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首页> 外文期刊>Journal of enzyme inhibition and medicinal chemistry. >Ectopic expression of a tobacco vacuolar invertase inhibitor in guard cells confers drought tolerance in Arabidopsis
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Ectopic expression of a tobacco vacuolar invertase inhibitor in guard cells confers drought tolerance in Arabidopsis

机译:保护细胞中烟草真空反转酶抑制剂的异位表达拟拟南芥的耐旱性

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摘要

There are several hypotheses that explain stomatal behavior. These include the concept of osmoregulation mediated by potassium and its counterions malate and chlorine and the more recent starch-sugar hypothesis. We have previously reported that the activity of the sucrose cleavage enzyme, vacuolar invertase (VIN), is significantly higher in guard cells than in other leaf epidermal cells and its activity is correlated with stomatal aperture. Here, we examined whether VIN indeed controls stomatal movement under normal and drought conditions by transforming Arabidopsis with a tobacco vacuolar invertase inhibitor homolog (Nt-inhh) under the control of an abscisic acid-sensitive and guard cell-specific promoter (AtRab18). The data obtained showed that guard cells of transgenic Arabidopsis plants had lower VIN activity, stomatal aperture and conductance than that of wild-type plants. Moreover, the transgenic plants also displayed higher drought tolerance than wild-type plants. The data indicate that VIN is a promising target for manipulating stomatal function to increase drought tolerance.
机译:有几个假设解释了气孔行为。这些包括钾的渗透性概念及其反对亚酸酯和氯和氯的抗衡糖以及最近的淀粉 - 糖假设。我们之前报道的是,保护细胞蔗糖切割酶,真空转化酶(VIN)的活性显着高于其他叶片表皮细胞,其活性与气孔孔相关。在这里,我们检查了VIN是否确实通过在脱离酸敏感和防护细胞特异性启动子(ATRAB18)的控制下通过用烟草真空转化酶抑制剂同源物(NT-INHH)转化拟南芥,在正常和干旱条件下控制气孔运动。所获得的数据显示,转基因拟南芥植物的防护细胞具有较低的VIN活性,气孔孔径和野生型植物的电导。此外,转基因植物也显示出比野生型植物更高的干旱耐受性。数据表明,VIN是一种有助于操纵气孔功能以增加耐旱性的目标。

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