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生物结皮促进土壤碳固存:新环境下的新挑战

Biological Crusts to Increase Soil Carbon Sequestration: New Challenges in a New Environment.

作者信息

Duran Paola, Mora María de la Luz, Matus Francisco, Barra Patricio Javier, Jofré Ignacio, Kuzyakov Yakov, Merino Carolina

机构信息

Biocontrol Research Laboratory, Universidad de La Frontera, Temuco 4780000, Chile.

Scientific and Technological Bioresource Nucleus, Universidad de La Frontera, Temuco 4780000, Chile.

出版信息

Biology (Basel). 2021 Nov 16;10(11):1190. doi: 10.3390/biology10111190.

Abstract

The major priority of research in the present day is to conserve the environment by reducing GHG emissions. A proposed solution by an expert panel from 195 countries meeting at COP 21 was to increase global SOC stocks by 0.4% year to compensate for GHG emissions, the ' agreement. In this context, the application of biocrusts is a promising framework with which to increase SOC and other soil functions in the soil-plant continuum. Despite the importance of biocrusts, their application to agriculture is limited due to: (1) competition with native microbiota, (2) difficulties in applying them on a large scale, (3) a lack of studies based on carbon (C) balance and suitable for model parameterization, and (4) a lack of studies evaluating the contribution of biocrust weathering to increase C sequestration. Considering these four challenges, we propose three perspectives for biocrust application: (1) natural microbiome engineering by a host plant, using biocrusts; (2) quantifying the contribution of biocrusts to C sequestration in soils; and (3) enhanced biocrust weathering to improve C sequestration. Thus, we focus this opinion article on new challenges by using the specialized microbiome of biocrusts to be applied in a new environment to counteract the negative effects of climate change.

摘要

当今研究的首要重点是通过减少温室气体排放来保护环境。在第21届缔约方会议上,来自195个国家的专家小组提出的一个解决方案是,每年将全球土壤有机碳储量增加0.4%,以补偿温室气体排放,即“协议”。在这种背景下,生物结皮的应用是一个有前景的框架,可用于增加土壤-植物连续体中的土壤有机碳和其他土壤功能。尽管生物结皮很重要,但由于以下原因,它们在农业中的应用受到限制:(1)与原生微生物群竞争;(2)大规模应用存在困难;(3)缺乏基于碳平衡且适用于模型参数化的研究;(4)缺乏评估生物结皮风化对增加碳固存贡献的研究。考虑到这四个挑战,我们提出了生物结皮应用的三个观点:(1)宿主植物利用生物结皮进行自然微生物组工程;(2)量化生物结皮对土壤碳固存的贡献;(3)增强生物结皮风化以改善碳固存。因此,我们将这篇观点文章聚焦于利用生物结皮的特殊微生物组在新环境中应对气候变化负面影响的新挑战。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a524/8614986/92506cc9e010/biology-10-01190-g001.jpg

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