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首页> 外文期刊>Plant Molecular Biology >Identification and expression profiling analysis of TIFY family genes involved in stress and phytohormone responses in rice
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Identification and expression profiling analysis of TIFY family genes involved in stress and phytohormone responses in rice

机译:水稻胁迫和植物激素反应中涉及的TIFY家族基因的鉴定和表达谱分析

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The TIFY family is a novel plant-specific gene family involved in the regulation of diverse plant-specific biologic processes, such as development and responses to phytohormones, in Arabidopsis. However, there is limited information about this family in monocot species. This report identifies 20 TIFY genes in rice, the model monocot species. Sequence analysis indicated that rice TIFY proteins have conserved motifs beyond the TIFY domain as was previously shown in Arabidopsis. On the basis of their protein structures, members of the TIFY family can be divided into two groups. Transcript level analysis of OsTIFY genes in tissues and organs revealed different tempo-spatial expression patterns, suggesting that expression and function vary by stage of plant growth and development. Most of the OsTIFY genes were predominantly expressed in leaf. Nine OsTIFY genes were responsive to jasmonic acid and wounding treatments. Interestingly, almost all the OsTIFY genes were responsive to one or more abiotic stresses including drought, salinity, and low temperature. Over-expression of OsTIFY11a, one of the stress-inducible genes, resulted in significantly increased tolerance to salt and dehydration stresses. These results suggest that the OsTIFY family may have important roles in response to abiotic stresses. The data presented in this report provide important clues for further elucidating the functions of the genes in the OsTIFY family.
机译:TIFY家族是一个新颖的植物特异性基因家族,参与拟南芥中各种植物特异性生物学过程的调控,例如发育和对植物激素的反应。但是,有关单子叶植物物种的这个家族的信息有限。该报告鉴定了模式单子叶植物水稻中的20个TIFY基因。序列分析表明,水稻TIFY蛋白在TIFY结构域之外具有保守的基序,如先前在拟南芥中所示。根据其蛋白质结构,TIFY家族成员可分为两组。组织和器官中OsTIFY基因的转录水平分析揭示了不同的时空表达模式,表明表达和功能随植物生长和发育的阶段而变化。大多数OsTIFY基因主要在叶中表达。九个OsTIFY基因对茉莉酸和创伤治疗有反应。有趣的是,几乎所有的OsTIFY基因都对一种或多种非生物胁迫(包括干旱,盐度和低温)作出反应。过度表达OsTIFY11a是胁迫诱导基因之一,导致对盐和脱水胁迫的耐受性显着提高。这些结果表明,OsTIFY家族在应对非生物胁迫方面可能具有重要作用。本报告中提供的数据为进一步阐明OsTIFY家族中基因的功能提供了重要线索。

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