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高浓度二氧化碳环境对桉树叶营养品质的影响及其与土壤养分和光照条件的相互作用。

The effects of elevated CO atmospheres on the nutritional quality of Eucalyptus foliage and its interaction with soil nutrient and light availability.

作者信息

Lawler I R, Foley W J, Woodrow I E, Cork S J

机构信息

Department of Zoology James Cook University of North Queensland Townsville, 4811 Queensland, Australia fax: +61 77 251570 e-mail:

Department of Botany, James Cook University Townsville, Qld. 4811, Australia, , , , , , AU.

出版信息

Oecologia. 1996 Dec;109(1):59-68. doi: 10.1007/s004420050058.

Abstract

Seedlings of Eucalyptus tereticornis (Smith) were grown under two levels of availability each of CO (352 and 793 µmol mol), soil nutrients (1/24 and 1/4 Hoagland's solution) and light (full and 30% sunlight). Low soil nutrient availability or high light increased the C:N ratio of leaves, leading to lower leaf nitrogen concentrations, higher leaf specific weights and higher levels of both total phenolics and condensed tannins. These results were consistent with other studies of the effect of environmental resource availability on foliage composition. Similar results were observed when the C:N ratio of leaves was increased under elevated CO. The changes in leaf chemistry induced by the treatments affected the performance of 4th-instar larvae of Chrysophtharta flaveola (Chapuis) fed on the leaves. Increased C:N ratios of leaves reduced digestive efficiencies and pupal body sizes and increased mortality. Below a threshold nitrogen concentration of approximately 1% dry mass, severe reductions in the performance of larvae were recorded. Such changes may have significant consequences for herbivores of Eucalyptus, particularly in view of projected increases in atmospheric CO.

摘要

尾叶桉(史密斯)幼苗在两种水平的二氧化碳(352和793微摩尔/摩尔)、土壤养分(1/24和1/4霍格兰溶液)以及光照(全光照和30%阳光)条件下生长。低土壤养分有效性或高光强会提高叶片的碳氮比,导致叶片氮浓度降低、叶比重增加以及总酚和缩合单宁含量升高。这些结果与其他关于环境资源有效性对叶片组成影响的研究一致。当在高浓度二氧化碳条件下叶片碳氮比增加时,也观察到了类似结果。处理引起的叶片化学变化影响了取食这些叶片的黄胸叶甲(沙普伊)四龄幼虫的表现。叶片碳氮比增加会降低消化效率和蛹体大小,并增加死亡率。当氮浓度低于约1%干重的阈值时,幼虫表现会严重下降。这些变化可能对桉树食草动物产生重大影响,特别是考虑到预计大气中二氧化碳的增加。

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