欢迎访问作物学报,今天是

作物学报 ›› 2009, Vol. 35 ›› Issue (9): 1628-1636.doi: 10.3724/SP.J.1006.2009.01628

• 作物遗传育种·种质资源·分子遗传学 • 上一篇    下一篇

水稻双组分系统基因干旱胁迫表达谱分析

潘雅姣1,王迪1,朱苓华1,傅彬英1,*,黎志康1,2,*   

  1. 1中国农业科学院作物科学研究所/农作物基因资源与遗传改良重大科学工程,北京100081;2International Rice Research Institute,DAPO Box 7777,Metro Manila,Philippines
  • 收稿日期:2009-03-02 修回日期:2009-04-21 出版日期:2009-09-12 网络出版日期:2009-07-03
  • 通讯作者: 傅彬英, E-mail: fuby@caas.net.cn; Tel: 010-62136042; 黎志康, E-mail: lizhk@caas.net.cn; Tel: 010-62136040
  • 基金资助:

    本研究由国家重点基础研究发展计划(973计划)项目(2003CB114308)和国家高技术研究发展计划(863计划)项目(2007AA10Z191)资助。

Differential Expression of Rice Two-Component Elements Genes under Drought Stress

PAN Ya-Jiao1,WANG Di1,ZHU Ling-Hua1,FU Bin-Ying1,*,LI Zhi-Kang1,2,*   

  1. 1 Institute of Crop Sciences, Chinese Academy of Agricultural Sciences / National Key Facility for Crop Gene Resources and Genetic Improvement, Beijing 100081, China; 2 International Rice Research Institute, DAPO Box 7777, Metro Manila, Philippines
  • Received:2009-03-02 Revised:2009-04-21 Published:2009-09-12 Published online:2009-07-03
  • Contact: FU Bin-Ying, E-mail: fuby@caas.net.cn; Tel: 010-62136042; LI Zhi-Kang, E-mail: lizhk@caas.net.cn; Tel: 010-62136040

摘要:

利用全基因组表达芯片,系统分析干旱胁迫条件下水稻双组分信号系统(two component system, TCS)相关基因在其不同发育阶段、不同组织以及抗旱能力不同的株系中的表达谱变化特征。结果表明, 双组分信号系统基因在干旱胁迫环境下的表达具明显的时空特异性,表现为不同组织的TCS基因干旱胁迫表达谱差异较大,而同一组织内表达谱相似,其中生殖生长期(幼穗分化期和孕穗期)两个叶片材料中TCS基因表达谱最为接近;与细胞分裂素信号传导负向调控相关的A型应答调控器在旱胁迫下表达下调,而与CK信号传导正向调控相关的B型应答调控器呈现明显上调趋势,推测与干旱胁迫下CK信号传导增强有关,同时乙烯受体基因在干旱胁迫环境下的表达下调,从激素间相互关系的角度更好地印证了上述推测;与拟南芥细胞分裂素受体基因(AHK2、AHK3和CRE1)序列相似的磷酸感应激酶基因HK5和HK3在干旱胁迫下表达上调,与拟南芥中不依赖细胞分裂素的AHK5序列接近的HK6则表达下调,进一步验证上述推测;干旱胁迫下抗旱能力不同的水稻株系其TCS基因表达谱没有明显差异,推测TCS基因差异表达可能源于对干旱胁迫反应,而其表达对抗旱能力的增强还有待进一步研究。

关键词: 双组分信号系统, 干旱胁迫, 表达谱, 水稻

Abstract:

In order to explore the temporal and spatial expression patterns of rice two component system (TCS) genes under drought stress and the relationship between expression of TCS genes and drought resistance ability, a whole rice genome microarray was used to analyze the expression profile of rice TCS genes under drought in different organs at different developmental stages and among rice lines with different drought resistance abilities. Results showed that the TCS genes were expressed in a temporal-spatial specific manner under drought stress in rice, behaved with great difference among the expression patterns of different rice organs and quite similar patterns within same tissues; type-A response regulator (RR) genes which may act as negative regulator of cytokinin signaling were mostly repressed by drought, while type-B RR genes which may play a role in positive regulation of cytokinin signaling were mostly induced by drought, these changes were supposed to be related with the enhancement of CK signaling under drought stress, this suppose was confirmed by the down regulation of ethylene receptor genes under drought from cross-talk of different plant hormones signaling; the HisKinase genes (HK5 and HK3) which is homolog with CK receptor genes (AHK2, AHK3, and CRE1) in Arabidopsis were induced by drought, while HK6 which is homolog with AHK5 (cytokinin-independent 2, CKI2)was drought repressed, these results provided a further confirmation of above suppose. The analysis of TCS genes expression profiling in drought resistant introgression lines and IR64 under drought stress did not find significant difference among the expression patterns of different rice lines, this maybe indicates that the TCS genes were related to drought responsiveness, but their effect to the enhancement of drought resistance still need further research.

