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Photosynthesis, carbohydrate storage and survival of a native and an introduced tree species in relation to light and defoliation

机译:与光和脱叶有关的本地树种和外来树种的光合作用,碳水化合物的储存和存活

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摘要

Fraxinus uhdei (Wenz.) Lingelsh (tropical ash), a species introduced to Hawaii from Mexico, invades forests of the endemic tree Acacia koa A.Gray (koa). We examined physiological and morphological characteristics of koa and tropical ash to explore possible mechanisms that may facilitate invasion of koa forests by tropical ash. Seedlings of both species were grown in a greenhouse in three light treatments: 100% photosynthetic photon flux (PPF); 18% PPF; and 2% PPF inside the greenhouse. Light compensation point, maximum CO2 assimilation rate and dark respiration rate of seedlings differed significantly among light treatments, but were similar between species. A defoliation experiment indicated that tropical ash was better able to survive defoliation than koa, especially under high-light conditions. Tropical ash seedlings allocated more carbon (C) and nitrogen (N) to storage per unit PPF than koa seedlings. Total nonstructural carbohydrates were positively correlated with plant survival in both species. The patterns of C and N allocation associated with tropical ash seedlings favor their survival in high light, under intense herbivory and on sites where N availability is seasonal or highly variable. Variation in carbohydrate storage between koa and tropical ash greatly exceeded variation in photosynthetic performance at the leaf level.
机译:Fraxinus uhdei(Wenz。)Lingelsh(热带灰),是一种从墨西哥引入夏威夷的物种,入侵特有树种Acacia koa A.Gray(koa)的森林。我们研究了Koa和热带灰的生理和形态特征,以探索可能促进热带灰入侵Koa森林的可能机制。这两种物种的幼苗都通过三种光处理方法在温室中生长:100%光合光子通量(PPF); PPF为18%;和2%PPF的温室。光照处理后,幼苗的光补偿点,最大CO2同化率和暗呼吸速率存在显着差异,但种间相似。脱叶实验表明,热带灰烬比Koa更能抵抗脱叶,特别是在强光条件下。热带灰烬幼苗每单位PPF的储存碳(C)和氮(N)的分配量比koa幼苗更多。在两个物种中,总的非结构性碳水化合物与植物存活率呈正相关。与热带灰树苗相关的碳和氮分配模式有利于它们在强光,草食条件下以及氮素供应随季节变化或变化很大的地点高强度生存。柯阿和热带灰分之间碳水化合物存储的变化大大超过了叶片水平的光合性能变化。

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