首页> 外文期刊>Australian Journal of Grape and Wine Research >Rapid and non-destructive method to assess in the vineyard grape berry anthocyanins under different seasonal and water conditions*
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Rapid and non-destructive method to assess in the vineyard grape berry anthocyanins under different seasonal and water conditions*

机译:快速,无损的方法评估葡萄园在不同季节和水条件下的葡萄浆果花色苷*

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摘要

Background and Aims: Monitoring of anthocyanins (Anth) in winegrape (Vitis vinifera L.) is fundamental for the production of top-quality red wines. This work was aimed at testing a new fluorescence-based sensor for Anth detection in the vineyard. Significance of the Study: The present study showed a new important innovative technology for viticulture. The sensor evaluation of the large spatial and temporal heterogeneity in Anth accumulation can be useful as support parameter in the harvest date decision or for vineyard zoning of phenolic maturity. Methods and Results: Anth in grape (cv. Aleatico) bunches attached to the vine were monitored non-destructively in the field using a fluorescence-based sensor during the 2008 and 2009 seasons and under different water regimes. The ANTHRG index = log(far-red-fluorescencer/far-red-fluorescenceg), with fluorescence signals excited with red (R) and green (G) light, was inversely correlated through an exponential function (r2 = 0.875) to the Anth concentration derived from the HPLC analysis of berry skin extracts. ANTHRG was effective in detecting the earlier ripening process in 2009 with respect to 2008 and differences in the Anth accumulation between seasons and in relation to different water regimes. Water deficit imposed in 2009 enhanced Anth concentration in berries because of a reduction in berry size but also an increase of Anth biosynthesis. This effect was observed by both destructive and ANTHRG non-destructive measurements. Conclusions: Our results show that the employed fluorescence sensor represents a reliable, rapid and non-invasive tool for monitoring and determining Anth accumulation in situ.
机译:背景和目的:监测葡萄柚(Vitis vinifera L.)中的花色苷(Anth)是生产优质红酒的基础。这项工作旨在测试一种新的基于荧光的传感器,用于在葡萄园中检测Anth。研究的意义:本研究显示了一种新的重要的葡萄栽培创新技术。 Anth积累中较大的空间和时间异质性的传感器评估可以用作收获日期决策中的支持参数或用于酚类成熟度的葡萄园分区。方法和结果:在2008年和2009年季节以及不同的水环境下,使用基于荧光的传感器在田间无损地监测了附着在葡萄上的葡萄(cv。Aleatico)。 ANTHRG指数= log(远红色荧光剂/远红色荧光g),其中荧光信号被红色(R)和绿色(G)激发,通过指数函数(r2 = 0.875)反向相关浓度由浆果皮提取物的HPLC分析得出。 ANTHRG可以有效地检测2009年相对于2008年的较早成熟过程,以及不同季节和不同供水方式下Anth积累的差异。 2009年施加的水分亏缺增加了浆果中Anth的浓度,因为浆果大小减小了,但是Anth的生物合成也增加了。通过破坏性测量和ANTHRG非破坏性测量都可以观察到这种效果。结论:我们的结果表明,所采用的荧光传感器代表了一种可靠,快速且无创的工具,可以现场监测和确定Anth的积累。

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  • 来源
    《Australian Journal of Grape and Wine Research》 |2011年第2期|p.181-189|共9页
  • 作者单位

    Department of Cultivation and Preservation of Ligneous Species 'G. Scaramuzzi', University of Pisa,Via del Borghetto 80,56124 Pisa, Italy;

    Department of Cultivation and Preservation of Ligneous Species 'G. Scaramuzzi', University of Pisa,Via del Borghetto 80,56124 Pisa, Italy;

    Department of Pharmaceutical Sciences, University of Florence,Via Ugo Schiff 6, 50019, Sesto Fiorentino, Florence, Italy;

    Department of Pharmaceutical Sciences, University of Florence,Via Ugo Schiff 6, 50019, Sesto Fiorentino, Florence, Italy ,Institute of Applied Physics 'N. Carrara' - CNR,Via Madonna del Piano 10, 50019 Sesto Fiorentino, Florence, Italy;

    Sant'Anna School of Advanced Studies of Pisa, Piazza Martiri della Liberia 33, 56127 Pisa, Italy;

    Department of Cultivation and Preservation of Ligneous Species 'G. Scaramuzzi', University of Pisa,Via del Borghetto 80,56124 Pisa, Italy;

    Institute of Applied Physics 'N. Carrara' - CNR,Via Madonna del Piano 10, 50019 Sesto Fiorentino, Florence, Italy;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    aleatico; anthocyanin; chlorophyll fluorescence; optical sensor; phenolic maturity; ripening; vitis vinifera l.; water stress;

    机译:aleatico;花青素;叶绿素荧光光学传感器酚类成熟度成熟葡萄;水分胁迫;

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