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On the relationships between leaf-litter lignin and net primary productivity in tropical rain forests

机译:热带雨林凋落物木质素与净初级生产力之间的关系

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We investigated if tropical rainforest trees produced more-lignified leaves in less productive environments using forests on Mount Kinabalu, Borneo. Our investigation was based on two earlier suggestions that slower litter decomposition occurs under less productive forests and that trees under resource limitation invest a large amount of carbon as lignin as a defense substance to minimize the loss from herbivores. When nine forests at different altitudes (700–3100 m) and soil conditions (derived from sedimentary or ultrabasic rocks) but with the same gentle relief position were compared, the concentrations of leaf-litter lignin were positively correlated with litterfall rates and leaf-litter nitrogen concentrations. These patterns would be reinforced in intact leaves if the effects of resorption at the time of leaf shedding were taken into account, because greater magnitude of resorption of mobile elements but not of lignin would occur in less productive environments (i.e. dilution of lignin in intact leaves). These results did not support earlier suggestions to explain the variation of leaf-litter lignin. Instead, we suggest that lower lignin contents are adaptive to recycle minerals without retarding decomposition in less productive environments.
机译:我们调查了婆罗洲京那巴鲁山(Mount Kinabalu)上的热带雨林树木是否在生产力较低的环境中产生了更为木质的叶子。我们的调查基于两个较早的建议,即在生产力较低的森林中凋落物分解较慢,在资源有限的情况下,树木会大量吸收木质素作为防御物质,以最大程度减少食草动物的损失。当比较9个不同海拔(700-3100 m)和土壤条件(来自沉积岩或超基性岩石)但具有相同缓缓释放位置的森林时,凋落物木质素的浓度与凋落率和凋落物呈正相关。氮浓度。如果考虑到叶片脱落时的吸收作用,那么在完整的叶子中这些模式将得到加强,因为在生产效率较低的环境中会发生更大程度的移动元素而非木质素的吸收(即木质素在完整叶子中的稀释) )。这些结果不支持较早的建议来解释凋落叶木质素的变化。取而代之的是,我们建议较低的木质素含量适合回收矿物,而不会在生产效率较低的环境中阻止分解。

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