The living forms of Microcoleus vaginatus and their contributions to the aggregate structure of biocrusts

Author:

Xiao Jingshang1,Lan Shubin2,Farías María E3,Qian Long1,Xia Ling1,Song Shaoxian1,Wu Li12ORCID

Affiliation:

1. School of Resources and Environmental Engineering, Wuhan University of Technology , Wuhan 430072, China

2. Key Laboratory of Vegetation Ecology of the Ministry of Education, Institute of Grassland Science/School of Environment, Northeast Normal University , Changchun 130024, China

3. Laboratorio de Investigaciones Microbiológicas de Lagunas Andinas (LIMLA), PROIMI Planta Piloto de Procesos Industriales Microbiológicos, Av. Belgrano y Pasaje Caseros, 4000 CONICET Consejo Nacional de Investigaciones Científicas y Técnicas , 4000 Tucumán, Argentina

Abstract

Abstract Microcoleus vaginatus has been regarded as the important contributor for biocrust formation and ecological services. However, little is known about its living forms in biocrusts, and whether the living form is related to biocrust structure. Therefore, in this study, natural biocrusts collected from the Gurbantunggut Desert were divided into different aggregate/grain fractions, aiming at investigating the living forms of M. vaginatus in biocrusts at fine scale, and exploring its roles in aggregate structure and ecological functions of biocrusts. The results showed that two distinct living forms of M. vaginatus had been identified from the biocrusts. The non-bundling M. vaginatus was mainly distributed in the fractions of > 0.5 mm, forming aggregate structure by cementing sand particles firmly; while the bundling M. vaginatus, distributed mainly among the free sand particles with diameter < 0.5 mm, and easily migrated up to biocrust surface after hydration. Furthermore, the aggregate structure formed by non-bundling M. vaginatus supported a higher biomass, nutrient contents, and enzyme activities. Altogether, our results suggest that the strong migrating ability of bundling M. vaginatus contributes to the environmental adaptation and light resource acquirement, while non-bundling M. vaginatus acts as the constructor of the aggregate structure in biocrusts.

Funder

National Natural Science Foundation of China

Publisher

Oxford University Press (OUP)

Subject

Applied Microbiology and Biotechnology,Ecology,Microbiology

Reference66 articles.

1. Microbialite formation in southern Sinai (Egypt);Basso;Facies,2013

2. Soil microstructure in soils of the Colorado Plateau: the role of the cyanobacterium microcoleus vaginatus;Belnap,1993

3. Biological Soil Crusts as an Organizing Principle in Drylands

4. Nitrogen fixation in biological soil crusts from southeast Utah, USA;Belnap;Biol Fertil Soils,2002

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