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The high-affinity transporter BnPHT1;4 is involved in phosphorus acquisition and mobilization for facilitating seed germination and early seedling growth of Brassica napus

机译:高亲和力转运蛋白BNPHT1; 4涉及磷的获取和动员以促进种子萌发和芸苔的早期幼苗生长

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Seed germination and seedling establishment are two of the most critical phases in plant development. However, the molecular mechanisms underlying the effect of phosphorus on seed germination and post-germinated growth of oilseed rape are unclear so far. Here, we report the role of BnPHT1;4 in seed germination and early seedling development of Brassica napus. Our results show that BnPHT1;4 is preferentially expressed in cotyledons of early developing seedlings. Overexpression of BnPHT1;4 in oilseed rape promoted seed germination and seedling growth. Expression levels of the genes related to ABA and GA biosynthesis and signaling were significantly altered in BnPHT1;4 transgenic seedlings. Consequently, active GA level was up-regulated, whereas ABA content was down-regulated in BnPHT1;4 transgenic seedlings. Furthermore, exogenous GA could promote seed germination of wild type, while exogenous ABA could partially recover the advanced-germination phenotype of BnPHT1;4 transgenic seeds. Total phosphorus content in cotyledons of the transgenic seedlings was decreased more rapidly than that in wild type when Pi was supplied or deficient, and Pi contents in shoots and roots of the BnPHT1;4 transgenic plants were higher than those in wild type under high and low Pi conditions. Our data suggest that the high-affinity transporter BnPHT1;4 is involved in phosphorus acquisition and mobilization for facilitating seed germination and seedling growth of Brassica napus by modulating ABA and GA biosynthesis.
机译:种子萌发和幼苗建立是植物发育中最关键的两种阶段。然而,到目前为止,磷对种子萌发和油菜后发芽生长的影响下面的分子机制尚不清楚。在这里,我们报告了BNPHT1; 4在种子萌发中的作用和芸苔的早期幼苗发育。我们的结果表明,BNPHT1; 4优先在早期发展幼苗的子叶中表达。 BNPHT1的过度表达; 4在油菜油菜中促进了种子萌发和幼苗生长。与ABA和GA生物合成和信号传导相关的基因的表达水平在BNPHT1中显着改变; 4种转基因幼苗。因此,上调活性GA水平,而ABA含量在BNPHT1中抑制; 4个转基因幼苗。此外,外源Ga可以促进野生型的种子萌发,而外源ABA可以部分地回收BNPHT1; 4转基因种子的先进发芽表型。当PI被提供或缺乏PI时,转基因幼苗的子叶中子叶中的总磷含量比在野生型中较快地减少,并且在BNPHT1的芽和根部的PI含量高于高低低于野生型的转基因植物PI条件。我们的数据表明,高亲和力转运蛋白BNPHT1; 4参与磷的获取和动员,以通过调节ABA和GA生物合成来促进芸苔NAPU的种子萌发和幼苗生长。

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