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红枫(Acer rubrum L.)的初秋衰老与叶片花青素含量高有关。

Early Autumn Senescence in Red Maple (Acer rubrum L.) Is Associated with High Leaf Anthocyanin Content.

作者信息

Anderson Rachel, Ryser Peter

机构信息

Department of Biology, Laurentian University, 935 Ramsey Lake Road, Sudbury, ON P3E 2H6, Canada.

出版信息

Plants (Basel). 2015 Aug 5;4(3):505-22. doi: 10.3390/plants4030505.

Abstract

Several theories exist about the role of anthocyanins in senescing leaves. To elucidate factors contributing to variation in autumn leaf anthocyanin contents among individual trees, we analysed anthocyanins and other leaf traits in 27 individuals of red maple (Acer rubrum L.) over two growing seasons in the context of timing of leaf senescence. Red maple usually turns bright red in the autumn, but there is considerable variation among the trees. Leaf autumn anthocyanin contents were consistent between the two years of investigation. Autumn anthocyanin content strongly correlated with degree of chlorophyll degradation mid to late September, early senescing leaves having the highest concentrations of anthocyanins. It also correlated positively with leaf summer chlorophyll content and dry matter content, and negatively with specific leaf area. Time of leaf senescence and anthocyanin contents correlated with soil pH and with canopy openness. We conclude that the importance of anthocyanins in protection of leaf processes during senescence depends on the time of senescence. Rather than prolonging the growing season by enabling a delayed senescence, autumn anthocyanins in red maple in Ontario are important when senescence happens early, possibly due to the higher irradiance and greater danger of oxidative damage early in the season.

摘要

关于花青素在衰老叶片中的作用存在几种理论。为了阐明导致单株树木秋叶花青素含量变化的因素,我们在叶片衰老时间的背景下,对27株红枫(Acer rubrum L.)在两个生长季节中的花青素及其他叶片性状进行了分析。红枫在秋季通常会变成鲜红色,但不同树木之间存在相当大的差异。在两年的调查中,叶片秋季花青素含量是一致的。秋季花青素含量与9月中旬至下旬叶绿素降解程度密切相关,早期衰老的叶片花青素浓度最高。它还与叶片夏季叶绿素含量和干物质含量呈正相关,与比叶面积呈负相关。叶片衰老时间和花青素含量与土壤pH值和树冠开阔度相关。我们得出结论,花青素在衰老过程中对叶片生理过程的保护作用的重要性取决于衰老时间。安大略省红枫的秋季花青素并非通过延迟衰老来延长生长季节,而是在衰老提前发生时很重要,这可能是由于该季节早期光照较强且氧化损伤的风险更大。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d6f0/4844408/4eda84096836/plants-04-00505-g001.jpg

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