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首页> 外文期刊>Journal of Plant Research >Functional screening of a cDNA library from the desiccation-tolerant plant Selaginella lepidophylla in yeast mutants identifies trehalose biosynthesis genes of plant and microbial origin
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Functional screening of a cDNA library from the desiccation-tolerant plant Selaginella lepidophylla in yeast mutants identifies trehalose biosynthesis genes of plant and microbial origin

机译:在酵母突变体中从耐干燥植物Lepidophylla的Selaginella lepidophylla中cDNA库的功能筛选确定了植物和微生物来源的海藻糖生物合成基因

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Trehalose is a non-reducing disaccharide that accumulates to large quantities in microbial cells, but in plants it is generally present in very low, barely-detectible levels. A notable exception is the desiccation-tolerant plant Selaginella lepidophylla, which accumulates very high levels of trehalose in both the hydrated and dehydrated state. As trehalose is known to protect membranes, proteins, and whole cells against dehydration stress, we have been interested in the characterization of the trehalose biosynthesis enzymes of S. lepidophylla; they could assist in engineering crop plants towards better stress tolerance. We previously isolated and characterized trehalose-6-phosphate synthases from Arabidopsis thaliana (desiccation sensitive) and S. lepidophylla (desiccation tolerant) and found that they had similar enzymatic characteristics. In this paper, we describe the isolation and characterization of trehalose-6-phosphate phosphatase from S. lepidophylla and show that its catalytic activities are also similar to those of its homolog in A. thaliana. Screening of an S. lepidophylla cDNA library using yeast trehalose biosynthesis mutants resulted in the isolation of a large number of trehalose biosynthesis genes that were of microbial rather than plant origin. Thus, we suggest that the high trehalose levels observed in S. lepidophylla are not the product of the plant but that of endophytes, which are known to be present in this plant. Additionally, the high trehalose levels in S. lepidophylla are unlikely to account for its desiccation tolerance, because its drought-stress-sensitive relative, S. moellendorffii, also accumulated high levels of trehalose.
机译:海藻糖是一种不可还原的二糖,可在微生物细胞中大量积累,但在植物中通常以非常低的水平,几乎无法检测到。一个明显的例外是耐干燥植物小叶卷柏(Selaginella lepidophylla),其在水合和脱水状态下积累的海藻糖含量非常高。由于已知海藻糖可以保护膜,蛋白质和整个细胞免受脱水压力的影响,因此我们对小叶链球菌海藻糖生物合成酶的表征感兴趣。它们可以帮助农作物工程化以提高抗逆性。我们以前从拟南芥(干燥敏感)和lepidophylla(耐干燥)分离并鉴定了海藻糖6-磷酸合酶,发现它们具有相似的酶促特性。在本文中,我们描述了从Lepidophylla S. lepidophylla分离和表征海藻糖6-磷酸磷酸酶,并表明其催化活性也类似于拟南芥中的同系物。使用酵母海藻糖生物合成突变体筛选S. lepidophylla cDNA文库,导致分离出大量的微生物而不是植物来源的海藻糖生物合成基因。因此,我们建议在lepidophylla S. lepidophylla中观察到的高海藻糖水平不是植物的产物,而是已知存在于该植物中的内生菌的产物。另外,lepidophylla中高海藻糖水平不太可能说明其耐干燥性,因为其对干旱胁迫敏感的亲缘植物S. moellendorffii也积累了高水平的海藻糖。

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