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Sensitive responders among bacterial and fungal microbiome to pyrogenic organic matter (biochar) addition differed greatly between rhizosphere and bulk soils

机译:细菌和真菌微生物组对热生有机质(生物炭)添加的敏感反应在根际土壤和散装土壤之间差异很大

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摘要

Sensitive responses among bacterial and fungal communities to pyrogenic organic matter (PyOM) (biochar) addition in rhizosphere and bulk soils are poorly understood. We conducted a pot experiment with manure and straw PyOMs added to an acidic paddy soil, and identified the sensitive “responders” whose relative abundance was significantly increased/decreased among the whole microbial community following PyOM addition. Results showed that PyOMs significantly (p < 0.05) increased root growth, and simultaneously changed soil chemical parameters by decreasing soil acidity and increasing biogenic resource. PyOM-induced acidity and biogenic resource co-determined bacterial responder community structure whereas biogenic resource was the dominant parameter structuring fungal responder community. Both number and proportion of responders in rhizosphere soil was larger than in bulk soil, regardless of PyOM types and microbial domains, indicating the microbial community in rhizosphere soil was sensitive to PyOM addition than bulk soil. The significant increased root biomass and length caused by PyOM addition, associated with physiological processes, e.g. C exudates secretion, likely favored more sensitive responders in rhizosphere soil than in bulk soil. Our study identified the responders at fine taxonomic resolution in PyOM amended soils, improved the understanding of their ecological phenomena associated with PyOM addition, and examined their interactions with plant roots.
机译:细菌和真菌群落之间对根际和块状土壤中热解有机质(PyOM)(生物炭)添加的敏感反应知之甚少。我们进行了盆栽试验,将粪便和秸秆PyOMs添加到酸性稻田中,并确定了敏感的“响应者”,其相对丰度在添加PyOM后在整个微生物群落中显着增加/减少。结果表明,PyOMs显着(p <0.05)增加了根的生长,并同时通过降低土壤酸度和增加生物资源来改变土壤化学参数。 PyOM诱导的酸度和生物资源共同决定了细菌反应者的群落结构,而生物资源是构成真菌反应者群落的主要参数。无论PyOM类型和微生物域如何,根际土壤中响应者的数量和比例均大于块状土壤,这表明根际土壤中的微生物群落对PyOM添加的敏感性高于块状土壤。由PyOM添加引起的根生物量和长度显着增加,与生理过程有关,例如C分泌物的分泌物,在根际土壤中可能比在散装土壤中更敏感。我们的研究确定了在PyOM改良土壤中具有良好分类学分辨率的响应者,增进了对与PyOM添加相关的生态现象的理解,并检查了它们与植物根的相互作用。

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