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Overexpression of an Arabidopsis beta -glucosidase gene enhances drought resistance with dwarf phenotype in creeping bentgrass.

机译:拟南芥β-葡萄糖苷酶基因的过表达增强了creep草中矮化表型的抗旱性。

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An Arabidopsis beta -glucosidase, AtBG1 is known to hydrolyze glucose-conjugated, biologically inactive abscisic acid (ABA) to produce active ABA, which increases the level of ABA in plants. Since an increase of ABA in plants confers tolerance against abiotic stress such as drought, we introduced the pCAMBIA3301 vector harboring the AtBG1 gene into creeping bentgrass through Agrobacterium-mediated transformation. After transformation, putative transgenic plants were selected using the BASTA resistance assay at a concentration of 0.8%. Genomic integration of the AtBG1 gene was confirmed by genomic PCR and Southern blot analysis, and gene expression was validated by Northern blot and Western blot analyses. Interestingly, the transgenic bentgrass plants overexpressing AtBG1 had a dwarf phenotype with reduced growth rates when compared to wild-type creeping bentgrass. In addition, the transgenic plants accumulated higher ABA levels and displayed enhanced drought tolerance. These results suggest that the expression of AtBG1 in plants induces the accumulation of higher ABA levels, which results in the formation of dwarf creeping bentgrass and enhances the survival in water-limiting environments.
机译:已知拟南芥β-葡萄糖苷酶AtBG1水解葡萄糖结合的,生物学上无活性的脱落酸(ABA)以产生活性ABA,从而增加植物中ABA的水平。由于植物中ABA的增加赋予了对非生物胁迫(如干旱)的耐受性,因此我们通过农杆菌介导的转化将带有AtBG1基因的pCAMBIA3301载体引入了bent草。转化后,使用BASTA抗性试验以0.8%的浓度选择推定的转基因植物。通过基因组PCR和Southern印迹分析证实了AtBG1基因的基因组整合,并且通过Northern印迹和Western印迹分析验证了基因表达。有趣的是,与野生型creep本草相比,过表达AtBG1的转基因bent草植物具有矮表型,且生长速率降低。另外,转基因植物积累了较高的ABA水平并显示出增强的耐旱性。这些结果表明,AtBG1在植物中的表达诱导了较高ABA水平的积累,从而导致矮生creep草的形成并增强了在限水环境中的存活率。

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