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Litter priming and trenching greatly affect soil respiration in a mature subtropical evergreen broadleaf forest in Southwestern China

机译:凋落物引发和挖沟极大地影响了中国西南部成熟的亚热带常绿阔叶林的土壤呼吸

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Global warming will stimulate primary production, which is likely to drive shifts in litter production and lead to an increase in carbon (C) inputs to soil. However, the effects of such changes on soil C cycling in subtropical forests remain largely unknown. In a typical subtropical evergreen broadleaved forest in Southwestern China we conducted a controlled experiment that included addition and removal of litter, and trenching. Annual soil respiration in control, trenching, litter addition, and litter removal treatments were 1083.47, 521.50, 1363.30, and 896.15 g C m(-2) y(-1), respectively. Soil respiration was significantly related to temperature in all treatments, but was independent of soil moisture, except in control plots. Q(10) values in control, trenching, litter addition, and litter removal treatments were 3.46, 6.36, 2.72, and 4.85, respectively. Litter addition reduced Q(10), but litter removal and trenching increased it. Average heterotrophic soil respiration produced C in the amount equivalent to 48% of the efflux from the soil. Soil respiration in the litter addition treatment was 25% higher than in the control treatment; this increase is about 8% larger than the 17% decrease in soil respiration caused by litter removal. This implies a priming effect on soil respiration. Our results suggest that increases in litter production in response to human disturbances and global warming could have rapid and important consequences on soil respiration in subtropical evergreen broadleaved forests.
机译:全球变暖将刺激初级生产,这可能会推动垃圾产量的变化并导致向土壤的碳(C)投入增加。然而,这种变化对亚热带森林土壤碳循环的影响仍然未知。在中国西南地区典型的亚热带常绿阔叶林中,我们进行了一项受控实验,包括添加和清除垃圾,挖沟。在控制,挖沟,添加垫料和清除垫料的处理中,年度土壤呼吸分别为1083.47、521.50、1363.30和896.15 g C m(-2)y(-1)。在所有处理中,土壤呼吸均与温度显着相关,但除对照样地外,与土壤湿度无关。对照,挖沟,添加垃圾和清除垃圾的处理中的Q(10)值分别为3.46、6.36、2.72和4.85。凋落物的添加减少了Q(10),但清除凋落物和挖沟增加了它。平均异养土壤呼吸产生的C量相当于土壤外排量的48%。凋落物添加处理中的土壤呼吸比对照处理高25%。这种增加比去除垃圾引起的土壤呼吸减少17%大约大8%。这暗示着对土壤呼吸的启动作用。我们的结果表明,响应于人类干扰和全球变暖,枯枝落叶产量的增加可能对亚热带常绿阔叶林的土壤呼吸产生快速而重要的影响。

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