Literature DB >> 30128756

Impact of soil salinity on the microbial structure of halophyte rhizosphere microbiome.

Salma Mukhtar1, Babur Saeed Mirza2, Samina Mehnaz1, Muhammad Sajjad Mirza3, Joan Mclean4, Kauser Abdulla Malik5.   

Abstract

The rhizosphere microbiome plays a significant role in the life of plants in promoting plant survival under adverse conditions. However, limited information is available about microbial diversity in saline environments. In the current study, we compared the composition of the rhizosphere microbiomes of the halophytes Urochloa, Kochia, Salsola, and Atriplex living in moderate and high salinity environments (Khewra salt mines; Pakistan) with that of the non-halophyte Triticum. Soil microbiomes analysis using pyrosequencing of 16S rRNA gene indicated that Actinobacteria were dominant in saline soil samples whereas Proteobacteria predominated in non-saline soil samples. Firmicutes, Acidobacteria, Bacteriodetes and Thaumarchaeota were predominant phyla in saline and non-saline soils, whereas Cyanobacteria, Verrucomicrobia, Gemmatimonadetes and the unclassified WPS-2 were less abundant. Sequences from Euryarchaeota, Ignavibacteriae, and Nanohaloarchaeota were identified only from the rhizosphere of halophytes. Dominant halophilic bacteria and archaea identified in this study included Agrococcus, Armatimonadetes gp4, Halalkalicoccus, Haloferula and Halobacterium. Our analysis showed that increases in soil salinity correlated with significant differences in the alpha and beta diversity of the microbial communities across saline and non-saline soil samples. Having a complete inventory of the soil bacteria from different saline environments in Pakistan will help in the discovery of potential inoculants for crops growing on salt-affected land.

Entities:  

Keywords:  16S rRNA gene; Haloarchaea; Halophilic bacteria; Pyrosequencing; Soil microbiome; Soil salinity

Mesh:

Substances:

Year:  2018        PMID: 30128756     DOI: 10.1007/s11274-018-2509-5

Source DB:  PubMed          Journal:  World J Microbiol Biotechnol        ISSN: 0959-3993            Impact factor:   3.312


  42 in total

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4.  Culture independent molecular analysis of bacterial communities in the mangrove sediment of Sundarban, India.

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  14 in total

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Review 2.  Rhizosphere Microbiome Cooperations: Strategies for Sustainable Crop Production.

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3.  Influence of Peanut, Sorghum, and Soil Salinity on Microbial Community Composition in Interspecific Interaction Zone.

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6.  Comparative Study of the Rhizosphere and Root Endosphere Microbiomes of Cholistan Desert Plants.

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Review 7.  A rather dry subject; investigating the study of arid-associated microbial communities.

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8.  Long-Term Amelioration Practices Reshape the Soil Microbiome in a Coastal Saline Soil and Alter the Richness and Vertical Distribution Differently Among Bacterial, Archaeal, and Fungal Communities.

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9.  Root-Associated Bacterial Community Shifts in Hydroponic Lettuce Cultured with Urine-Derived Fertilizer.

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