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首页> 外文期刊>Postharvest Biology and Technology >Analysis of resistant starch degradation in postharvest ripening of two banana cultivars: Focus on starch structure and amylases
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Analysis of resistant starch degradation in postharvest ripening of two banana cultivars: Focus on starch structure and amylases

机译:两个香蕉品种采后成熟过程中抗淀粉降解的分析:关注淀粉的结构和淀粉酶

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Bananas are well known as good sources of dietary energy, with high levels of sugar and starch. To further analyze the starch-degradation mechanism in bananas, two species, Cavendish and Plantain, were used to investigate the influences of hydrolases and granule structure on starch degradation. Determination of the levels of resistant starch (RS), non-resistant starch (non-RS), total starch, and amylose content showed that each starch component content decreased gradually during the fruit-ripening process in both Cavendish and Plantain. Compared to Cavendish, Plantain had a higher content of total starch and RS, a faster starch-degradation rate, and a lower decrease in the ratio of RS/total starch. Scanning electron microscopy (SEM) images revealed that the starch granules of Cavendish were larger and more rounded than the smaller and ellipsoidal starch granules found in Plantain. Also, the analysis of gene expression suggested that beta-amylases make a central contribution to starch degradation in both species and highly up-regulated beta-amylases were correlated with the faster starch-degradation rate in Plantain. Two alpha-amylases, one starch phosphorylase, and one starch debranching enzyme were specifically upregulated in Plantain, which might hydrolyse more non-RS compared with Cavendish. (C) 2016 Published by Elsevier B.V.
机译:香蕉是众所周知的良好饮食能量来源,其中糖和淀粉含量很高。为了进一步分析香蕉中的淀粉降解机理,使用了卡文迪许和车前草这两个物种研究水解酶和颗粒结构对淀粉降解的影响。确定抗性淀粉(RS),非抗性淀粉(non-RS),总淀粉和直链淀粉含量后,发现在卡文迪许和车前草的果实成熟过程中,每种淀粉成分的含量均逐渐降低。与卡文迪许相比,车前草的总淀粉和RS含量较高,淀粉降解速度更快,RS /总淀粉比例的降低幅度较小。扫描电子显微镜(SEM)图像显示,卡文迪许的淀粉颗粒比车前草中发现的较小和椭圆形的淀粉颗粒更大,更圆。此外,基因表达分析表明,β-淀粉酶对这两个物种的淀粉降解均起主要作用,而高度上调的β-淀粉酶与车前草中更快的淀粉降解速率相关。在车前草中特别上调了两种α-淀粉酶,一种淀粉磷酸化酶和一种淀粉脱支酶,与卡文迪许相比,它们可能水解更多的非RS。 (C)2016由Elsevier B.V.发布

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