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A WUSCHEL Homeobox Transcription Factor OsWOX13 Enhances Drought Tolerance and Triggers Early Flowering in Rice

机译:WUSCHEL同源异型盒转录因子OsWOX13增强了水稻的耐旱性并引发了早花

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摘要

Plants have evolved strategies to cope with drought stress by maximizing physiological capacity and adjusting developmental processes such as flowering time. The WOX13 orthologous group is the most conserved among the clade of WOX homeodomain-containing proteins and is found to function in both drought stress and flower development. In this study, we isolated and characterized OsWOX13 from rice. OsWOX13 was regulated spatially in vegetative organs but temporally in flowers and seeds. Overexpression of OsWOX13 (OsWOX13-ov) in rice under the rab21 promoter resulted in drought resistance and early flowering by 7–10 days. Screening of gene expression profiles in mature leaf and panicles of OsWOX13-ov showed a broad spectrum of effects on biological processes, such as abiotic and biotic stresses, exerting a cross-talk between responses. Protein binding microarray and electrophoretic mobility shift assay analyses supported ATTGATTG as the putative cis-element binding of OsWOX13. OsDREB1A and OsDREB1F, drought stress response transcription factors, contain ATTGATTG motif(s) in their promoters and are preferentially expressed in OsWOX13-ov. In addition, Heading date 3a and OsMADS14, regulators in the flowering pathway and development, were enhanced in OsWOX13-ov. These results suggest that OsWOX13 mediates the stress response and early flowering and, thus, may be a regulator of genes involved in drought escape.
机译:植物已经通过最大限度地提高生理能力和调整发育过程(例如开花时间)来发展应对干旱的策略。在含有WOX同源结构域的蛋白质进化枝中,WOX13直系同源基团最保守,并且发现其在干旱胁迫和花朵发育中均起作用。在这项研究中,我们从水稻中分离并鉴定了OsWOX13。 OsWOX13在营养器官中受到空间调节,但在花朵和种子中受到时间调节。在rab21启动子下水稻中OsWOX13(OsWOX13-ov)的过表达导致抗旱性和7-10天的早花期。 OsWOX13-ov成熟叶片和穗中基因表达谱的筛选显示了对生物过程(如非生物和生物胁迫)的广泛影响,在响应之间产生了相互影响。蛋白质结合微阵列和电泳迁移率迁移分析分析支持ATTGATTG作为OsWOX13的假定顺式元件结合。 OsDREB1A和OsDREB1F是干旱胁迫反应转录因子,在其启动子中包含ATTGATTG基序,并优先在OsWOX13-ov中表达。此外,OsWOX13-ov增强了抽穗期3a和OsMADS14,即开花途径和发育的调控因子。这些结果表明,OsWOX13介导了胁迫反应和早期开花,因此可能是干旱逃逸相关基因的调节剂。

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