首页> 外文期刊>Journal of Experimental Botany >Functional analysis of the relative growth rate, chemical composition, construction and maintenance costs, and the payback time of Coffea arabica L. leaves in response to light and water availability
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Functional analysis of the relative growth rate, chemical composition, construction and maintenance costs, and the payback time of Coffea arabica L. leaves in response to light and water availability

机译:响应光和水的可获得性,对阿拉伯咖啡的相对生长速度,化学成分,建造和维护成本以及投资回收期进行功能分析

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In this study, the combined effects of light and water availability on the functional relationships of the relative growth rate (RGR), leaf chemical composition, construction and maintenance costs, and benefits in terms of payback time for Coffea arabica are presented. Coffee plants were grown for 8 months in 100% or 15% full sunlight and then a four-month water shortage was implemented. Plants grown under full sunlight were also transferred to shade and vice versa. Overall, most of the traits assessed were much more responsive to the availability of light than to the water supply. Larger construction costs (12%), primarily associated with elevated phenol and alkaloid pools, were found under full sunlight. There was a positive correlation between these compounds and the RGR, the mass-based net carbon assimilation rate and the carbon isotope composition ratio, which, in turn, correlated negatively with the specific leaf area. The payback time was remarkably lower in the sun than in shade leaves and increased greatly in water-deprived plants. The differences in maintenance costs among the treatments were narrow, with no significant impact on the RGR, and there was no apparent trade-off in resource allocation between growth and defence. The current irradiance during leaf bud formation affected both the specific leaf area and leaf physiology upon transferring the plants from low to high light and vice versa. In summary, sun-grown plants fixed more carbon for growth and secondary metabolism, with the net effect of an increased RGR.
机译:在这项研究中,提出了光和水的可获得性对阿拉伯咖啡相对生长率(RGR),叶片化学成分,构建和维护成本以及回收期收益的功能关系的综合影响。咖啡植物在100%或15%的日光下生长了8个月,然后缺水了4个月。在完全阳光下生长的植物也被转移到阴凉处,反之亦然。总体而言,所评估的大多数特征对光的可用性的响应远大于对水的响应。在充满阳光的情况下,发现施工成本较高(12%),主要与苯酚和生物碱池升高有关。这些化合物与RGR,基于质量的净碳同化率和碳同位素组成比之间存在正相关,而与特定叶面积负相关。在阳光下的投资回收期显着低于遮荫叶片,而在缺水的植物中,投资回收期大大增加。这些处理之间的维护成本差异很小,对RGR没有明显影响,并且在增长和防御之间的资源分配没有明显的权衡。叶芽形成过程中的当前辐照度将植物从弱光转移到强光时都会影响比叶面积和叶片生理,反之亦然。总之,阳光生长的植物为生长和次级代谢固定了更多的碳,而RGR增加的净效应是。

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