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Overexpression of ubiquitin?¢????like LpHUB1 gene confers drought tolerance in perennial ryegrass

机译:LPHUB1基因等泛素的过度表达赋予多年生黑麦草抗旱性

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HUB1, also known as Ubl5, is a member of the subfamily of ubiquitin?¢????like post?¢????translational modifiers. HUB1 exerts its role by conjugating with protein targets. The function of this protein has not been studied in plants. A HUB1 gene, LpHUB1 , was identified from serial analysis of gene expression data and cloned from perennial ryegrass. The expression of this gene was reported previously to be elevated in pastures during the summer and by drought stress in climate?¢????controlled growth chambers. Here, pasture?¢????type and turf?¢????type transgenic perennial ryegrass plants overexpressing LpHUB1 showed improved drought tolerance, as evidenced by improved turf quality, maintenance of turgor and increased growth. Additional analyses revealed that the transgenic plants generally displayed higher relative water content, leaf water potential, and chlorophyll content and increased photosynthetic rate when subjected to drought stress. These results suggest HUB1 may play an important role in the tolerance of perennial ryegrass to abiotic stresses.
机译:HUB1,也称为Ubl5,是遍在蛋白亚家族的成员,就像翻译后修饰子一样。 HUB1通过与蛋白质靶标结合发挥作用。该蛋白的功能尚未在植物中研究。从基因表达数据的序列分析中鉴定出HUB1基因LpHUB1,并从多年生黑麦草中克隆了该基因。据报道,该基因的表达以前在夏季的牧场中升高,并且在气候受控的生长室中由于干旱胁迫而升高。在这里,过表达LpHUB1的草场类型和草皮类型的转基因多年生黑麦草植物表现出改善的耐旱性,这由草皮质量的改善,草皮的维持和生长的增加所证明。进一步的分析表明,转基因植物在遭受干旱胁迫时通常表现出较高的相对含水量,叶片水势和叶绿素含量,并提高了光合速率。这些结果表明HUB1可能在多年生黑麦草对非生物胁迫的耐受性中起重要作用。

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