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Cloning of allene oxide cyclase gene from Leymus mollis and analysis of its expression in wheat–Leymus chromosome addition lines

机译:羊草羊草氧化烯环化酶基因的克隆及其在小麦-羊草染色体附加系中的表达分析

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摘要

Leymus mollis (Triticeae; Poaceae) is a useful genetic resource for wheat (Triticum aestivum L.) breeding via wide hybridization to introduce its chromosomes and integrate its useful traits into wheat. Leymus mollis is highly tolerant to abiotic stresses such as drought and salinity and resistant to various diseases, but the genetic mechanisms controlling its physiological tolerance remain largely unexplored. We identified and cloned an allene oxide cyclase (AOC) gene from L. mollis that was strongly expressed under salt stress. AOC is involved in biosynthesis of jasmonic acid, an important signaling compound that mediates a wide range of adaptive responses. LmAOC cDNA consisted of 717 bp, coding for a protein with 238 amino acids that was highly similar to AOCs from barley (Hordeum vulgare) and other monocots. Subcellular localization using Nicotiana benthamiana confirmed it as a chloroplast-localized protein. LmAOC was found to be a multiple-copy gene, and that some copies were conserved and efficiently expressed in wheat–Leymus chromosome addition lines. LmAOC expression was upregulated under drought, heat, cold and wounding stresses, and by jasmonic acid and abscisic acid. Our results suggest that LmAOC plays an important role in L. mollis adaptation to abiotic stresses and it could be useful for wheat improvement.
机译:羊草(特里斯科;禾本科)是小麦(Triticum aestivum L.)通过广泛杂交育种以引入其染色体并将其有用性状整合到小麦中的有用遗传资源。 molus mollis对非生物胁迫(如干旱和盐碱化)具有高度的耐受性,并且对多种疾病具有抗性,但控制其生理耐受性的遗传机制在很大程度上尚待探索。我们鉴定并克隆了在盐胁迫下强烈表达的来自L. mollis的氧化烯环化酶(AOC)基因。 AOC参与了茉莉酸的生物合成,茉莉酸是一种重要的信号传导化合物,可介导广泛的适应性反应。 LmAOC cDNA由717 bp组成,编码具有238个氨基酸的蛋白质,与大麦(Hordeum vulgare)和其他单子叶植物的AOC高度相似。使用本氏烟草的亚细胞定位证实它是叶绿体定位的蛋白质。 LmAOC被发现是一个多拷贝基因,并且在小麦-羊草染色体附加系中某些拷贝被保守并有效表达。在干旱,高温,寒冷和创伤胁迫下,茉莉酸和脱落酸使LmAOC表达上调。我们的结果表明LmAOC在莫氏乳杆菌适应非生物胁迫中起重要作用,并且可能对小麦改良有用。

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