首页> 外文期刊>Journal of Plant Physiology >Genome-wide expression analysis of rice ABC transporter family across spatio-temporal samples and in response to abiotic stresses.
【24h】

Genome-wide expression analysis of rice ABC transporter family across spatio-temporal samples and in response to abiotic stresses.

机译:跨时空样本和响应非生物胁迫的水稻ABC转运蛋白家族的全基因组表达分析。

获取原文
获取原文并翻译 | 示例
           

摘要

Although the super family of ATP-binding cassette (ABC) proteins plays key roles in the physiology and development of plants, the functions of members of this interesting family mostly remain to be clarified, especially in crop plants. Thus, systematic analysis of this family in rice ( Oryza sativa), a major model crop plant, will be helpful in the design of effective strategies for functional analysis. Phylogenomic analysis that integrates anatomy and stress meta-profiling data based on a large collection of rice Affymetrix array data into the phylogenic context provides useful clues into the functions for each of the ABC transporter family members in rice. Using anatomy data, we identified 17 root-preferred and 16-shoot preferred genes at the vegetative stage, and 3 pollen, 2 embryo, 2 ovary, 2 endosperm, and 1 anther-preferred gene at the reproductive stage. The stress data revealed significant up-regulation or down-regulation of 47 genes under heavy metal treatment, 16 genes under nutrient deficient conditions, and 51 genes under abiotic stress conditions. Of these, we confirmed the differential expression patterns of 14 genes in root samples exposed to drought stress using quantitative real-time PCR. Network analysis using RiceNet suggests a functional gene network involving nine rice ABC transporters that are differentially regulated by drought stress in root, further enhancing the prediction of biological function. Our analysis provides a molecular basis for the study of diverse biological phenomena mediated by the ABC family in rice and will contribute to the enhancement of crop yield and stress tolerance.
机译:尽管ATP结合盒(ABC)蛋白质的超家族在植物的生理和发育过程中起着关键作用,但是这个有趣家族的成员的功能仍然有待阐明,尤其是在农作物中。因此,系统分析水稻(一种主要的模型作物)水稻(Oryza sativa),将有助于设计有效的功能分析策略。系统发育分析将基于大量水稻Affymetrix阵列数据的解剖和应力元分析数据整合到系统发育背景中,为水稻中每个ABC转运蛋白家族成员的功能提供了有用的线索。使用解剖数据,我们在营养阶段鉴定了17个根系偏爱的基因和16个芽的偏爱基因,在生殖阶段鉴定了3个花粉,2个胚芽,2个卵巢,2个胚乳和1个花药偏爱的基因。胁迫数据显示在重金属处理下47个基因,在营养缺乏条件下16个基因和在非生物胁迫条件下51个基因显着上调或下调。其中,我们使用实时定量PCR证实了干旱胁迫下根样品中14个基因的差异表达模式。使用RiceNet进行的网络分析表明,一个功能基因网络涉及9个水稻ABC转运蛋白,这些转运蛋白受根部干旱胁迫的差异调节,从而进一步增强了生物学功能的预测。我们的分析为水稻ABC家族介导的多种生物学现象的研究提供了分子基础,并将有助于提高作物产量和胁迫耐受性。

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