Expression analysis of abscisic acid (ABA) and metabolic signalling factors in developing endosperm and embryo of barley

文献类型: 外文期刊

第一作者: Chen, Zhiwei

作者: Chen, Zhiwei;Huang, Jianhua;Muttucumaru, Nira;Halford, Nigel G.;Powers, Stephen J.

作者机构:

关键词: Hordeum vulgare;Abscisic acid;Seed development;Signalling

期刊名称:JOURNAL OF CEREAL SCIENCE ( 影响因子:3.616; 五年影响因子:3.891 )

ISSN: 0733-5210

年卷期: 2013 年 58 卷 2 期

页码:

收录情况: SCI

摘要: The expression of genes encoding components of ABA and metabolic signalling pathways in developing barley endosperm and embryo was investigated. The genes included HvRCAR35_47387 and HvRCAR35_2538 (encoding ABA receptors), HvABI1d (protein phosphatase 2C), HvSnRK2.4, HvSnRK2.6 and HvPKABA1 (SnRK2-type protein kinases) and HvABI5 (ABA response element binding protein; AREBP), as well as two genes encoding SnRK1-type protein kinases. Both SnRK1 and SnRK2 phosphorylate AREBPs, but SnRK2 is activated by ABA whereas SnRK1 may be broken down. Multiple cereal AREBPs with two conserved SnRK1/2 target sites and another class of BZIP transcription factors with SnRK1/2 binding sites, including HvBLZ1, were identified. Barley grain (cv. Triumph) was sampled at 15, 20, 25 and 30 days postanthesis (dpa). HvRCAR35_47387, HvABI1d, HvSnRK2.4 and HvABI5 were expressed highly in the endosperm but at much lower levels in the embryo. Conversely, HvPKABA1 and HvRCAR35_2538 were expressed at higher levels in the embryo than the endosperm, while HvSnRK2.6 was expressed at similar levels in both. HvRCAR35_47387, HvABI1d, HvSnRK2.4 and HvABI5 all peaked in expression in the endosperm at 20 dpa. A model is proposed in which ABA brings about a transition from a SnRK1-dominated state in the endosperm during grain filling to a SnRK2-dominated state during maturation. (C) 2013 The Authors. Published by Elsevier Ltd. All rights reserved.

分类号:

  • 相关文献

[1]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

[2]Expression of signalling and defence-related genes mediated by over-expression of JERF1, and increased resistance to sheath blight in rice. Li, Y.,Liu, W.,Ming, J.,Liu, S.,Li, X.,Zhang, H.,Huang, R..

[3]Transcriptomic analyses reveal complex and interconnected sucrose signaling cascades in developing seeds of castor bean. Wang, Bin,Haque, Mohammad Enamul,Xu, Wei,Li, Fei,Liu, Aizhong,Wang, Bin,Haque, Mohammad Enamul,Zhang, Yang,Liu, Aizhong. 2018

[4]Comparative Transcriptomic Analyses of Vegetable and Grain Pea (Pisum sativum L.) Seed Development. Liu, Na,Zhang, Guwen,Xu, Shengchun,Hu, Qizan,Gong, Yaming,Mao, Weihua. 2015

[5]Suppression of OsMADS7 in rice endosperm stabilizes amylose content under high temperature stress. Zhang, Hua,Xu, Heng,Feng, Mengjie,Zhu, Ying. 2018

[6]Changes in seed growth, levels and distribution of flavonoids during tartary buckwheat seed development. Song, Chao,Xiang, Da-Bing,Yan, Lin,Song, Yue,Zhao, Gang,Wang, Yue-Hua,Zhang, Bao-Lin. 2016

[7]Evolutionary and functional study of the CDPK gene family in wheat (Triticum aestivum L.). Li, Ai-Li,Zhu, Yuan-Fang,Tan, Xiao-Mei,Wang, Xiang,Wei, Bo,Guo, Han-Zi,Zhang, Zeng-Lin,Chen, Xiao-Bo,Zhao, Guang-Yao,Kong, Xiu-Ying,Jia, Ji-Zeng,Mao, Long,Tan, Xiao-Mei.

