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首页> 外文期刊>Journal of Cereal Science >Hull to caryopsis adhesion and grain skinning in malting barley: Identification of key growth stages in the adhesion process
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Hull to caryopsis adhesion and grain skinning in malting barley: Identification of key growth stages in the adhesion process

机译:麦芽大麦中壳对颖果的粘附和谷物剥皮:粘附过程中关键生长阶段的鉴定

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摘要

Strong adhesion between the hull and the caryopsis is essential for barley to be of good malting quality. Poor hull adhesion, a condition known as grain skinning, is undesirable for malting and downstream processes. At present, the processes mediating hull adhesion during grain development are poorly understood. The barley cultivar Chariot was grown in greenhouse conditions and grain development was recorded at defined growth stages to examine the timing of hull adhesion. Initiation of adhesion was first observed when caryopsis fresh weight and volume were approaching their maximum at 19 days after anthesis, during early dough. Hull adhesion was complete by 27 days after anthesis, or soft dough. Sections of developing grains were observed using light and transmission electron microscopy to examine a lipid-rich cementing layer believed to be responsible for adhesion between the hull and the pericarp. Evidence for a lipid-rich cementing material was supported by the observation that neither pectinase nor cellulase effected hull loosening. Grain growth, the presence of globular material originating from the pericarp and an electron dense material in the cementing layer are discussed in relation to hull adhesion. Grain skinning could be caused by poor adherence of cuticular material or inadequate fusion between cuticles. (C) 2015 Elsevier Ltd. All rights reserved.
机译:船体和颖果之间的牢固附着力对于使大麦具有良好的麦芽品质至关重要。麦芽和下游加工过程中不良的船体附着力(一种称为谷物皮的状况)是不可取的。目前,人们对在谷物发育过程中介导船体粘附的过程了解甚少。大麦栽培品种战车在温室条件下生长,并在规定的生长阶段记录了谷物的生长,以检查船体附着的时间。当颖果的早期重量和体积在花后19天的早期面团中达到其最大值时,首先观察到粘附开始。花粉或柔软的面团在27天后完成船体附着力。使用光和透射电子显微镜观察发育中的谷物切片,以检查富含脂质的胶结层,该层被认为是造成船体和果皮之间粘附的原因。果胶酶和纤维素酶均不影响船体松动的观察结果支持了富含脂质的胶结材料的证据。讨论了谷物的生长,果皮中球形物质的存在以及胶结层中电子致密物质的存在与船体附着力的关系。皮肤结皮可能是由于表皮材料粘附不良或表皮之间的融合不足所致。 (C)2015 Elsevier Ltd.保留所有权利。

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