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Soil respiration in poplar plantations in northern China at different forest ages

机译:不同林龄的中国北方杨树人工林的土壤呼吸

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Aims: This study aims to test the effects of forest age on soil respiration in poplar ecosystems in northern China and to separate the contributions of root respiration (Rr) and soil microbes to the total soil respiration (Rs). Methods: Rs in three poplar forests (5, 10, and 15 years old) were measured using an LI-6400-09 soil chamber connected to an LI-6400 portable infrared gas analyzer during the growing seasons in 2007 and 2008. Root respiration was measured using the root excision method. The soil micro-organisms were quantified using the dilution-plate method. Results: The results show that Rs was the highest in the 5-year-old forest and lowest in 15-year-old forest. The contribution of Rr to Rs ranged from 29.4 to 81.0%. Rr/Rs tended to be significantly higher in the 15-year-old forest than that in the younger forests; but Rr was the highest in the 5-year-old forest. Temporal variation in Rs can be largely accounted by fine-root biomass (R=0.718), while soil N was significantly negatively correlated with Rs (R=-0.646). Conclusions: Rs, Rr and Rr/Rs vary significantly with the forest age. The lower Rs in the older forests increased their carbon use efficiency. Underground factors, dominated by fine-root biomass, affect Rs, Rr and Rr/Rs substantially. Soil microbial community structure is a particularly important underground factor.
机译:目的:本研究旨在测试森林年龄对中国北方杨树生态系统中土壤呼吸的影响,并区分根呼吸(Rr)和土壤微生物对土壤总呼吸(Rs)的贡献。方法:在2007年和2008年的生长季节中,使用连接到LI-6400便携式红外气体分析仪的LI-6400-09土壤箱测量了三个杨树森林(5、10和15岁)的Rs。使用根切除法测量。使用稀释板法对土壤微生物进行定量。结果:结果表明,Rs在5岁的森林中最高,在15岁的森林中最低。 Rr对Rs的贡献在29.4%至81.0%之间。在15岁的森林中,Rr / Rs倾向于比年轻的森林中的Rr / Rs显着更高;但是Rr在5岁的森林中是最高的。 Rs的时间变化主要由细根生物量引起(R = 0.718),而土壤氮与Rs显着负相关(R = -0.646)。结论:Rs,Rr和Rr / Rs随森林年龄而显着变化。较老的森林中较低的Rs增加了其碳利用效率。以细根生物量为主导的地下因素会严重影响Rs,Rr和Rr / Rs。土壤微生物群落结构是一个特别重要的地下因素。

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