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利用环境相关剂量的紫外线辐射调控温室番茄的感官和植物化学特征

Manipulating Sensory and Phytochemical Profiles of Greenhouse Tomatoes Using Environmentally Relevant Doses of Ultraviolet Radiation.

作者信息

Dzakovich Michael P, Ferruzzi Mario G, Mitchell Cary A

机构信息

Department of Horticulture and Landscape Architecture, Purdue University , 625 Agriculture Mall Drive, West Lafayette, Indiana 47907-2010, United States.

Department of Food Science, Purdue University , 745 Agriculture Mall Drive, West Lafayette, Indiana 47907-2010, United States.

出版信息

J Agric Food Chem. 2016 Sep 14;64(36):6801-8. doi: 10.1021/acs.jafc.6b02983. Epub 2016 Aug 31.

Abstract

Fruits harvested from off-season, greenhouse-grown tomato plants have a poor reputation compared to their in-season, garden-grown counterparts. Presently, there is a gap in knowledge with regard to the role of UV-B radiation (280-315 nm) in determining greenhouse tomato quality. Knowing that UV-B is a powerful elicitor of secondary metabolism and not transmitted through greenhouse glass and some greenhouse plastics, we tested the hypothesis that supplemental UV-B radiation in the greenhouse will impart quality attributes typically associated with garden-grown tomatoes. Environmentally relevant doses of supplemental UV-B radiation did not strongly affect antioxidant compounds of fruits, although the flavonol quercetin-3-O-rutinoside (rutin) significantly increased in response to UV-B. Physicochemical metrics of fruit quality attributes and consumer sensory panels were used to determine if any such differences altered consumer perception of tomato quality. Supplemental UV-A radiation (315-400 nm) pre-harvest treatments enhanced sensory perception of aroma, acidity, and overall approval, suggesting a compelling opportunity to environmentally enhance the flavor of greenhouse-grown tomatoes. The expression of the genes COP1 and HY5 were indicative of adaptation to UV radiation, which explains the lack of marked effects reported in these studies. To our knowledge, these studies represent the first reported use of environmentally relevant doses of UV radiation throughout the reproductive portion of the tomato plant life cycle to positively enhance the sensory and chemical properties of fruits.

摘要

与在季节种植、在菜园中生长的番茄相比,从非季节温室种植的番茄植株上收获的果实口碑不佳。目前,关于UV-B辐射(280 - 315纳米)在决定温室番茄品质方面的作用,存在知识空白。鉴于UV-B是次生代谢的有力诱导剂,且不能透过温室玻璃和一些温室塑料,我们检验了这样一个假设:温室中补充UV-B辐射将赋予果实通常与菜园种植番茄相关的品质特性。尽管黄酮醇槲皮素-3-O-芸香糖苷(芦丁)对UV-B有显著增加的响应,但与环境相关剂量的补充UV-B辐射并未强烈影响果实的抗氧化化合物。果实品质属性的物理化学指标和消费者感官评定小组被用于确定是否有此类差异改变了消费者对番茄品质的认知。收获前补充UV-A辐射(315 - 400纳米)处理增强了对香气、酸度和总体认可度的感官感知,这表明在环境方面有增强温室种植番茄风味的诱人机会。COP1和HY5基因的表达表明对UV辐射的适应,这解释了这些研究中所报道的缺乏显著影响的原因。据我们所知,这些研究是首次报道在番茄植株生命周期的整个生殖阶段使用与环境相关剂量的UV辐射来积极改善果实的感官和化学特性。

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