Gibberellins regulate the stem elongation rate without affecting the mature plant height of a quick development mutant of winter wheat (Triticum aestivum L.)

文献类型: 外文期刊

第一作者: Zhang, Ning

作者: Zhang, Ning;Xie, Yong-Dun;Guo, Hui Jun;Zhao, Lin-Shu;Xiong, Hong-Chun;Gu, Jia-Yu;Li, Jun-Hui;Zhao, Zi-Wei;Zhao, Shi-Rong;Liu, Lu-Xiang;Kong, Fu-Quan;Sui, Li

作者机构:

关键词: Gibberellin;Plant height;Stem elongation rate;Winter wheat

期刊名称:PLANT PHYSIOLOGY AND BIOCHEMISTRY ( 影响因子:4.27; 五年影响因子:4.816 )

ISSN:

年卷期:

页码:

收录情况: SCI

摘要: Gibberellin (GA) is essential for determining plant height. Alteration of GA content or GA signaling results in a dwarf or slender phenotype. Here, we characterized a novel wheat mutant, quick development (qd), in which GA regulates stem elongation but does not affect mature plant height. qd and wild-type plants did not exhibit phenotypic differences at the seedling stage. From jointing to heading stage, qd plants were taller than wild-type plants due to elongated cells. However, wild-type and qd plants were the same height at heading. Unlike wild-type plants, qd plants were sensitive to exogenous GA due to mutation of Rht-B1. With continuous GA stimulation, qd seedlings and adult plants were taller than wild-type. Thus, the GA content of qd plants might differ from that of wild-type during the growth process. Analysis of GA biosynthetic gene expression verified this hypothesis and showed that TaKAO, which is involved in catalyzing the early steps of GA biosynthesis, was differentially expressed in qd plants compared with wild-type. The bioactive GA associated gene TaGA20ox was downregulated in qd plants during the late growth stages. Measurements of endogenous GA content were consistent with the gene-expression analysis results. Consistent with the GA content variation, the first three basal internodes were longer and the last two internodes were shorter in qd than in wild-type plants. The qd mutant might be useful in dissecting the mechanism by which GA regulates stem-growing process, and it may be serve as a GA responsive semi-dwarf germplasm in breeding programs. (C) 2016 Elsevier Masson SAS. All rights reserved.

分类号: Q945`Q946

  • 相关文献

[1]The Influence of RNAi Targeting of OsGA20ox2 Gene on Plant Height in Rice. Qiao, Feng,Zhao, Kai-Jun,Qiao, Feng,Qiao, Feng,Zhao, Kai-Jun.

[2]Effects of gibberellin mutations on in vitro shoot bud regeneration of Arabidopsis. Zhang, Xiuhai,Wu, Zhongyi,Huang, Conglin. 2008

[3]Plant development from microspore-derived embryos in oilseed rape as affected by chilling, desiccation and cotyledon excision. Zhang, GQ,Zhang, DQ,Tang, GX,He, Y,Zhou, WJ. 2006

[4]Heterologous expression and transcript analysis of gibberellin biosynthetic genes of grasses reveals novel functionality in the GA3ox family. Pearce, Stephen,Dubcovsky, Jorge,Huttly, Alison K.,Prosser, Ian M.,Li, Yi-Dan,Vaughan, Simon P.,Gallova, Barbora,Patil, Archana,Hedden, Peter,Phillips, Andrew L.,Li, Yi-Dan,Coghill, Jane A.,Dubcovsky, Jorge. 2015

[5]Molecular Cloning, Characterization, and Expression Analysis of Genes Encoding Gibberellin 20-Oxidase in Dasypyrum villosum Dwarf Mutant. Long, H.,Deng, G. B.,Pan, Z. F.,Yu, M. Q.,Cai, P.,Peng, Z. S..

[6]Fertility barriers in interspecific crosses within Viburnum. Xie, Wei-Jia,Wang, Ji-Hua,Leus, Leen,Van Laere, Katrijn.

[7]Identification of a novel gain-of-function mutant allele, slr1-d5, of rice DELLA protein. Zhang Yun-hui,Bian Xiao-feng,Zhang Suo-bing,Ling Jing,Wang Ying-jie,Fang Xian-wen,Wei Xiao-ying. 2016

[8]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.

[9]Overexpression of soybean GmCBL1 enhances abiotic stress tolerance and promotes hypocotyl elongation in Arabidopsis. Li, Zhi-Yong,Xu, Zhao-Shi,Chen, Ming,Li, Lian-Cheng,Ma, You-Zhi,Li, Zhi-Yong,He, Guang-Yuan,Yang, Guang-Xiao.

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

[11]A MADS-box gene NtSVP regulates pedicel elongation by directly suppressing a KNAT1-like KNOX gene NtBPL in tobacco (Nicotiana tabacum L.). Wang, Di,Chen, Xiaobo,Song, Gaoyuan,Kong, Xingchen,Geng, Shuaifeng,Yang, Jiayue,Wang, Bingnan,Wu, Liang,Li, Aili,Mao, Long,Zhang, Zenglin,Liu, Danmei.

[12]Molecular characterization and functional analysis of barley semi-dwarf mutant Riso no. 9265. Jia, Qiaojun,Zhang, Guoping,Jia, Qiaojun,Shang, Yi,Zhu, Jinghuan,Hua, Wei,Wang, Junmei,Yang, Jianming,Li, Chengdao. 2015

[13]Characterizations and molecular mapping of a novel dominant semi-dwarf gene Sdd(t) in rice (Oryza sativa). Liu, B. M.,Wu, Y. J.,Fu, X. D.,Qian, Q.. 2008

[14]EUI1, encoding a putative cytochrome P450 monooxygenase, regulates internode elongation by modulating gibberellin responses in rice. Luo, AD,Qian, Q,Yin, HF,Liu, XQ,Yin, CX,Lan, Y,Tang, JY,Tang, ZS,Cao, SY,Wang, XJ,Xia, K,Fu, XD,Luo, D,Chu, CC. 2006

[15]Comparative transcriptome analysis of berry-sizing effects of gibberellin (GA(3)) on seedless Vitis vinifera L.. Wang, Xicheng,Zhao, Mizhen,Wu, Weimin,Qian, Yaming,Wang, Zhuangwei,Korir, Nicholas Kibet.

[16]Cloning and characterization of HbJAZ1 from the laticifer cells in rubber tree (Hevea brasiliensis Muell. Arg.). Tian, W. -W.,Huang, W. -F.,Zhao, Y..

[17]Gibberellin stimulates regrowth after defoliation of sheepgrass (Leymus chinensis) by regulating expression of fructan-related genes. Cai, Yueyue,Liu, Gongshe,Chen, Shuangyan,Shao, Linhui,Li, Xiuqing.

[18]MechanismofSolanumrostratumDunalSeedGermination. 魏守辉,HongjuanHuang,ZhaofengHuang,JingchaoChen,JinyiChen,张朝贤. 2013

[19]Isolation and characterization of a GAI/RGA-like gene from Gossypium hirsutum. Liao, Wen-bin,Ruan, Meng-bin,Cui, Bai-ming,Lu, Jia-ju,Peng, Ming,Xu, Nan-fei.

[20]Dynamic QTL mapping for plant height in Upland cotton (Gossypium hirsutum). Shang, Lianguang,Abduweli, Abdugheni,Cai, Shihu,Liu, Fang,Wang, Kunbo,Wang, Yumei.

作者其他论文 更多>>