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Post-agricultural tropical forest regeneration shifts soil microbial functional potential for carbon and nutrient cycling

机译:农业后热带森林再生改变土壤微生物功能潜力的碳和营养循环

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摘要

Natural forest regeneration on abandoned agricultural land is an increasingly common, but understudied, landcover change in the tropics. We studied whether observed changes in microbial community composition with forest regeneration led to changes in functional potential. We used GeoChip 3.0 to measure microbial functional potential for carbon (C), nitrogen (N), phosphorous (P), and sulfur (S) cycling genes in pastures, early successional, and late successional forests in Puerto Rico. We found lower abundance and diversity of genes involved in C, N, and P in late successional forests compared to other landcover types. Soil microbial communities were functionally similar in active pastures and early successional forests. Our results suggest microbial functional potential varies with forest age, with potential implications for tropical biogeochemistry.
机译:被遗弃的农业土地上的天然森林再生是一种越来越常见的,但被解读的土地上的土地层。 我们研究了是否观察到森林再生的微生物群落组合物的变化导致功能潜力的变化。 我们使用Geochip 3.0测量牧场,早期连续和晚期连续森林中的碳(c),氮(n),磷(n),磷(p)和硫酸循环基因的微生物功能潜力。 与其他Landcover类型相比,我们发现涉及C,N和P中涉及C,N和P的基因的较低丰富和多样性。 土壤微生物社区在活性牧场和早期的森林中具有功能性相似。 我们的研究结果表明微生物功能潜力因森林时代而异,对热带生物化学有潜在的影响。

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