Arid
DOI10.1016/j.scitotenv.2022.156946
Soil salinity and its associated effects on soil microorganisms, greenhouse gas emissions, crop yield, biodiversity and desertification: A review
Haj-Amor, Zied; Araya, Tesfay; Kim, Dong-Gill; Bouri, Salem; Lee, Jaehyun; Ghilou, Wahida; Yang, Yerang; Kang, Hojeong; Jhariya, Manoj Kumar; Banerjee, Arnab; Lal, Rattan
通讯作者Haj-Amor, Z
来源期刊SCIENCE OF THE TOTAL ENVIRONMENT
ISSN0048-9697
EISSN1879-1026
出版年2022
卷号843
英文摘要Significant research has been conducted on the effects of soil salinity issue on agricultural productivity. However, limited consideration has been given to its critical effects on soil biogeochemistry (e.g., soil microorganisms, soil organic carbon and greenhouse gas (GHG) emissions), land desertification, and biodiversity loss. This article is based on synthesis of information in 238 articles published between 1989 and 2022 on these effects of soil salinity. Principal findings are as follows: (1) salinity affects microbial community composition and soil enzyme activities due to changes in osmotic pressure and ion effects; (2) soil salinity reduces soil organic carbon (SOC) content and alters GHG emissions, which is a serious issue under intensifying agriculture and global warming scenarios; (3) soil salinity can reduce crop yield up to 58 %; (4) soil salinity, even at low levels, can cause profound alteration in soil biodiversity; (5) due to severe soil salinity, some soils are reaching critical desertification status; (6) innovate mitigation strategies of soil salinity need to be approached in a way that should support the United Nations Sustainable Development Goals (UN-SDGs). Knowledge gaps still exist mainly in the effects of salinity especially, responses of GHG emissions and biodiversity. Previous experiences quantifying soil salinity effects remained small-scale, and inappropriate research methods were sometimes applied for investigating soil salinity effects. Therefore, further studies are urgently required to improve our understanding on the effects of salinity, address salinity effects in larger-scale, and develop innovative research methods.
英文关键词Soil salinity Soil microorganisms Climate change Greenhouse gas emissions Biodiversity Deserti fication
类型Review
语种英语
收录类别SCI-E
WOS记录号WOS:000826504500003
WOS关键词SALT-AFFECTED SOILS ; NITROUS-OXIDE EMISSIONS ; SEA-LEVEL RISE ; ORGANIC-CARBON ; LAND DEGRADATION ; MICROBIAL BIOMASS ; ELECTRICAL-CONDUCTIVITY ; COMMUNITY COMPOSITION ; METHANE OXIDATION ; IRRIGATION WATER
WOS类目Environmental Sciences
WOS研究方向Environmental Sciences & Ecology
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/394394
推荐引用方式
GB/T 7714
Haj-Amor, Zied,Araya, Tesfay,Kim, Dong-Gill,et al. Soil salinity and its associated effects on soil microorganisms, greenhouse gas emissions, crop yield, biodiversity and desertification: A review[J],2022,843.
APA Haj-Amor, Zied.,Araya, Tesfay.,Kim, Dong-Gill.,Bouri, Salem.,Lee, Jaehyun.,...&Lal, Rattan.(2022).Soil salinity and its associated effects on soil microorganisms, greenhouse gas emissions, crop yield, biodiversity and desertification: A review.SCIENCE OF THE TOTAL ENVIRONMENT,843.
MLA Haj-Amor, Zied,et al."Soil salinity and its associated effects on soil microorganisms, greenhouse gas emissions, crop yield, biodiversity and desertification: A review".SCIENCE OF THE TOTAL ENVIRONMENT 843(2022).
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