桉树幼苗建立过程中冷致光抑制和叶片色素动态

D. Close, C. Beadle, M. Hovenden
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引用次数: 38

摘要

研究了冷诱导光抑制对桉树(Deane and Maiden)的叶绿素和类胡萝卜素动态及叶黄素循环的影响。幼苗在种植前施肥或不施肥,种植后遮荫或不遮荫。实验地点为海拔700米,由于年平均最低气温较低,因此被认为是塔斯马尼亚州建立沙狐猴种植园的边缘。低温-强光条件导致叶绿素荧光变异性与最大变异性比值(F v /F m)的降低,在未受精的幼苗中比在受精的幼苗中更为明显。遮阳棚减轻了这种压抑。除遮荫施肥的幼苗外,直到20周后,fv / fm才恢复到种植前的水平。在遮荫处理下,总叶绿素含量最初降低,但随后随着温度和F /F m的升高而增加。在播种后2周内,施肥幼苗的总叶黄素含量和单位叶绿素叶黄素含量保持相对稳定,而未施肥幼苗的总叶黄素含量则有所下降。在光照抑制最严重的时期,叶绿素荧光参数的日产量、非光化学猝灭(NPQ)和季节性(fv /F m)变化并未反映在叶黄素循环中。这一结果可能表明,叶绿素-叶黄素蛋白复合物在冬季适应的黑桫椤叶片中形成,这种复合物已被证实发生在少叶桉中。Spreng交货。(Gilmore and Ball 2000,美国国家科学院院刊97,11098-11101)。
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Cold-induced photoinhibition and foliar pigment dynamics of Eucalyptus nitens seedlings during establishment
The effects of cold-induced photoinhibition on chlorophyll and carotenoid dynamics and xanthophyll cycling in Eucalyptus nitens (Deane and Maiden) Maiden were assessed between planting and 32 weeks after planting. The seedlings were fertilised or nutrient-deprived (non-fertilised) before planting and shaded or not shaded after planting. The experimental site was 700 m a.s.l., which is considered marginal for establishment of E. nitens plantations in Tasmania due to low mean annual minimum temperatures. Low temperature–high light conditions caused a reduction in variable to maximal chlorophyll fluorescence ratio (F v /F m ), which was more pronounced in non-fertilised than in fertilised seedlings. Shadecloth shelters alleviated this depression. Except in shaded fertilised seedlings, F v /F m did not recover to the level before planting until after 20 weeks. Total chlorophyll content was initially reduced in shaded treatments but subsequently increased with increasing temperatures and F v /F m. Total xanthophyll content and xanthophylls per unit chlorophyll remained relatively constant in fertilised seedlings but decreased in non-fertilised seedlings within 2 weeks after planting. Total xanthophyll and xanthophylls per unit chlorophyll subsequently recovered in non-shaded, non-fertilised seedlings with increasing temperatures and F v /F m. Diurnal [yield and non-photochemical quenching (NPQ) and seasonal (F v /F m) variation in chlorophyll fluorescence parameters were not reflected in xanthophyll cycling during the period of most severe photoinhibition. This result may indicate that chlorophyll–xanthophylls protein complexes form in winter-acclimated E. nitens foliage as have been demonstrated to occur in Eucalyptus pauciflora Sieb. ex Spreng. (Gilmore and Ball 2000, Proceedings of the National Academy of Sciences USA 97, 11098–11101).
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