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The Maize AAA-Type Protein SKD1 Confers Enhanced Salt and Drought Stress Tolerance in Transgenic Tobacco by Interacting with Lyst-Interacting Protein 5

机译:玉米AAA型蛋白SKD1通过与Lyst相互作用蛋白5相互作用增强转基因烟草的盐分和干旱胁迫耐受性

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摘要

ATPase associated with various cellular activities (AAA) proteins are important regulators involved in diverse cellular functions. To date, the molecular mechanisms of AAA proteins involved in response to salt and drought stresses in plants are largely unknown. In this study, a putative SKD1 (suppressor of K + transport growth defect 1) ortholog from Zea mays (ZmSKD1), which encodes a putative AAA protein, was isolated. The transcript levels of ZmSKD1 were higher in aerial tissues and were markedly up-regulated by salt or drought stress. Over-expression of ZmSKD1 in tobacco plants enhanced their tolerances not only to salt but to drought. Moreover, reactive oxygen species accumulations in ZmSKD1 transgenic lines were relative less than those in wild-type plants during salt or PEG-induced water stress. The interaction between ZmSKD1 and NtLIP5 (Lyst-Interacting Protein 5 homolog from Nicotiana tabacum) was confirmed by both yeast two-hybrid and immuno-precipitation assays; moreover, the α-helix-rich domain in the C-terminus of ZmSKD1 was identified to be required for its interaction with NtLIP5 using truncation mutations. Collectively, these data demonstrate that ZmSKD1could be involved in salt and drought stress responses and its over-expression enhances salt or drought stress tolerance possibly through interacting with LIP5 in tobacco. This study may facilitate our understandings of the biological roles of SKD1-mediated ESCRT pathway under stress conditions in higher plants and accelerate genetic improvement of crop plants tolerant to environmental stresses.
机译:与各种细胞活性(AAA)蛋白相关的ATPase是涉及多种细胞功能的重要调节剂。迄今为止,在植物中对盐和干旱胁迫的应答中所涉及的AAA蛋白的分子机制尚不清楚。在这项研究中,从玉米(ZmSKD1)编码一个推定的AAA蛋白的直系同源物分离出一个推定的SKD1(K + 运输生长缺陷1的抑制剂)。在空中组织中,ZmSKD1的转录水平较高,并且在盐或干旱胁迫下明显上调。 ZmSKD1在烟草植物中的过度表达不仅增强了其对盐的耐受性,而且增强了其对干旱的耐受性。此外,在盐或PEG诱导的水分胁迫期间,ZmSKD1转基因品系中活性氧的累积量相对低于野生型植物。酵母双杂交和免疫沉淀试验均证实了ZmSKD1与NtLIP5(烟草的Lyst相互作用蛋白5同源物)之间的相互作用。此外,使用截短突变已确定ZmSKD1 C末端的富含α-螺旋结构域与NtLIP5相互作用是必需的。总体而言,这些数据表明ZmSKD1可能参与盐和干旱胁迫响应,其过表达可能通过与烟草中的LIP5相互作用增强盐或干旱胁迫耐受性。这项研究可能有助于我们了解高等植物在胁迫条件下SKD1介导的ESCRT途径的生物学作用,并加速耐环境胁迫的农作物的遗传改良。

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