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Evolution and Distribution of Hydrolytic Enzyme Activities during Preharvest Sprouting of Wheat (Triticum aestivum) in the Field

机译:田间小麦收获前发芽过程中水解酶活性的演变和分布

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摘要

To date, research on preharvest sprouted (PHS) wheat has mostly been conducted on kernels germinated under laboratory conditions, which differ widely from conditions in the field. To obtain detailed knowledge of the evolution of hydrolytic enzyme activities in PHS wheat (Triticum aestivum), a broad collection of samples from three varieties was obtained by harvesting before, at, and after maturity. Delaying harvest time coupled with periods of heavy rainfall caused sprouting in the kernels, observed as a drop in Falling Number and an increase in α-amylase activity. The appearance of α- and β-amylase, peptidase, and endoxylanase activity during field sprouting was independent from each other. Consequently, Falling Number could not be used to predict activity of other hydrolytic enzymes. When differentiating endogenous from kernel-associated microbial enzymes, results showed that α- and β-amylase and peptidase activity of PHS kernels were predominantly of endogenous origin, whereas endoxylanase activity was largely from microbial origin.
机译:迄今为止,对收获前发芽(PHS)小麦的研究主要是在实验室条件下发芽的籽粒上进行的,而实验室条件与田间条件大不相同。为了获得有关PHS小麦(Triticum aestivum)水解酶活性演变的详细知识,通过在成熟之前,之中和之后进行收获,从三个品种中收集了广泛的样品。收割时间的延迟加上暴雨的时期导致了籽粒的发芽,其表现为下降数量的下降和α-淀粉酶活性的增加。田间发芽期间α-和β-淀粉酶,肽酶和内切木聚糖酶活性的出现彼此独立。因此,下降数不能用于预测其他水解酶的活性。当区分内源性和仁相关性微生物酶时,结果表明,PHS仁的α-和β-淀粉酶和肽酶活性主要来自内源性,而内切木聚糖酶活性主要来自微生物。

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