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Characterization of Rice Homeobox Genes OsHOX22 and OsHOX24 and Over-expression of OsHOX24 in Transgenic Arabidopsis Suggest Their Role in Abiotic Stress Response

机译:水稻同源盒基因OsHOX22和OsHOX24的表征以及在转基因拟南芥中过表达OsHOX24表明它们在非生物胁迫响应中的作用

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摘要

Homeobox transcription factors are well known regulators of plant growth and development. In this study, we carried out functional analysis of two candidate stress-responsive HD-ZIP I class homeobox genes from rice, OsHOX22, and OsHOX24. These genes were highly up-regulated under various abiotic stress conditions at different stages of rice development, including seedling, mature and reproductive stages. The transcript levels of these genes were enhanced significantly in the presence of plant hormones, including abscisic acid (ABA), auxin, salicylic acid, and gibberellic acid. The recombinant full-length and truncated homeobox proteins were found to be localized in the nucleus. Electrophoretic mobility shift assay established the binding of these homeobox proteins with specific DNA sequences, AH1 (CAAT(A/T)ATTG) and AH2 (CAAT(C/G)ATTG). Transactivation assays in yeast revealed the transcriptional activation potential of full-length OsHOX22 and OsHOX24 proteins. Homo- and hetero-dimerization capabilities of these proteins have also been demonstrated. Further, we identified putative novel interacting proteins of OsHOX22 and OsHOX24 via yeast-two hybrid analysis. Over-expression of OsHOX24 imparted higher sensitivity to stress hormone, ABA, and abiotic stresses in the transgenic Arabidopsis plants as revealed by various physiological and phenotypic assays. Microarray analysis revealed differential expression of several stress-responsive genes in transgenic lines as compared to wild-type. Many of these genes were found to be involved in transcriptional regulation and various metabolic pathways. Altogether, our results suggest the possible role of OsHOX22/OsHOX24 homeobox proteins as negative regulators in abiotic stress responses.
机译:同源盒转录因子是植物生长和发育的众所周知的调节剂。在这项研究中,我们对水稻的两个候选应激反应性HD-ZIP I类同源盒基因进行了功能分析,分别是OsHOX22和OsHOX24。在不同的非生物胁迫条件下,这些基因在水稻发育的不同阶段(包括幼苗,成熟和生殖阶段)都高度上调。在植物激素(包括脱落酸(ABA),生长素,水杨酸和赤霉素)存在下,这些基因的转录水平显着提高。发现重组全长和截短的同源盒蛋白位于细胞核中。电泳迁移率变动分析确定了这些同源盒蛋白与特定DNA序列AH1(CAAT(A / T)ATTG)和AH2(CAAT(C / G)ATTG)的结合。酵母中的反式激活分析揭示了全长OsHOX22和OsHOX24蛋白的转录激活潜力。这些蛋白质的同二聚和异二聚能力也得到了证明。此外,我们通过酵母-两个杂交分析鉴定了OsHOX22和OsHOX24的新型相互作用蛋白。通过各种生理和表型分析,OsHOX24的过表达赋予转基因拟南芥植物对胁迫激素,ABA和非生物胁迫更高的敏感性。微阵列分析揭示了与野生型相比,转基因品系中几种胁迫反应基因的差异表达。发现许多这些基因参与转录调控和各种代谢途径。总之,我们的结果表明,OsHOX22 / OsHOX24同源盒蛋白可能在非生物应激反应中作为负调节剂发挥作用。

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