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Effects of nitrogen and phosphorus additions on soil microbial biomass and community structure in two reforested tropical forests

机译:氮和磷的添加对两种热带森林造林森林土壤微生物量和群落结构的影响

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Elevated nitrogen (N) deposition may aggravate phosphorus (P) deficiency in forests in the warm humid regions of China. To our knowledge, the interactive effects of long-term N deposition and P availability on soil microorganisms in tropical replanted forests remain unclear. We conducted an N and P manipulation experiment with four treatments: control, N addition (15?g N m?2·yr?1), P addition (15?g P m?2·yr?1), and N and P addition (15?+?15?g N and P m?2·yr?1, respectively) in disturbed (planted pine forest with recent harvests of understory vegetation and litter) and rehabilitated (planted with pine, but mixed with broadleaf returning by natural succession) forests in southern China. Nitrogen addition did not significantly affect soil microbial biomass, but significantly decreased the abundance of gram-negative bacteria PLFAs in both forest types. Microbial biomass increased significantly after P addition in the disturbed forest but not in the rehabilitated forest. No interactions between N and P additions on soil microorganisms were observed in either forest type. Our results suggest that microbial growth in replanted forests of southern China may be limited by P rather than by N, and this P limitation may be greater in disturbed forests.
机译:在温暖湿润地区,森林中氮(N)含量的升高可能加剧磷(P)的缺乏。据我们所知,热带种植森林中长期氮沉降和磷有效性对土壤微生物的相互作用影响尚不清楚。我们进行了N和P处理的四个实验:对照,N添加(15?g N m ?2 ·yr ?1 ),P添加(15?g P m ?2 ·yr ?1 ),N和P加成(15?+?15?g N和P m ?2 在中国南部受干扰的(种植有近来植被和凋落物的新近种植的松树林)和经过恢复(种植有松树,但又有自然演替归还的阔叶混交林)的·yr ?1 )。氮添加并未显着影响土壤微生物生物量,但显着降低了两种森林类型中革兰氏阴性菌PLFA的丰度。在受干扰的森林中添加磷后,微生物生物量显着增加,而在恢复森林中则没有。在两种森林类型中,均未观察到氮和磷的添加对土壤微生物的相互作用。我们的结果表明,中国南方人工造林中的微生物生长可能受到磷的限制,而不是氮的限制,而磷的限制在受干扰的森林中可能更大。

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