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果实局部光感受器增加了田间种植的酿酒葡萄品种马尔贝克浆果果皮中的酚类化合物。

Fruit-localized photoreceptors increase phenolic compounds in berry skins of field-grown Vitis vinifera L. cv. Malbec.

作者信息

González Carina Verónica, Fanzone Martín Leandro, Cortés Leandro Emanuel, Bottini Rubén, Lijavetzky Diego Claudio, Ballaré Carlos Luis, Boccalandro Hernán Esteban

机构信息

Instituto de Biología Agrícola de Mendoza, Consejo Nacional de Investigaciones Científicas y Técnicas, Universidad Nacional de Cuyo, Almirante Brown 500, 5505 Chacras de Coria, Luján de Cuyo, Mendoza, Argentina; Facultad de Ciencias Exactas y Naturales, Universidad Nacional de Cuyo, Ciudad Universitaria, Parque General San Martín, 5500 Mendoza, Argentina.

Laboratorio de Aromas y Sustancias Naturales, Estación Experimental Agropecuaria Mendoza, Instituto Nacional de Tecnología Agropecuaria, San Martin 3853, 5507, Mayor Drummond, Luján de Cuyo, Mendoza, Argentina.

出版信息

Phytochemistry. 2015 Feb;110:46-57. doi: 10.1016/j.phytochem.2014.11.018. Epub 2014 Dec 13.

Abstract

Sunlight exposure has multiple effect on fruits, as it affects the light climate perceived by fruit photoreceptors and fruit tissue temperature. In grapes (Vitis vinifera L.), light exposure can have a strong effect on fruit quality and commercial value; however, the mechanisms of light action are not well understood. The role of fruit-localized photoreceptors in the control of berry quality traits was evaluated under field conditions in a commercial vineyard in Mendoza (Argentina). Characterization of the diurnal dynamics of the fruit light environment in a vertical trellis system indicated that clusters were shaded by leaves during most of the photoperiod. Supplementation of the fruit light environment from 20 days before veraison until technological harvest showed that red (R, 660 nm) and blue (B, 470 nm) light strongly increased total phenolic compound levels at harvest in the berry skins without affecting sugar content, acidity or berry size. Far-red (FR, 730 nm) and green (G, 560 nm) light supplementation had relatively small effects. The stimulation of berry phytochromes and cryptochromes favored accumulation of flavonoid and non-flavonoid compounds, including anthocyanins, flavonols, flavanols, phenolic acids and stilbenes. These results demonstrate that the chemical composition of grape berries is modulated by the light quality received by the clusters under field conditions, and that fruit photoreceptors are not saturated even in areas of high insolation and under management systems that are considered to result in a relatively high exposure of fruits to solar radiation. Therefore, manipulation of the light environment or the light sensitivity of fruits could have significant effects on critical grape quality traits.

摘要

阳光照射对果实有多种影响,因为它会影响果实光感受器所感知的光照环境以及果实组织温度。在葡萄(欧亚种葡萄)中,光照对果实品质和商业价值有很大影响;然而,光作用的机制尚未得到很好的理解。在阿根廷门多萨的一个商业葡萄园的田间条件下,评估了果实局部光感受器在控制浆果品质性状中的作用。对垂直棚架系统中果实光照环境的昼夜动态特征进行表征表明,在大部分光周期内,果穗被叶片遮挡。从转色前20天到技术采收期对果实光照环境进行补充,结果表明,红色(R,660纳米)和蓝色(B,470纳米)光在采收时能显著提高浆果表皮中总酚类化合物的含量,而不影响糖分含量、酸度或浆果大小。远红光(FR,730纳米)和绿光(G,560纳米)补充的影响相对较小。浆果光敏色素和隐花色素的刺激有利于黄酮类和非黄酮类化合物的积累,包括花青素、黄酮醇、黄烷醇、酚酸和芪类化合物。这些结果表明,在田间条件下,葡萄浆果的化学成分受果穗所接收的光质调节,并且即使在日照充足的地区以及在被认为会使果实相对较高地暴露于太阳辐射的管理系统下,果实光感受器也不会饱和。因此,对光照环境或果实光敏感性的调控可能会对关键的葡萄品质性状产生重大影响。

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