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  • Soil bacterial networks are less stable under drought than fungal . . .
    Our results show that bacterial and fungal networks differ significantly in key properties that might inform on their stability under disturbance: bacterial networks show more
  • Soil bacterial networks are less stable under drought than fungal networks
    Here, we show in grassland mesocosms that drought promotes destabilising properties in soil bacterial, but not fungal, co-occurrence networks, and that changes in bacterial communities
  • Soil bacterial networks are less stable under drought than fungal . . .
    We show that soil bacterial and fungal networks have different properties and respond differently to drought, with drought having a much stronger impact on bacterial than on fungal networks
  • Soil bacterial networks are less stable under drought than fungal networks
    We show that soil bacterial and fungal networks have different properties and respond differently to drought, with drought having a much stronger impact on bacterial than on fungal networks
  • Soil bacterial networks are less stable under drought than fungal . . .
    Drought conditions can alter the composition of soil microbial communities, but the effects of drought on network properties have not been tested Here, de Vries and colleagues show that co-occurrence networks are destabilised under drought for bacteria but not fungi
  • Nature子刊:干旱条件下土壤细菌网络的稳定性不如真菌网络-CSDN博客
    本文结果表明 干旱影响土壤微生物群落,作为反馈土壤微生物群落也会影响地上部植被,最终地上地下协同抵抗干旱。 这一发现为地上地下协同抗干扰的研究提供新的见解。 土壤中有着及其丰富的微生物群落,并且对土壤功能有着重要影响。 对于干旱等的极端气候条件,高度多样化的微生物群落是如何应对并恢复群落功能,是研究土壤功能的一个重要挑战。 许多研究表明,极端气候,如干旱,往往会改变生态过程和植被演替,并对土壤微生物群落也产生一定的影响。 研究表明,不同组成的微生物群落对干旱的反应不同,通常土壤真菌群落比细菌群落更稳定,但是适应性较差。 此外,受干旱影响的植被对土壤真菌和细菌群落的恢复有着不同的调节作用,例如 植物在干旱条件下,更多的减少对细菌群落的碳源供应,而不是真菌群落。
  • Soil De bacterial networks are less stable under drought than fungal . . .
    We expected bacterial as well as fungal community composition to influence the abundance of We hypothesised in the denitrification they perform sequential abundance process4
  • Soil microbial composition, diversity, and network stability in . . .
    The co-occurrence network analysis revealed that, in response to drought, the intercropping system produced larger, more complex, and more stable soil fungal networks and less stable bacterial networks compared to the monoculture system, even though the microbial diversity was unaffected by the cropping system used





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