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Effects of Artificial Defoliation of Pines on the Structure and Physiology of the Soil Fungal Community of a Mixed Pine-Spruce Forest

机译:松树人工落叶对松-云杉混交林土壤真菌群落结构和生理的影响

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摘要

Loss of photosynthetic area can affect soil microbial communities by altering the availability of fixed carbon. We used denaturing gradient gel electrophoresis (DGGE) and Biolog filamentous-fungus plates to determine the effects of artificial defoliation of pines in a mixed pine-spruce forest on the composition of the fungal community in a forest soil. As measured by DGGE, two fungal species were affected significantly by the defoliation of pines (P < 0.001); the frequency of members of the ectomycorrhizal fungus genus Cenococcum decreased significantly, while the frequency of organisms of an unidentified soil fungus increased. The decrease in the amount of Cenococcum organisms may have occurred because of the formation of extensive hyphal networks by species of this genus, which require more of the carbon fixed by their host, or because this fungus is dependent upon quantitative differences in spruce root exudates. The defoliation of pines did not affect the overall composition of the soil fungal community or fungal-species richness (number of species per core). Biolog filamentous-fungus plate assays indicated a significant increase (P < 0.001) in the number of carbon substrates utilized by the soil fungi and the rate at which these substrates were used, which could indicate an increase in fungal-species richness. Thus, either small changes in the soil fungal community give rise to significant increases in physiological capabilities or PCR bias limits the reliability of the DGGE results. These data indicate that combined genetic and physiological assessments of the soil fungal community are needed to accurately assess the effect of disturbance on indigenous microbial systems.
机译:光合面积的损失会通过改变固定碳的可用性而影响土壤微生物群落。我们使用变性梯度凝胶电泳(DGGE)和Biolog丝状真菌板来确定松树-云杉混交林中松树的人工脱叶对森林土壤中真菌群落组成的影响。通过DGGE测得,两种真菌受到松树落叶的影响显着(P <0.001)。外生菌根真菌属Cenococcum成员的频率显着降低,而未鉴定的土壤真菌的生物体频率增加。由于该属菌种形成了广泛的菌丝网络,可能需要减少其菌落的数量,或者由于其真菌依赖于云杉根分泌物的数量差异,因此导致菌球菌数量的减少。松树的落叶不会影响土壤真菌群落的整体组成或真菌物种的丰富度(每个核心的物种数)。 Biolog丝状真菌平板测定表明,土壤真菌利用的碳底物数量和使用这些底物的速率显着增加(P <0.001),这可能表明真菌物种的丰富度增加。因此,土壤真菌群落的微小变化都会引起生理能力的显着提高,或者PCR偏倚会限制DGGE结果的可靠性。这些数据表明,需要对土壤真菌群落进行遗传和生理综合评估,以准确评估干扰对本地微生物系统的影响。

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