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首页> 外文期刊>Soil Biology & Biochemistry >With or without trees: Resistance and resilience of soil microbial communities to drought and heat stress in a Mediterranean agroforestry system
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With or without trees: Resistance and resilience of soil microbial communities to drought and heat stress in a Mediterranean agroforestry system

机译:有或没有树木:土壤微生物社区对地中海农林美食系统的抗旱和热应激的抵抗力和抵抗力

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Soil microbial communities in Mediterranean agroecosystems experience long drought periods that are typically combined with heat and frequently interspersed with rapid rewetting events. Agroforestry systems are of growing interest and viewed as possible alternative to conventional cropping systems in the context of climate change. Our aim was to evaluate the resistance and resilience of soil microbial communities against drought with or without heat stress at different distances from the tree row in an agroforestry system as compared to a conventional cropping system. Soils were sampled at several distances from the tree row in a 21-year-old walnut agroforestry system and a contiguous conventional crop in Southern France. We simulated two cycles of drying-rewetting under controlled conditions and applied three distinct treatments: control (without stress), drought and drought combined with heat stress. We monitored microbial respiration over the incubation period. The inorganic N and microbial biomass C, N and P contents (MBC, MBN and MBP) were assessed during the drying period (resistance), just after rewetting and at the end of the experiment (resilience), while bacterial and fungal abundances were measured at the end of the resistance period. We demonstrated that an agroforestry system can induce spatial heterogeneity in soil microbial biomass and functions under control conditions. Microbial biomass and activity, soil organic matter (SOM) and mineral N levels increased on the tree row. This spatial heterogeneity pattern was preserved for soil microbial response to drought combined or not with heat. Microorganisms sampled in the middle of the interrow or in the conventional crop exhibited highest biomass resistance and lowest resilience when facing combined drought and heat stress. Soil microbial biomass resistance and resilience were similar whatever the spatial position when microorganisms had to deal with drought stress only. Our findings suggested that despite higher SOM content, microbial biomass and activity at and near the tree row, the legacy effect of the tree row did not lead to higher ecological stability under stressful climatic conditions. We also demonstrated that soil microorganisms can considerably change their stoichiometry depending on the stress treatment. Soil microorganisms showed elevated MBC:MBN, MBC:MBP and variable MBN:MBP during the resistance period. A high stoichiometric flexibility of microorganisms was observed when exposed to drought stress only, while stoichiometric changes were irreversible when exposed to combined drought and heat stress.
机译:地中海农产品系统的土壤微生物社区经历了长期干旱期,通常与热量相结合,经常穿插着快速重新润湿事件。农业剧系统的兴趣日益增长,并在气候变化的背景下尽可能地替代传统的种植系统。与传统的种植系统相比,我们的目的是评估土壤微生物群落对具有或没有热应激的土壤微生物群落的抵抗力和抵抗,或者在农业遗产系统中的不同距离。在一名21岁的核桃农业遗产系统中的树行和法国南部的连续常规作物,土壤在距离树排的几个距离上。我们在受控条件下模拟了两个干擦拭循环,并应用了三种不同的治疗方法:控制(无应力),干旱和干旱结合热应激。我们在潜伏期内监测微生物呼吸。在干燥时期(抗性)期间,在再润湿后和实验结束时进行无机N和微生物生物量C,N和P含量(MBC,MBN和MBP),测量细菌和真菌丰度在抵抗期结束时。我们证明了农林制剂系统可以在土壤微生物生物量和控制条件下诱导空间异质性。微生物生物量和活性,土壤有机物(SOM)和矿物N水平在树行上增加。这种空间异质性模式被保存用于土壤微生物反应与热量的干旱结合。在环境中的中间或在常规作物中采样的微生物表现出最高的生物质抗性和在面向混合干旱和热应激时的最低弹性。无论微生物不得不处理干旱胁迫时,土壤微生物的耐药性和弹性都相似。我们的研究结果表明,尽管SOM含量较高,微生物生物量和在树排附近和附近的活动,但是树行的遗留效果在压力气候条件下没有导致更高的生态稳定性。我们还证明土壤微生物可以根据应力处理大大改变它们的化学计量。土壤微生物显示出MBC:MBN,MBC:MBP和可变MBN:MBP期间的MBN微生物升高。当仅在暴露于干旱胁迫时观察到微生物的高化学计量柔韧性,而在暴露于组合的干旱和热应激时,化学计量变化是不可逆转的。

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