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首页> 外文期刊>Agricultural and Forest Meteorology >Long-term responses of plant growth, soil microbial communities and soil enzyme activities to elevated CO2 and neighbouring plants
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Long-term responses of plant growth, soil microbial communities and soil enzyme activities to elevated CO2 and neighbouring plants

机译:植物生长,土壤微生物群落和土壤酶活性对二氧化碳和邻近植物升高的长期响应

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Tree neighbourhoods can complicate the prediction of plant belowground responses to elevated CO2. We studied the effects of elevated CO2 on the root traits, soil microbial communities, and microbial extracellular enzyme activities in the rhizospheres of Abies faxoniana saplings grown alone or with different neighbouring species. A. faxoniana (alone), A. faxoniana grown with dwarf bamboo (Fargesia rufa), and A. faxoniana grown with biocrusts were exposed to ambient or to CO2-enriched air (ambient + 350 mu mol mol(-1)) for six years. The CO2 x neighbourhood interaction significantly affected A. faxoniana saplings growth, soil microbial communities, and soil enzyme activities. Elevated CO2 had relatively little effect on plant and microbial biomass and phospholipid fatty acid (PLFA) profiles in saplings grown alone. However, increased ectomycorrhizal colonization was observed in the roots of these saplings. Results suggested that the growth of saplings grown with biocrusts under elevated CO2 conditions was obtained by the enhanced soil microbial characteristics, whereas the positive effects of elevated CO2 on ectomycorrhizal fungi colonization in saplings grown alone could not delay or alleviate the progressive nitrogen (N) limitation as is evidenced by similar plant biomass under elevated and ambient CO2 treatments. In contrast, elevated CO2 significantly decreased the growth of A. faxoniana in the presence of dwarf bamboo, and this reduction was accompanied by decreased soil and leaf N concentrations, microbial biomass carbon (C) and N, labile C, and total PLFA. We propose that the depletion of the C pool and the reduction in the soil microbial metabolic activities in saplings grown with dwarf bamboo may limit the rates of decomposition to release nutrients from organic matter for plant growth. These results suggest that neighbouring plants have belowground feedback that potentially contributes to plant performance. On the other hand, the results of the present study also showed that the responses of soil organic C to elevated CO2 are different in the presence and absence of neighbours and dependent on neighbour identity. Only mesocosms with biocrust had a tendency to maintain more soil organic C by increased soil microbial community abundance. Our results also highlight the value of studying elevated CO2 effects on aboveground-belowground associations to improve the prediction of subalpine ecosystem functioning under climate changes. (C) 2015 Elsevier B.V. All rights reserved.
机译:树木邻里会使对CO 2升高的地下植物响应的预测变得复杂。我们研究了CO 2浓度升高对单独或与其他邻近物种一起生长的冷杉冷杉幼树根际性状,土壤微生物群落和微生物胞外酶活性的影响。将A. Faxoniana(单独),用矮竹(Fargesia rufa)生长的A. Faxoniana和用生物结皮生长的A. Faxoniana暴露于环境或富含CO2的空气中(环境+ 350μmol mol(-1))年份。 CO 2 x邻域相互作用显着影响了拟南芥幼苗的生长,土壤微生物群落和土壤酶活性。二氧化碳浓度升高对单独生长的幼树中植物和微生物生物量以及磷脂脂肪酸(PLFA)分布的影响相对较小。然而,在这些树苗的根部观察到外生菌根定植增加。结果表明,通过提高土壤微生物特性,可以在高CO2条件下用生物结皮生长的树苗生长,而CO2升高对单独生长的树苗中外生菌根真菌定殖的积极影响不能延迟或减轻进行性氮(N)的限制。正如在升高的和周围的二氧化碳处理下类似植物生物量所证明的那样。相反,在矮竹存在下,升高的CO2显着降低了拟南芥的生长,并且这种减少伴随着土壤和叶片氮含量,微生物生物量碳(C)和氮,不稳定碳和总PLFA的降低。我们认为,矮矮竹生长的幼树中碳库的消耗和土壤微生物代谢活动的减少可能会限制分解速率,以从植物生长的有机质中释放出养分。这些结果表明,邻近的工厂具有地下反馈,这些反馈可能有助于提高工厂的绩效。另一方面,本研究的结果还表明,在有无邻居的情况下,土壤有机碳对CO 2升高的反应是不同的,并且取决于邻居的身份。只有具有生物结壳的中观通过增加土壤微生物群落丰度而倾向于保持更多的土壤有机碳。我们的研究结果还强调了研究CO2对地上-地下关联的影响的价值,以提高对气候变化下亚高山生态系统功能的预测。 (C)2015 Elsevier B.V.保留所有权利。

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