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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Microscopic fungi as significant sesquiterpene emission sources
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Microscopic fungi as significant sesquiterpene emission sources

机译:作为重要的倍半萜烯微观真菌排放源

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Among the volatile organic compounds emitted by vegetation, isoprene, monoterpenes, sesquiterpenes, and their derivatives are thought to contribute to secondary organic aerosol formation. Although it is well known that microscopic fungi globally turn over vast amount of carbon by decomposing the organic matter in the soil, vegetation is considered as the exclusive source of biogenic secondary organic aerosol precursors in various atmospheric models. Secondary fungal metabolites including sesquiterpenes have been recognized as characteristic volatile organic compounds emitted by fungi. In the present study, we investigated the rates of sesquiterpene emission of microscopic fungi to establish their potential significance compared to those from vegetation. To sample the headspace of the pure culture of some common fungi, we used an aseptic flow‐through apparatus designed for solid phase microextraction in our laboratory. The identified sesquiterpenes in the headspace extracts were quantified for eight strains of microscopic fungi belonging to four different genera. Our results showed that microscopic fungi emit a considerable amount of sesquiterpenes. Based on our first estimations microscopic fungi may be considered as potentially significant sesquiterpene emission sources whose contribution to secondary organic aerosol formation may be comparable to that of vegetation.
机译:在排放的挥发性有机化合物植被、异戊二烯、单萜、倍半萜烯及其衍生品的想法二次有机气溶胶作出贡献形成。全球将大量微观真菌碳的有机物的分解土壤、植被被认为是独家的生物二次有机来源气溶胶前体在各种大气模型。继发真菌代谢物包括倍半萜烯被公认挥发性有机化合物排放特征由真菌。倍半萜烯排放的利率微观真菌建立他们的潜力从植被意义相比。样品的顶部空间纯粹的文化一些常见的真菌中,我们使用一个无菌通过仪器用于固相流量在我们实验室微萃取。倍半萜烯的顶部空间提取量化了8株微观真菌四个不同的属。表明,微观真菌释放相当倍半萜烯。估计微观真菌可能被考虑作为潜在的重要的倍半萜烯排放二次有机来源的贡献气溶胶的形成可能是可比的植被。

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