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首页> 外文期刊>American Journal of Botany >Dominant Wilty mutants of Zea mays (Poaceae) are not impaired in abscisic acidperception or metabolism
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Dominant Wilty mutants of Zea mays (Poaceae) are not impaired in abscisic acidperception or metabolism

机译:玉米酸(禾本科)的主要威尔蒂突变体的脱落酸感知或代谢不受影响

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Abscisic acid (ABA) is a plant hormone involved in growth, development, and stress adaptation. It acts via multiple pathways including rapid closure of stomatal pores by ion efflux from guard cells (thereby decreasing water loss) and by slower changes in gene expression. The Wilty2, Wilty3, and Wilty-2445 mutants are nonallelic members of a class of dominant mutants whose top leaves wilt when plants are subjected to drought conditions. We investigated the ABA responses of the Wi2 mutant by analysis of leaf transpiration rates and RAB17 (Responsive to ABA) gene expression. Wi2 leaves transpired less than those of wild-type siblings, but the slopes of Wi2 and wild-type ABA dose-leaf transpiration curves were identical, suggesting that Wi2 guard cell sensitivity to ABA is normal. Based on total RNA blot analysis, RAB17 transcripts in unstressed and drought-stressed Wi2 leaves were elevated relative to wild-type tissue. Wi2 ABA concentrations were also elevated relative to wild type in both unstressed and drought-stressed leaves. Similar to the Wi2 phenotype, Wilty3 and Wi-2445 mutants transpired less than their wild-type siblings and had normal ABA and ABA-conjugate levels, as measured by gas chromatography-mass spectrometry. Despite lower leaf transpiration rates, Wi2 mutants lost a greater percentage of fresh mass over time compared to the wild type. The previously characterized recessive mutant wilty1, which has a defect in vascular element development, also had reduced transpiration rates. It is concluded that the dominant Wi2, Wi3, and Wi-2445 mutants are not impaired in ABA metabolism or signaling. It is hypothesized, based on preliminary data, that the dominant mutants described here are impaired in vascular element development, analogous to the wilty1 mutant.
机译:脱落酸(ABA)是一种植物激素,参与生长,发育, 和胁迫适应。它通过多种途径起作用,包括 通过保卫细胞 的离子流出(从而减少水的流失)和基因 的缓慢变化而迅速关闭气孔。表达。 Wilty2,Wilty3和Wilty-2445突变体是一类显性突变体的非等位成员,当植物遭受干旱条件时,这些突变体的顶叶会变得枯萎 。我们通过分析叶片蒸腾速率和RAB17(对ABA的响应)基因表达来研究Wi2突变体的 ABA反应。 Wi2叶片 的蒸腾量小于野生型兄弟姐妹,但Wi2的斜率 和野生型ABA剂量-叶蒸腾曲线 相同,表明Wi2保护细胞对ABA 的敏感性是正常的。根据总RNA印迹分析,未胁迫和干旱胁迫的Wi2叶片中的RAB17转录物 相对于野生型组织升高。在未胁迫和干旱胁迫下,Wi2 ABA的浓度也相对于野生型升高了 。与Wi2表型类似,Wilty3和Wi-2445突变体 的蒸腾作用少于野生型同胞,并且通过气相色谱法测得的ABA和ABA结合物水平正常。质量 光谱法。尽管叶片蒸腾速率较低,但与野生型相比,Wi2突变体 随时间损失的新鲜质量百分比更高。先前表征的隐性突变体 wilty1,在血管元素发育方面存在缺陷, 的蒸腾速率也降低了。结论是, 主要的Wi2,Wi3和Wi-2445突变体在ABA 代谢或信号转导中没有受到损害。根据初步的 数据,假设此处描述的优势突变体在血管元件发育中受损 ,类似于wilty1突变体。

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