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Effect of elevated atmospheric CO2 concentration on growth and leaf litter decomposition of Quercus acutissima and Fraxinus rhynchophylla

机译:大气CO2浓度升高对刺槐和水曲柳生长及凋落物分解的影响

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摘要

The atmospheric carbon dioxide (CO2) level is expected to increase substantially, which may change the global climate and carbon dynamics in ecosystems. We examined the effects of an elevated atmospheric CO2 level on the growth of Quercus acutissima and Fraxinus rhynchophylla seedlings. We investigated changes in the chemical composition of leaf litter, as well as litter decomposition. Q. acutissima and F. rhynchophylla did not show differences in dry weight between ambient CO2 and enriched CO2 treatments, but they exhibited different patterns of carbon allocation, namely, lower shoot/root ratio (S/R) and decreased specific leaf area (SLA) under CO2-enriched conditions. The elevated CO2 concentration significantly reduced the nitrogen concentration in leaf litter while increasing lignin concentrations and carbonitrogen (C/N) and lignin/N ratios. The microbial biomass associated with decomposing Q. acutissima leaf litter was suppressed in CO2 enrichment chambers, while that of F. rhynchophylla was not. The leaf litter of Q. acutissima from the CO2-enriched chambers, in contrast with F. rhynchophylla, contained much lower nutrient concentrations than that of the litter in the ambient air chambers. Consequently, poorer litter quality suppressed decomposition.
机译:预计大气中的二氧化碳(CO2)水平将大大增加,这可能会改变全球气候和生态系统中的碳动态。我们研究了升高的大气CO2水平对aqueisscus acutissima和Rhinchophyllala幼苗生长的影响。我们调查了叶子凋落物化学成分的变化以及凋落物的分解。 Q. acutissima和F. rhynchophylla在环境CO2和富集CO2处理之间没有显示干重差异,但是它们表现出不同的碳分配模式,即较低的茎/根比(S / R)和减少的比叶面积(SLA) )在富含CO2的条件下。升高的CO2浓度会显着降低叶片凋落物中的氮浓度,同时增加木质素浓度以及碳/氮(C / N)和木质素/ N比。在CO2富集室中,与分解Q. acutissima凋落物相关的微生物生物量受到抑制,而F. rhynchophylla则没有。与F. rhynchophylla相比,富含CO2的小室中的Q. acutissima叶凋落物所含的养分浓度比周围空气小室中的低。因此,较差的垫料质量抑制了分解。

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