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Bacteria constrain the fungal growth response to drying-rewetting

机译:细菌约束真菌生长反应对烘干重新润湿

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摘要

Bacteria and fungi are the two principal decomposer groups in soils, determining rates of biogeochemical cycling. Rewetting of dry soils induces enormous dynamics in biogeochemistry. Bacteria have been shown to exhibit large variation in growth over time upon drying-rewetting (D/RW), however, in studies to date, fungal growth has shown limited responsiveness. Here we investigated whether fungal growth responses to D/RW are constrained by competition with bacteria by using the bactericide bronopol to suppress bacterial growth during D/RW. We examined responses for two different soils, previously shown to exhibit different bacterial growth responses to D/RW. Experimental elimination of bacterial growth lead to increased fungal growth in both soils upon D/RW, indicating a competitive release of fungal growth when bacteria were suppressed. We also observed a pronounced fungal growth response to D/RW for one of the soils, which has not been previously reported. In this case, even when rewetting with water (i.e. without bacterial suppression), fungal growth increased to reach rates 10-times greater than in the moist control soil. The peak in fungal growth coincided with a secondary peak of respiration, revealing a functional importance of fungi for C-cycling during D/RW. The decline in fungal growth following this peak also coincided with the onset of exponential bacterial growth, further strengthening evidence for a negative correlation between bacteria and fungi, suggesting that competition with bacteria can constrain the fungal growth response to D/RW.
机译:细菌和真菌是土壤中的两个主要分解基团,确定生物地球化学循环速率。干燥土壤的再润湿诱导生物地球化学的巨大动态。已经证明细菌在干预(D / RW)时随着时间的推移表现出大的生长变异,然而,在迄今为止的研究中,真菌生长表明了有限的响应性。在这里,我们研究了对D / RW的真菌生长响应是否受细菌的竞争通过使用杀菌金属杀菌剂在D / RW期间抑制细菌生长。我们检查了两种不同土壤的反应,以前表现出对D / RW的不同细菌生长反应。实验消除细菌生长导致D / RW两种土壤中的真菌生长增加,表明当抑制细菌时,真菌生长的竞争释放。我们还观察到尚未报道的土壤的D / RW的明显真菌生长反应。在这种情况下,即使在用水中重新擦拭(没有细菌抑制),真菌生长也会增加,达到比在湿润对照土壤中的10倍。真菌生长中的峰值与呼吸的​​二次峰值吻合,揭示了在D / RW期间C循环的真菌功能重要性。这种峰后的真菌生长的下降也恰逢指数细菌生长,进一步加强了细菌和真菌之间的负相关的证据,表明与细菌的竞争会限制对D / RW的真菌生长反应。

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