[8]Identification of regulatory networks and hub genes controlling soybean seed set and size using RNA sequencing analysis. Du, Juan,Wang, Shoudong,He, Cunman,Shou, Huixia,Zhou, Bin,Ruan, Yong-Ling.

[9]Development of an efficient method for the isolation of factors involved in gene transcription during rice embryo development. Ye, R,Yao, QH,Xu, ZH,Xue, HW. 2004

[10]Validation of reference genes for real-time quantitative PCR normalization in soybean developmental and germinating seeds. Li, Qing,Fan, Cheng-Ming,Zhang, Xiao-Mei,Fu, Yong-Fu. 2012

[11]Quantitative phosphoproteomic analysis of early seed development in rice (Oryza sativa L.). Qiu, Jiehua,Hou, Yuxuan,Tong, Xiaohong,Wang, Yifeng,Lin, Haiyan,Liu, Qing,Zhang, Wen,Li, Zhiyong,Zhang, Jian,Nallamilli, Babi R..

[12]Selection for aborted-seeded longan cultivars. Huang, JS,Xu, XD,Zheng, SQ,Xu, JH. 2001

[13]Transcriptomic Analysis of Long Non-Coding RNAs and Coding Genes Uncovers a Complex Regulatory Network That Is Involved in Maize Seed Development. Zhu, Ming,Jiang, Haiyang,Zhu, Ming,Zhang, Min,Xing, Lijuan,Li, Wenzong,Wang, Lei,Xu, Miaoyun. 2017

[14]Large-scale sequencing of normalized full-length cDNA library of soybean seed at different developmental stages and analysis of the gene expression profiles based on ESTs. Sha, Ai-Hua,Li, Chen,Yan, Xiao-Hong,Shan, Zhi-Hui,Zhou, Xin-An,Jiang, Mu-Lan,Mao, Han,Chen, Bo,Wan, Xia,Wei, Wen-Hui.

[15]EMBRYONIC FACTOR 31 encodes a tyrosyl-tRNA synthetase that is essential for seed development. Jiang, Li,Wang, Shu,Li, Hengde,Jiang, Li,Jiang, Li,Li, Huijie,Zhang, Guoxin.

[16]Production of peanut hybrid seeds in an intersectional cross through post-pollination treatment of flower bases with plant growth regulators. Wang, Chuan Tang,Yu, Hong Tao,Wang, Xiu Zhen,Tang, Yue Yi,Wu, Qi,Song, Guo Sheng,Yu, Shan Lin,Gao, Hua Yuan,Hu, Dong Qing,Chen, Jian Hong.

[17]An exceptionally high nucleotide and haplotype diversity and a signature of positive selection for the eIF4E resistance gene in barley are revealed by allele mining and phylogenetic analyses of natural populations. Hofinger, Bernhard J.,Bass, Chris G.,Baldwin, Thomas,Hammond-Kosack, Kim E.,Kanyuka, Kostya,Russell, Joanne R.,Hedley, Peter E.,Macaulay, Malcolm,Waugh, Robbie,Dos Reis, Mario,Li, Yidan.

[18]Powdery mildew resistance in a collection of Chinese barley varieties. Dreiseitl, Antonin,Yang, Jianming. 2007

[19]Barley traits associated with resistance to Fusarium head blight and deoxynivalenol accumulation. Choo, TM,Vigier, B,Shen, QQ,Martin, RA,Ho, KM,Savard, M. 2004

[20]Genetic diversity analysis of barley landraces and cultivars in the Shanghai region of China. Chen, Z. -W.,Lu, R. -J.,Zou, L.,Du, Z. -Z.,Gao, R. -H.,He, T.,Huang, J. -H.,Chen, Z. -W.,Lu, R. -J.,Zou, L.,Du, Z. -Z.,Gao, R. -H.,He, T.,Huang, J. -H.. 2012

作者其他论文 更多>>