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Genome-wide expression analysis of HSP70 family genes in rice and identification of a cytosolic HSP70 gene highly induced under heat stress

机译:水稻热休克蛋白70家族基因全基因组表达分析及热胁迫下高诱导的胞质热休克蛋白70基因的鉴定

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The heat shock protein 70 (HSP70) gene family plays a key role in protecting plant cells or tissues from thermal or oxidative stress. Although many studies have elucidated the molecular functions of individual family members, genome-wide analysis of this family is still limited, especially for crop species. Our objective was to integrate various meta-profiling data into the context of a phylogenetic tree, which would enable us to perform fine evaluation of functional dominancy or redundancy within this family. Our data indicated that a loss-of-function mutant of a rice cytosolic HSP70 gene (OsctHSP70-1) did not show a clear defective phenotype in response to high temperature because of the existence of another gene family member that was closely clustered with OsctHSP70-1 and had similar expression patterns. Moreover, the second gene showed much stronger anatomical expression. We indirectly analyzed the function of OsctHSP70-1 by studying GUS activity under the control of the endogenous promoter. We also designed a probable interaction network mediated by OsctHSP70-1 and used co-expression analysis among its components to refine the network, suggesting more probable model to explain the function of OsctHSP70-1.
机译:热休克蛋白70(HSP70)基因家族在保护植物细胞或组织免受热或氧化胁迫中起关键作用。尽管许多研究阐明了单个家族成员的分子功能,但对该家族的全基因组分析仍然有限,尤其是对于农作物物种而言。我们的目标是将各种元分析数据整合到系统树中,这将使我们能够对该家族中功能优势或冗余性进行精细评估。我们的数据表明,水稻胞质HSP70基因的功能丧失型突变体(OsctHSP70-1)并未显示出对高温的明显缺陷表型,因为存在与OsctHSP70- 1,具有相似的表达模式。而且,第二个基因显示出更强的解剖学表达。我们通过研究内源性启动子控制下的GUS活性来间接分析OsctHSP70-1的功能。我们还设计了一个由OsctHSP70-1介导的可能的交互网络,并在其组件之间使用共表达分析来完善网络,从而提出了一种更可能的模型来解释OsctHSP70-1的功能。

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