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基于光合速率估算腾格里沙漠内生真菌小口地星的碳收支。

Estimation of Endocarpon pusillum Hedwig carbon budget in the Tengger Desert based on its photosynthetic rate.

机构信息

State Key Laboratory of Mycology, Institute of Microbiology, Chinese Academy of Sciences, Beijing 100101, China.

出版信息

Sci China Life Sci. 2013 Sep;56(9):848-55. doi: 10.1007/s11427-013-4526-9. Epub 2013 Aug 1.

Abstract

This study investigated the photosynthetic rate of the lichen Endocarpon pusillum at the Chinese Academy of Sciences Shapotou Desert Research Station and estimated its annual contribution to the carbon budget in the ecosystem. The software SigmaPlot 10.0 with "Macro-Area below curves" was used to calculate the carbon fixation capacity of the lichen. The total carbon budget (ΣC) of the lichen was obtained by subtracting the respiratory carbon loss (ΣDR) from the photosynthetic carbon gain (ΣNP). Because water from precipitation plays an important role in photosynthesis in this ecosystem, the annual carbon budget of E. pusillum at the station was estimated based on the three-year average precipitation data from 2009 to 2011. Our results indicate that the lichen fixes 14.6 g C m(-2) annually. The results suggest that artificial inoculation of the crust lichen in the Tengger Desert could not only help reduce the sand and dust storms but also offer a significant carbon sink, fixing a total of 438000 t of carbon over the 30000 km(2) of the Tengger Desert. The carbon sink could potentially help mitigate the atmospheric greenhouse effect. Our study suggests that the carpet-like lichen E. pusillum is an excellent candidate for "Bio-carpet Engineering" of arid and semi-arid regions.

摘要

本研究调查了中国科学院沙坡头沙漠研究站地衣 Endocarpon pusillum 的光合速率,并估算了其对生态系统碳预算的年度贡献。使用 SigmaPlot 10.0 软件和“Macro-Area below curves”宏计算地衣的固碳能力。通过从光合碳增益(ΣNP)中减去呼吸碳损失(ΣDR),得出地衣的总碳预算(ΣC)。由于降水在该生态系统的光合作用中起着重要作用,因此根据 2009 年至 2011 年的三年平均降水数据估算了该站 E. pusillum 的年度碳预算。我们的研究结果表明,地衣每年固定 14.6 g C m(-2)。结果表明,在腾格里沙漠人工接种壳状地衣不仅有助于减少沙尘暴,还提供了一个重要的碳汇,在 30000 平方公里的腾格里沙漠上总共固定了 438000 吨碳。碳汇有可能有助于减轻大气温室效应。我们的研究表明,地毯状地衣 E. pusillum 是干旱和半干旱地区“生物地毯工程”的理想候选地。

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