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Litter Decomposition in a California Annual Grassland: Interactions Between Photodegradation and Litter Layer Thickness

机译:加利福尼亚州年度草原的凋落物分解:光降解与凋落物层厚度之间的相互作用

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In annual grasslands that experience a mediterranean-type climate, the synchrony between plant senescence and peak solar radiation over summer results in high litter sun exposure. We examined the decomposition of both shaded and sun-exposed litter over summer and inferred the effects of photodegradation from changes in mass loss and litter chemistry. The carry-over effects of summer litter exposure on wet season decomposition were also assessed, and the attenuation of photodegradation with litter layer thickness was used to estimate the proportion of grass litter lignin susceptible to photodegradation under different treatments of a factorial global change experiment. Over summer, mass loss from grass and forb litter exposed to ambient sunlight ranged from 8% to 10%, whereas lignin decreased in grass litter by approximately 20%. After one year of decomposition, mass losses from grass leaves exposed to sunlight over summer were more than double the mass losses from summer-shaded leaves. When shade litter layer thickness was varied, mass losses over summer for all treatments were also approximately 8%; however, lignin decreased significantly only in the low shade treatments (0-64 g mpo of shade litter). Aboveground production of annual grasses nearly quadrupled in response to the combined effects of N addition, elevated atmospheric CO, increased precipitation and warming. The estimated proportion of grass litter lignin experiencing full photodegradation ranged from 100% under ambient conditions to 31-62% in plots receiving the combined global change treatments. These results reveal an important role of sun exposure over summer in accelerating litter decomposition in these grasslands and provide evidence that future changes in the quantity of litter deposition may modulate the influence of photodegradation integrated across the litter layer.
机译:在经历了地中海式气候的一年生草地上,夏季植物衰老与太阳峰值辐射之间的同步性导致了凋落的日光照射。我们检查了夏季阴影和暴露在阳光下的垃圾的分解情况,并根据质量损失和垃圾化学性质的变化推断了光降解的影响。还评估了夏季凋落物暴露对湿季分解的残留影响,并使用分解层厚度对光降解的衰减作用来估算在阶乘全局变化实验的不同处理下易受光降解的草屑木质素的比例。在夏季,暴露于环境阳光下的草和草屑的质量损失范围为8%至10%,而草屑中的木质素减少了约20%。经过一年的分解,夏季暴露于阳光下的草叶的质量损失是夏季阴影叶片的质量损失的两倍以上。当遮阳垫层厚度变化时,所有处理在整个夏季的质量损失也约为8%。然而,木质素仅在低阴影处理下(0-64 g mpo的凋落物)显着下降。由于添加氮,增加大气中的CO,增加的降水和变暖的综合作用,一年生禾草的地上产量几乎增加了四倍。草屑木质素经历完全光降解的估计比例在环境条件下为100%,在接受综合全球变化处理的地块中为31-62%。这些结果揭示了夏季阳光暴露在加速这些草地的凋落物分解中的重要作用,并提供了证据,表明将来凋落物沉积量的变化可能会调节整个凋落物层中光降解的影响。

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