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Can tree species richness attenuate the effect of drought on organic matter decomposition and stabilization in young plantation forests?

机译:树木物种丰富度是否会减少干旱对幼苗森林有机质分解和稳定的影响?

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Changes in precipitation due to climate change are likely to influence soil organic matter (SOM) decomposition and stabilization. In forests, increased tree species diversity could modulate the effects of drought on SOM decomposition and stabilization. We addressed this issue by a decomposition study under simulated drought (through precipitation reduction at Zedelgem, Belgium) and natural drought (ORPHEE, southern France) in young experimental plantations (tree species richness 1 to 5). In Zedelgem, the study focused on tree species richness around oak and beech trees. Two tea bag indices (TBI) - decomposition rate (k) and stabilization factor (S) - were calculated by measuring the decay of green and rooibos tea in soils. Overall, TBI's were higher in Zedelgem than at ORPHEE. In Zedelgem, k increased with tree species richness under drought around oak, indicating that tree species richness modulated the effects of drought on decomposition. Under beech, k decreased with drought while no effect of tree species richness was detected. S increased with drought under both oak and beech, without any effect of tree species richness. In ORPHEE, we did not detect any tree species richness effect on both TBIs. S decreased significantly, while k was marginally reduced under drought. The higher S under drought in Zedelgem and under control in OPRHEE suggests that the carbon sequestration potential under climate change would be dependent on the environmental context. Further, in young plantations, high species richness may modulate the drought effect on SOM decomposition, but not on stabilization.
机译:由于气候变化引起的降水变化可能会影响土壤有机物(SOM)分解和稳定化。在森林中,增加的树种多样性可以调节干旱对SOM分解和稳定的影响。我们通过模拟干旱(通过Zedelgem,Belgium)和青少年实验种植园的天然干旱(Orphee,南部)(树种丰富1至5)的天然干旱(orphee)的分解研究来解决了这个问题。在Zedelgem,该研究专注于橡树和山毛榉树周围的丰富性。通过测量土壤中的绿色和rooibos茶的衰减来计算两个茶袋索引(TBI) - 分解率(k)和稳定因子。总体而言,TBI在ZedelGem的含量高于孤儿。在Zedelgem,K随着树木在橡木周围的干旱下,表明树种丰富调节干旱对分解的影响。在山毛榉下,K下降随着干旱而减少,而没有检测到树种丰富的影响。在橡木和山毛榉下的干旱增加,没有任何树木丰富的效果。在孤儿中,我们没有发现任何树种对TBIS的丰富性影响。 S明显下降,而K在干旱下略微减少。 ZEDELGEM和OPRHEE中受试者的干旱下的较高案表明,气候变化下的碳封存潜力将取决于环境背景。此外,在幼年种植园中,高种质丰富度可以调节对SOM分解的干旱影响,但不稳定。

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