The role of Somatic embryogenesis receptor-like kinase 1 in controlling pollen production of the Gossypium anther

文献类型: 外文期刊

第一作者: Shi, Ya-li

作者: Shi, Ya-li;Guo, San-dui;Zhang, Rui;Meng, Zhi-gang;Ren, Mao-zhi

作者机构:

关键词: Anther;Somatic embryogenesis receptor-like kinase 1;Gossypium hirsutum;Homolog;RNAi

期刊名称:MOLECULAR BIOLOGY REPORTS ( 影响因子:2.316; 五年影响因子:2.357 )

ISSN:

年卷期:

页码:

收录情况: SCI

摘要: In flowering plants, male gametophytes are generated in anthers from microsporocytes. However, more evidence is needed to reveal the genetic mechanisms which regulate the differentiation and interaction of these highly specialized cells in anthers. Here we report the characterization of a series of male-sterile cotton (Gossypium hirsutum) mutants, including mutants with normal fertility, semi-sterility and complete sterility. These mutants are forms of transgenic cotton containing RNAi vectors with partial cDNA fragments of GhSERK1. The GhSERK1 gene encodes a putative leucine-rich repeat receptor protein kinase (LRR-RLK), and generally has 11 domains. In previous research, we found plants containing GhSERK1 produce an abundance of male reproductive tissue. In this paper, three RNAi constructs were designed separately to analyze its function in anther. After the three RNAi vectors were transformed into the cotton, transgenic plants with the specialized fragment exhibited normal fertility or the pollen energy decreased slightly, as ones with the homologous fragments exhibited various degrees of male sterility with different expression levels of GhSERK1 mRNA. In conclusion, for the transgenic plants with conserved fragments, lower expression levels of GhSERK1 mRNA were in transgenic plants, and a higher degree of male sterility was observed. Taking together, these findings demonstrate the GhSERK1 gene has a role in the development of anthers, especially in the formation of pollen grains. Also, we infer there must be another homolog of GhSERK1 in cotton, and both of GhSERK1 and its homolog function redundantly as important control points in controlling anther pollen production.

分类号: Q7

  • 相关文献

[1]Cloning and characterization of a putative 12-oxophytodienoic acid reductase cDNA induced by osmotic stress in roots of foxtail millet. Zhang, Jin-Peng,Liu, Ting-Song,Zheng, Jun,Jin, Zheng,Zhu, Yun,Guo, Jiu-Feng,Wang, Guo-Ying.

[2]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

[3]PlantOrDB: a genome-wide ortholog database for land plants and green algae. Ji, Guoli,Ye, Congting,Li, Lei,Ye, Congting,Liang, Chun,Shu, Changlong,Zhang, Jie,Liang, Chun,Ji, Guoli. 2015

[4]Isolation and characterization of an oilseed rape MAP kinase BnMPK3 involved in diverse environmental stresses. Yu, SW,Zhang, LD,Zuo, KJ,Tang, DQ,Tang, KX.

[5]Genome-wide transcriptomic and phylogenetic analyses reveal distinct aluminum-tolerance mechanisms in the aluminum-accumulating species buckwheat (Fagopyrum tataricum). Zhu, Haifeng,Zhu, Yifang,Zou, Jianwen,Zhao, Fang-Jie,Huang, Chao-Feng,Wang, Hua. 2015

[6]Ustilago maydis reprograms cell proliferation in maize anthers. Gao, Li,Gao, Li,Kelliher, Timothy,Nguyen, Linda,Walbot, Virginia.

[7]Tissue-specific expression and drought responsiveness of cell-wall invertase genes of rice at flowering. Ji, XM,Raveendran, M,Oane, R,Ismail, A,Lafitte, R,Bruskiewich, R,Cheng, SH,Bennett, J.

[8]The molecular mechanisms of male reproductive organogenesis in rice (Oryza sativa L.). Tian, Yun,Yang, Hui,Dai, Qian,Fang, Jun,Lu, Xiang Yang,Tian, Yun,Yang, Hui,Dai, Qian,Fang, Jun,Lu, Xiang Yang,Tian, Yun,Qing, Xian Guo,Qing, Xian Guo,Zhang, Hai Wen,Zhang, Hai Wen.

[9]QTL mapping of dehiscence length at the basal part of thecae related to heat tolerance of rice (Oryza sativa L.). Zhao, Ling,Zhao, Chun-Fang,Zhou, Li-Hui,Lin, Jing,Zhao, Qing-Yong,Zhu, Zhen,Chen, Tao,Yao, Shu,Wang, Cai-Lin,Zhao, Ling,Zhao, Chun-Fang,Zhou, Li-Hui,Lin, Jing,Zhao, Qing-Yong,Zhu, Zhen,Chen, Tao,Yao, Shu,Hasegawa, Toshihiro,Matsui, Tsutomu.

[10]Identification of differentially expressed genes during anther abortion of Taigu Genic Male Sterile Wheat by combining suppression subtractive hybridization and cDNA array. Chang, Qing-Shan,Zhou, Rong-Hua,Kong, Xiu-Ying,Yu, Zeng-Liang,Jia, Ji-Zeng. 2006

[11]Embryo induction and plant regeneration of Callerya speciosa (Fabaceae) through anther culture. Huang, Bilan,Xu, Li,Li, Kelie,Fu, Yunlu,Li, Zhiying.

[12]A simple pollen collection, dehydration, and long-term storage method for litchi (Litchi chinensis Sonn.). Wang, Limin,Wu, Jiefang,Chen, Jiezhen,Fu, Danwen,Zhang, Chunyang,Cai, Changhe,Ou, Liangxi,Wang, Limin,Wu, Jiefang,Chen, Jiezhen,Fu, Danwen,Zhang, Chunyang,Cai, Changhe,Ou, Liangxi.

[13]Low temperature treatments of rice (Oryza sativa L.) anthers changes polysaccharide and protein composition of the anther walls and increases pollen fertility and callus induction. Tian, Q. Q.,Li, X.,Fang, X. W.,Tian, Q. Q.,Lu, C. M.,Li, X..

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

[15]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

[16]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

[17]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

[18]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

[19]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

[20]QTL mapping for fiber quality traits across multiple generations and environments in upland cotton. Fu-Ding Sun,Jian-Hong Zhang,Shu-Fang Wang,Wan-Kui Gong,Yu-Zhen Shi,Ai-Ying Liu,Jun-Wen Li,Ju-Wu Gong,Hai-Hong Shang,You-Lu Yuan.

作者其他论文 更多>>