Key words: Two component signaling components, Drought, Expression profile, Rice

[1] 胡赵, 钱润, 谢丰璞, 应素平. 水稻SPX基因家族鉴定及响应磷处理的表达分析[J]. 作物学报, 2026, 52(6): 1902-1912.
[2] 邹仪妹, 徐敏, 汪海洋, 姚辉, 王加峰, 刘浩, 任代胜. 两系不育系水稻幼苗根系响应盐胁迫的转录因子调控网络鉴定[J]. 作物学报, 2026, 52(6): 1728-1742.
[3] 闫安, 蒋昆炜, 王蓉圆, 田林, 张璐, 王韵, 徐建龙. 水稻剑叶小维管束数基因SVN7的鉴定与克隆[J]. 作物学报, 2026, 52(5): 1364-1372.
[4] 陈伟, 卫万娟, 赵其兵, 常东伟, 余凌波, 翟鹏飞, 冯志明, 陈宗祥, 任仰涛, 杨鹏, 刘海浪, 李珍富, 杨永乐, 金彦刚, 左示敏. 利用CRISPR/Cas9编辑Hd6基因创制优质早熟水稻新种质[J]. 作物学报, 2026, 52(4): 1046-1056.
[5] 石少阶, 刘凯, 陈姿夷, 王卉颖, 李三和, 周雷, 游艾青. 水稻矮化多分蘖基因DMT1的克隆与功能分析[J]. 作物学报, 2026, 52(4): 1022-1034.
[6] 叶凡, 李帅, 李思宇, 陈云, 窦超银, 刘立军. 不同节水灌溉方式对东北稻区水稻产量和群体质量的影响[J]. 作物学报, 2026, 52(3): 895-907.
[7] 覃奕琰, 付瑶, 苏畅, 李娜, 徐静茹, 程笑然, 张琪, 赵明辉. OsST41调控水稻苗期耐盐性的功能分析[J]. 作物学报, 2026, 52(3): 802-812.
[8] 杨飚, 杜帅康, 张继旺, 石瑛, 张丽莉. 马铃薯III类POD基因家族的全基因组鉴定及其表达谱分析[J]. 作物学报, 2026, 52(2): 405-420.
[9] 孔娜, 刘涛, 刘文婷, 陈刚, 文利超, 邓智超, 郭梅, 李伟, 郭永峰. 烟草NtCEP7基因克隆及其编码小肽在苗期抗旱中的作用分析[J]. 作物学报, 2026, 52(1): 249-261.
[10] 刘海波, 张蕾, 王立琦, 石晓丽, 周文莹, 崔国贤, 佘玮. 苎麻BnGCL1基因响应干旱胁迫的功能研究[J]. 作物学报, 2026, 52(1): 14-27.
[11] 王雅致, 杨飚, 季香林, 石瑛, 张丽莉. 二倍体马铃薯抗旱资源鉴定及抗旱基因初步筛选[J]. 作物学报, 2026, 52(1): 72-84.
[12] 胡城祯, 高维东, 孔斌雪, 王建飞, 车卓, 杨德龙, 陈涛. 小麦TaAPC11基因家族鉴定及TaAPC11-5B参与干旱胁迫的生物学功能研究[J]. 作物学报, 2026, 52(1): 148-164.
[13] 王婵, 吴莹莹, 李文奇, 李霞, 王芳权, 周彤, 杨杰. 基于HRM技术开发水稻抗条纹叶枯病基因STV11功能标记[J]. 作物学报, 2025, 51(9): 2547-2556.
[14] 何鹏旭, 姚立蓉, 陈远玲, 闫妍, 张宏, 汪军成, 李葆春, 杨轲, 司二静, 孟亚雄, 马小乐, 王化俊. 大麦干旱胁迫萌发生理及分子机理的差异性与相关性研究[J]. 作物学报, 2025, 51(9): 2412-2432.
[15] 陈惠莹, 何嘉欣, 朱斌, 黄士轩, 周星佑, 伍君权, 杨美艳. 水稻黄单胞菌噬菌体vB_XaS_HDB2的全基因组分析和生物学特性研究[J]. 作物学报, 2025, 51(8): 2087-2099.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!