Department of Forestry and Natural Resources, Purdue University, West Lafayette, IN, 47907, USA.
School of Agricultural, Forest and Environmental Sciences, Clemson University, Clemson, SC, 29634, USA.
New Phytol. 2013 Oct;200(1):122-133. doi: 10.1111/nph.12376. Epub 2013 Jul 4.
Together, climate and litter quality strongly regulate decomposition rates. Although these two factors and their interaction have been studied across species in continent-scale experiments, few researchers have studied how labile and recalcitrant compounds interact to influence decomposition, or the climate sensitivity of decomposition, within a litter type. Over a period of 3 yr, we studied the effects of warming and altered precipitation on mass loss and compound-specific decomposition using two litter types that possessed similar heteropolymer chemistry, but different proportions of labile and recalcitrant compounds. Climate treatments immediately affected the mass loss of the more recalcitrant litter, but affected the more labile litter only after 2 yr. After 3 yr, although both litter types had lost similar amounts of mass, warming (c. 4°C) and supplemental precipitation (150% of ambient) together accelerated the degradation of alkyl-carbon and lignin only in the more recalcitrant litter, highlighting the role of initial litter quality in determining whether the chemistry of litter residues converges or diverges under different climates. Our finding that labile compounds in litter reduce the climate sensitivity of mass loss and the decomposition of recalcitrant matrix is novel. Our results highlight the potential for litter quality to regulate the effect of climatic changes on the sequestration of litter-derived carbon.
气候和凋落物质量共同强烈调节分解速率。尽管这些两个因素及其相互作用已在大陆尺度的实验中研究了不同物种,但很少有研究人员研究易变和难分解化合物如何相互作用影响分解,或分解的气候敏感性,在一个凋落物类型内。在 3 年的时间里,我们使用两种具有相似杂多聚合物化学性质但易变和难分解化合物比例不同的凋落物类型,研究了升温和改变降水对质量损失和化合物特异性分解的影响。气候处理立即影响更难分解的凋落物的质量损失,但仅在 2 年后才影响更易分解的凋落物。3 年后,尽管两种凋落物都失去了相似数量的质量,但升温(约 4°C)和补充降水(比环境多 150%)一起仅加速了更难分解的凋落物中烷基碳和木质素的降解,突出了初始凋落物质量在决定凋落物残体化学物质在不同气候下是趋同还是趋异方面的作用。我们发现凋落物中的易变化合物降低了质量损失和难分解基质分解的气候敏感性,这是新颖的。我们的结果强调了凋落物质量调节气候变化对凋落物衍生碳固存影响的潜力。