wang, Chen,Chen, Yu,Chen, Yu,Feng, Shouli,Zhao, Ting,Zhou, Baoliang,Chen, Yu. 2016

[18]Inducement and identification of chromosome introgression and translocation of Gossypium australe on Gossypium hirsutum. Wang, Yingying,Feng, Shouli,Li, Sai,Tang, Dong,Chen, Yu,Chen, Yu,Zhou, Baoliang,Chen, Yu,Chen, Yu. 2018

[19]Quantitative trait loci mapping for yield and its components by using two immortalized populations of a heterotic hybrid in Gossypium hirsutum L.. Liu, Renzhong,Wang, Baohua,Guo, Wangzhen,Qin, Yongsheng,Zhang, Yuanming,Zhang, Tianzhen,Liu, Renzhong,Wang, Liguo. 2012

[20]Analysis of differentially expressed genes in response to endogenous cytokinins during cotton leaf senescence. P. ZHAO,N. ZHANG,Z.J. YIN,Y.D. LIU,F.F. SHEN. 2013

作者其他论文 更多>>