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首页> 外文期刊>HortTechnology >Canopy Light Effects in Multiple Training Systems on Yield, Soluble Solids, Acidity, Phenol and Flavonoid Concentration of 'Frontenac' Grapes
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Canopy Light Effects in Multiple Training Systems on Yield, Soluble Solids, Acidity, Phenol and Flavonoid Concentration of 'Frontenac' Grapes

机译:多种培训系统中的冠层光对'Frontenac'葡萄的产量,可溶性固形物,酸度,苯酚和类黄酮浓度的影响

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摘要

Phenolic compounds contribute greatly to the sensory attributes of wine and have a wide range of human health benefits as well. In this study, four trellis/ training systems were evaluated for effects on fruit-zone light environment, fruit chemical composition (including phenol and flavonoid concentrations), and yield of 'Frontenac' grapes ( Vitis sp. MN 1047) grown in southeastern Nebraska over two growing seasons. Photosynthetically active radiation (PAR) was measured above the canopy and within the fruiting zone at berry set, veraison, and harvest. Point quadrat canopy analysis was performed at veraison. Both bound and free (unbound) flavonoid and total phenolic contents were determined for the skins and seeds of fruit samples in 2008. At all sampling dates in 2008, vines grown on Geneva double curtain (GDC) and high cordon (HC) had higher midday percentage PAR transmittances than vines grown on Smart-Dyson (SD) and vertical shoot positioned (VSP) training systems. In 2009, transmittance relationships between trellises were not consistent throughout the season. In both years, leaf layer number (LLN) was lower for GDC and HC than for SD and VSP. Flavonoid and total phenol concentrations of the bound seed and bound skin extracts did not differ among trellises. Within the free extracts, VSP had higher total phenol concentration than SD (GDC and HC were intermediate) and there were no differences in flavonoid concentration. In 2008, GDC had higher pH than other trellises and higher soluble solidsthan SD and VSP; titratable acidity (TA) was lower in GDC and HC than in SD and VSP. In 2009, SD and VSP had the highest soluble solids concentrations; HC had lower pH than SD and VSP and there were no differences in TA. Results were inconclusive regarding light environment effects on fruit chemical composition.
机译:酚类化合物对葡萄酒的感官特性有很大贡献,并且对人类健康也有广泛的益处。在这项研究中,评估了四个格子/培训系统对水果区光照环境,水果化学成分(包括酚和类黄酮浓度)以及内布拉斯加州东南部全境种植的“ Frontenac”葡萄(Vitis sp。MN 1047)的产量的影响。两个生长季节。在树冠上方,果实定殖和收获时,在冠层上方和结实区域内测量了光合有效辐射(PAR)。点四边形冠层分析进行了验证。 2008年测定了水果样品的表皮和种子的结合和游离(未结合)黄酮含量以及总酚含量。在2008年的所有采样日期中,日内瓦双帘(GDC)和高警戒线(HC)上种植的葡萄中午时分较高。 PAR透光率比在Smart Dyson(SD)和垂直枝条定位(VSP)训练系统上生长的葡萄树高。在2009年,整个季节的格子之间的透射率关系不一致。在这两年中,GDC和HC的叶片层数(LLN)均低于SD和VSP。结合的种子和结合的皮肤提取物中的类黄酮和总酚浓度在格子之间没有差异。在游离提取物中,VSP的总酚浓度高于SD(GDC和HC为中间浓度),并且类黄酮浓度没有差异。 2008年,GDC的pH值高于其他格状结构,并且可溶性固形物的含量高于SD和VSP。 GDC和HC中的可滴定酸度(TA)低于SD和VSP中的可滴定酸度(TA)。 2009年,SD和VSP的可溶性固形物浓度最高。 HC的pH值低于SD和VSP,TA的差异也没有。关于光照环境对水果化学成分的影响,结果尚无定论。

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