Arid
DOI10.1016/j.still.2020.104799
Overcoming field barriers to restore dryland soils by cyanobacteria inoculation
Roman, J. R.; Chamizo, S.; Roncero-Ramos, B.; Adessi, A.; De Philippis, R.; Canton, Y.
通讯作者Roman, JR (corresponding author), Univ Almeria, Agron Dept, Almeria 04120, Spain. ; Roman, JR (corresponding author), Univ Almeria, Ctr Invest Colecc Cient, Univ Almeria CECOUAL, Almeria 04120, Spain.
来源期刊SOIL & TILLAGE RESEARCH
ISSN0167-1987
EISSN1879-3444
出版年2021
卷号207
英文摘要Cyanobacteria inoculation to promote biocrust formation and improve soil properties has shown positive results in indoor studies, but limited success when applied under field conditions. Successful results of application of this technology in the field have been only found in desert sand dunes in China. Therefore, further development of this technique is necessary to extend its applicability to other soil types and regions. In this study, we inoculated a consortium of three N-fixing native cyanobacteria (Nostoc commune, Scytonema hyalinum and Tolypothrix distorta) on degraded soils from three semiarid study sites in south-eastern Spain with differing soil properties and soil development. After two years, chlorophyll a spectral absorption and albedo in inoculated and control plots were similar. Consequently, a second experiment was conducted to test the effectiveness of progressive cyanobacterial preacclimation before inoculation as well as the use of habitat amelioration techniques, consisting of covering the inoculated soils with a vegetal fiber mesh or a plastic grid, to improve cyanobacteria performance. Our results showed that: 1) hardening these cyanobacterial strains did not enhance their colonization capability, and 2) covering inoculated soils with a vegetal mesh did promote soil colonization by cyanobacteria, as shown by higher chlorophyll a soil content and Chla spectral absorption and lower albedo than in the uncovered plots. Moreover, it promoted the presence of more condensed, tightly-bound exopolysaccharides (EPS) and higher molecular weight molecules in the more soluble loosely-bound EPS fraction, both of which could be involved in the improvement of soil aggregation. Finally, higher abundance of xylose and galactose was also found in this treatment, likely indicating a greater development of the induced biocrusts. The results of this study show that direct soil inoculation with cyanobacteria, whether subjected to desiccation hardening or not, did not promote the artificial formation of biocrusts in the field. However, more positive results were found when the inoculated soils were covered with a vegetal mesh to help cyanobacteria cope with abiotic stress and soil erosion. Therefore, developing diversified efficient habitat amelioration strategies might be key in the successful application of this restoration technique in the field.
英文关键词N-fixing cyanobacteria Biocrusts Restoration Hardening Habitat amelioration Drylands
类型Article
语种英语
收录类别SCI-E
WOS记录号WOS:000603542400010
WOS关键词POLYSACCHARIDIC MATRIX ; ENVIRONMENTAL-FACTORS ; NOSTOC-COMMUNE ; ALGAL CRUSTS ; BIOCRUSTS ; EXOPOLYSACCHARIDES ; DESERTIFICATION ; DESICCATION ; EROSION
WOS类目Soil Science
WOS研究方向Agriculture
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/348209
作者单位[Roman, J. R.; Chamizo, S.; Roncero-Ramos, B.; Canton, Y.] Univ Almeria, Agron Dept, Almeria 04120, Spain; [Roman, J. R.; Chamizo, S.; Canton, Y.] Univ Almeria, Ctr Invest Colecc Cient, Univ Almeria CECOUAL, Almeria 04120, Spain; [Roncero-Ramos, B.] Univ Liege, InBios Ctr Prort Engn, Liege, Belgium; [Adessi, A.; De Philippis, R.] Univ Florence, Dept Agr Food Environm & Forestry DAGRI, Via Maragliano 77, I-50144 Florence, Italy
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GB/T 7714
Roman, J. R.,Chamizo, S.,Roncero-Ramos, B.,et al. Overcoming field barriers to restore dryland soils by cyanobacteria inoculation[J],2021,207.
APA Roman, J. R.,Chamizo, S.,Roncero-Ramos, B.,Adessi, A.,De Philippis, R.,&Canton, Y..(2021).Overcoming field barriers to restore dryland soils by cyanobacteria inoculation.SOIL & TILLAGE RESEARCH,207.
MLA Roman, J. R.,et al."Overcoming field barriers to restore dryland soils by cyanobacteria inoculation".SOIL & TILLAGE RESEARCH 207(2021).
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