...
首页> 外文期刊>Molecular Genetics and Genomics >Heat shock factors in rice (Oryza sativa L.): genome-wide expression analysis during reproductive development and abiotic stress
【24h】

Heat shock factors in rice (Oryza sativa L.): genome-wide expression analysis during reproductive development and abiotic stress

机译:水稻(Oryza sativa L.)的热休克因子:生殖发育和非生物胁迫期间全基因组表达分析

获取原文
获取原文并翻译 | 示例
           

摘要

Plants respond to heat stress by enhancing the expression of genes encoding heat shock protein (HSPs) genes through activation of heat shock factors (HSFs) which interact with heat shock elements present in the promoter of HSP genes. Plant HSFs have been divided into three conserved classes viz A, B and C. In the present study, a detailed analysis has been done of all rice HSFs, along with their spliced variants. Their chromosomal localization reveals that six HSFs are segmentally duplicated and four pairs of these segmentally duplicated HSF encoding genes show pseudo-functionalization. Expression profiling through microarray and quantitative real-time PCR showed that eight OsHsfs express at a higher level during seed development, while six HSFs are up-regulated in all the abiotic stresses studied. The expression of OsHsfA2a gene in particular was greatly stimulated by heat stress in both root and shoot tissues and also during panicle and seed development. OsHsfA3 was found more responsive to cold and drought stress, while OsHsfA7 and OsHsfA9 showed developing seed-specific expression. This study also revealed that spliced variants generally accumulated at a higher level in all the tissues examined. Different hormones/elicitors like ABA, brassinosteroids and salicylic acid also alter OsHsf gene expression. Calcium in combination with heat stress elevated further the level of HSF transcripts. Expression analysis by both microarray and real-time RT-PCR revealed a unique stable constitutive expression of OsHsfA1 across all the tissues and stresses. A detailed in silico analysis involving identification of unidentified domains has been done by MEME-motif tool in their full-length proteins as well as in DNA-binding domains. Analysis of 1 kb putative promoter region revealed presence of tissue-specific, abiotic stress and hormone-related cis-acting elements, correlating with expression under stress conditions.
机译:植物通过激活与热休克蛋白基因启动子中存在的热休克因子相互作用的热休克因子(HSF)来增强编码热休克蛋白(HSPs)基因的基因的表达,从而对热胁迫作出反应。植物HSF已被分为三个保守的类别,即A,B和C。在本研究中,已经对所有水稻HSF及其剪接变体进行了详细分析。他们的染色体定位显示六个HSFs是分段复制的,这些分段复制的HSF编码基因的四对显示伪功能化。通过微阵列和定量实时PCR进行的表达谱分析表明,八种OsHsfs在种子发育过程中以较高水平表达,而六种HSF在所有研究的非生物胁迫中均上调。尤其是根和芽组织以及穗和种子发育期间,热胁迫极大地刺激了OsHsfA2a基因的表达。发现OsHsfA3对寒冷和干旱胁迫反应更强,而OsHsfA7和OsHsfA9显示出种子特异性表达。该研究还表明,剪接的变异体通常在所有检查的组织中以较高的水平积累。诸如ABA,油菜素类固醇和水杨酸等不同的激素/引发剂也会改变OsHsf基因的表达。钙与热应激的结合进一步提高了HSF转录本的水平。通过微阵列和实时RT-PCR进行的表达分析表明,OsHsfA1在所有组织和压力下均具有独特的稳定组成型表达。 MEME-motif工具已在其全长蛋白质以及DNA结合域中进行了详细的计算机分析,其中涉及对未鉴定域的鉴定。 1 kb假定启动子区域的分析表明存在组织特异性,非生物应激和激素相关的顺式作用元件,与应激条件下的表达相关。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号