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Expression of StMYB1R-1, a novel potato single MYB-like domain transcription factor, increases drought tolerance

机译:表达StMYB1R-1,一种新型马铃薯单MYB样结构域转录因子,可提高抗旱性

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Potato (Solanum tuberosum) is relatively vulnerable to abiotic stress conditions such as drought, but the tolerance mechanisms for such stresses in potato are largely unknown. To identify stress-related factors in potato, we previously carried out a genetic screen of potato plants exposed to abiotic environmental stress conditions using reverse northern-blot analysis. A cDNA encoding a putative R1-type MYB-like transcription factor (StMYB1R-1) was identified as a putative stress-response gene. Here, the transcript levels of StMYB1R-1 were enhanced in response to several environmental stresses in addition to drought but were unaffected by biotic stresses. The results of intracellular targeting and quadruple 9-mer protein-binding microarray analysis indicated that StMYB1R-1 localizes to the nucleus and binds to the DNA sequence G/AGATAA. Overexpression of a StMYB1R-1 transgene in potato plants improved plant tolerance to drought stress while having no significant effects on other agricultural traits. Transgenic plants exhibited reduced rates of water loss and more rapid stomatal closing than wild-type plants under drought stress conditions. In addition, overexpression of StMYB1R-1 enhanced the expression of droughtregulated genes such as AtHB-7, RD28, ALDH22a1, and ERD1-like. Thus, the expression of StMYB1R-1 in potato enhanced drought tolerance via regulation of water loss. These results indicated that StMYB1R-1 functions as a transcription factor involved in the activation of drought-related genes.
机译:马铃薯(Solanum tuberosum)相对易受非生物胁迫条件(例如干旱)的影响,但对马铃薯中此类胁迫的耐受机制尚不清楚。为了确定马铃薯中与胁迫相关的因素,我们先前使用反向Northern印迹分析对暴露于非生物环境胁迫条件下的马铃薯植物进行了遗传筛选。编码假定的R1型MYB样转录因子(StMYB1R-1)的cDNA被确定为假定的应激反应基因。在这里,除干旱外,StMYB1R-1的转录水平也响应于多种环境胁迫而增强,但不受生物胁迫的影响。细胞内靶向和四重9-mer蛋白结合微阵列分析的结果表明StMYB1R-1定位于细胞核并结合到DNA序列G / AGATAA。马铃薯植物中StMYB1R-1转基因的过表达提高了植物对干旱胁迫的耐受性,而对其他农业性状没有明显影响。在干旱胁迫条件下,与野生型植物相比,转基因植物的水分损失率降低,气孔关闭更快。此外,StMYB1R-1的过表达增强了干旱调控基因(如AtHB-7,RD28,ALDH22a1和ERD1-like)的表达。因此,StMYB1R-1在马铃薯中的表达通过调节水分流失来增强抗旱性。这些结果表明StMYB1R-1作为参与干旱相关基因激活的转录因子。

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