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花青素在幼叶、受胁迫叶片和衰老叶片中的光吸收。

Light absorption by anthocyanins in juvenile, stressed, and senescing leaves.

作者信息

Merzlyak Mark N, Chivkunova Olga B, Solovchenko Alexei E, Naqvi K Razi

机构信息

Department of Physiology of Microorganisms, Faculty of Biology, Moscow State University, 119991, GSP-1 Moscow, Russia.

出版信息

J Exp Bot. 2008;59(14):3903-11. doi: 10.1093/jxb/ern230. Epub 2008 Sep 16.

Abstract

The optical properties of leaves from five species, Norway maple (Acer platanoides L.), cotoneaster (Cotoneaster alaunica Golite), hazel (Corylus avellana L.), Siberian dogwood (Cornus alba L.), and Virginia creeper (Parthenocissus quinquefolia (L.) Planch.), differing in pigment composition and at different stages of ontogenesis, were studied. Anthocyanin absorption maxima in vivo, as estimated with spectrophotometry of intact anthocyanic versus acyanic leaves and microspectrophotometry of vacuoles in the leaf cross-sections, were found between 537 nm and 542 nm, showing a red shift of 5-20 nm compared with the corresponding maxima in acidic water-methanol extracts. In non-senescent leaves, strong anthocyanin absorption was found between 500 nm and 600 nm (with a 70-80 nm apparent bandwidth). By and large, absorption by anthocyanin in leaves followed a modified form of the Lambert-Beer law, showing a linear trend up to a content of nearly 50 nmol cm(-2), and permitting thereby a non-invasive determination of anthocyanin content. The apparent specific absorption coefficients of anthocyanins at 550 nm showed no substantial dependence on the species. Anthocyanin contribution to total light absorption at 550 nm was followed in maple leaves in the course of autumn senescence. Photoprotection by vacuolar anthocyanins is discussed with special regard to their distribution within a leaf; radiation screening by anthocyanins predominantly localized in the epidermal cells in A. platanoides and C. avellana leaves was also evaluated.

摘要

对挪威枫(Acer platanoides L.)、栒子(Cotoneaster alaunica Golite)、榛树(Corylus avellana L.)、西伯利亚山茱萸(Cornus alba L.)和五叶地锦(Parthenocissus quinquefolia (L.) Planch.)这五个物种的叶片光学特性进行了研究,这些物种在色素组成和个体发育的不同阶段存在差异。通过对完整的含花青素叶片与不含花青素叶片进行分光光度测定以及对叶片横切面的液泡进行显微分光光度测定,体内花青素吸收最大值在537纳米至542纳米之间,与酸性水 - 甲醇提取物中的相应最大值相比,出现了5 - 20纳米的红移。在非衰老叶片中,在500纳米至600纳米之间发现了强烈的花青素吸收(表观带宽为70 - 80纳米)。总体而言,叶片中花青素的吸收遵循朗伯 - 比尔定律的修正形式,在花青素含量接近50 nmol cm(-2)之前呈线性趋势,从而可以非侵入性地测定花青素含量。花青素在550纳米处的表观比吸收系数对物种没有实质性依赖。在秋季衰老过程中跟踪了枫叶中花青素对550纳米处总光吸收的贡献。特别讨论了液泡花青素的光保护作用及其在叶片内的分布;还评估了主要位于挪威枫和榛树叶片表皮细胞中的花青素的辐射屏蔽作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a285/2638960/f3751a5bbc69/jexbotern230f01_3c.jpg

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