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Bioprecipitation: a feedback cycle linking Earth history, ecosystem dynamics and land use through biological ice nucleators in the atmosphere.

机译:生物沉淀:通过大气中的生物冰核将地球历史,生态系统动态和土地利用联系起来的反馈循环。

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摘要

Landscapes influence precipitation via the water vapor and energy fluxes they generate. Biologically active landscapes also generate aerosols containing microorganisms, some being capable of catalyzing ice formation and crystal growth in clouds at temperatures near 0 degrees C. The resulting precipitation is beneficial for the growth of plants and microorganisms. Mounting evidence from observations and numerical simulations support the plausibility of a bioprecipitation feedback cycle involving vegetated landscapes and the microorganisms they host. Furthermore, the evolutionary history of ice nucleation-active bacteria such as Pseudomonas syringae supports that they have been part of this process on geological time scales since the emergence of land plants. Elucidation of bioprecipitation feedbacks involving landscapes and their microflora could contribute to appraising the impact that modified landscapes have on regional weather and biodiversity, and to avoiding inadvertent, negative consequences of landscape management.
机译:景观通过它们产生的水蒸气和能量通量影响降水。具有生物活性的景观还产生了包含微生物的气溶胶,其中一些能够在接近0摄氏度的温度下催化云中冰的形成和晶体生长。产生的沉淀物对植物和微生物的生长有利。来自观察和数值模拟的越来越多的证据支持了涉及植物景观及其所含微生物的生物沉淀反馈循环的合理性。此外,冰核活性细菌(如丁香假单胞菌)的进化史证明,自陆地植物出现以来,它们已成为地质时间尺度上这一过程的一部分。阐明涉及景观及其微生物区系的生物降水反馈可能有助于评估改良景观对区域天气和生物多样性的影响,并避免景观管理的无意负面影响。

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