首页> 外文期刊>The Journal of Horticultural Science & Biotechnology >Novel chimeric spermidine synthase-saccharopine dehydrogenase gene with a possible role in postharvest development of the button mushroom (Agaricus bisporus)
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Novel chimeric spermidine synthase-saccharopine dehydrogenase gene with a possible role in postharvest development of the button mushroom (Agaricus bisporus)

机译:新型嵌合亚精亚胺合酶 - 糖醇脱氢酶基因,在按钮蘑菇(姬松茸)的开发中可能作用

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摘要

In plants, spermidine synthase (SPE) received detailed investigation due to its key roles in the biosynthesis of spermidine, a major form of polyamine. However, there is no report on the identification and characterisation of SPE in edible mushrooms. Here, a full-length cDNA of a gene encoding a potential SPE was isolated from fruiting bodies of Agaricus bisporus. Homology search, InterPro inquiry and multiple sequence alignment showed that it was a chimeric bifunctional gene (named as nSpe-Sdh) with a single transcript that could also encode saccharopine dehydrogenase (SDH). Furthermore, we found that the expression of nSPE-SDH mRNA and protein were both significantly up-regulated with the cap expansion of A. bisporus during storage. Once the protecting veil broken, both expression levels decreased to an initial storage level and remained relatively constant until the end of the storage, indicating the possible involvement of nSpe-Sdh in postharvest mushroom development. Besides, the up-regulation of the expression of nSPE-SDH mRNA and protein was both tissue-specially in cap tissues. To our knowledge, this is the first study focus on a specific gene for putative spermidine biosynthesis in edible mushrooms. Our present study provides valuable information for further functional characterisation of SPE-SDH proteins in postharvest mushroom physiology.
机译:在植物中,亚精胺合成酶(SPE)因其在多胺的主要形式亚精胺的生物合成中的关键作用而受到详细研究。然而,目前还没有关于食用菌中SPE的鉴定和表征的报告。在这里,从双孢蘑菇的子实体中分离到编码潜在SPE的基因的全长cDNA。同源性搜索、跨区查询和多序列比对表明,它是一个嵌合双功能基因(命名为nSpe Sdh),具有一个单一的转录本,也可以编码糖精氨酸脱氢酶(Sdh)。此外,我们还发现,nSPE SDH mRNA和蛋白的表达均随着双孢霉在贮藏期间的cap扩张而显著上调。一旦保护面纱被打破,这两种表达水平都会下降到初始储存水平,并在储存结束前保持相对稳定,这表明nSpe Sdh可能参与了采后蘑菇的发育。此外,nSPE SDH mRNA和蛋白的表达上调在cap组织中尤为明显。据我们所知,这是第一项针对食用菌中精胺生物合成的特定基因的研究。我们目前的研究为SPE-SDH蛋白在采后蘑菇生理学中的进一步功能表征提供了有价值的信息。

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