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Sticky dead microbes: Rapid abiotic retention of microbial necromass in soil

机译:粘性死微生物:在土壤中快速无生物保留微生物土壤

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摘要

Microbial necromass dominates soil organic matter. Recent research on necromass and soil carbon storage has focused on necromass production and stabilization mechanisms but not on the mechanisms of necromass retention. We present evidence from soil incubations with stable-isotope labeled necromass that abiotic adsorption may be more important than biotic immobilization for short-term necromass retention. We demonstrate that necromass adsorbs not only to mineral surfaces, but may also interact with other necromass. Furthermore, necromass cell chemistry alters necromass-necromass interaction, with more bacterial tracer retained when there is yeast necromass present. These findings suggest that the adsorption and abiotic interaction of microbial necromass and its functional properties, beyond chemical stability, deserve further investigation in the context of soil carbon sequestration.
机译:Microbial Necromass占据土壤有机物。 最近对土壤和土壤碳储存的研究重点是Necromass生产和稳定机制,但不对NeCromass保留的机制。 我们提出了与稳定同位素的土壤孵育的证据标记为NeCromass,即非生物吸附可能比生物固定性更重要,用于短期Necromass保留。 我们证明NeCromass不仅占矿物表面,而且也可能与其他Necromass相互作用。 此外,Necromass细胞化学改变了Necromass-necromass相互作用,当存在酵母NeCromass存在时保留更多细菌示踪剂。 这些研究结果表明,微生物乳腺和其功能性质的吸附和非生物相互作用,超越化学稳定性,在土壤碳封存的背景下存在进一步的研究。

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