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1.
World J Microbiol Biotechnol ; 34(9): 136, 2018 Aug 20.
Artigo em Inglês | MEDLINE | ID: mdl-30128756

RESUMO

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.


Assuntos
Archaea/classificação , Bactérias/classificação , Microbiota/fisiologia , Salinidade , Plantas Tolerantes a Sal/microbiologia , Microbiologia do Solo , Solo/química , Archaea/genética , Bactérias/genética , DNA Bacteriano , Ecossistema , Metagenômica , Microbiota/genética , Paquistão , Filogenia , Raízes de Plantas/microbiologia , RNA Ribossômico 16S/genética , Rizosfera , Plantas Tolerantes a Sal/classificação
2.
Can J Microbiol ; 64(8): 567-579, 2018 Aug.
Artigo em Inglês | MEDLINE | ID: mdl-29701484

RESUMO

Salinity is one of the major abiotic stresses; a total of 3% of the world's land mass is affected by salinity. Approximately 6.3 million hectares of land in Pakistan is affected by salinity to varying degrees, and most of the areas are arid to semiarid with low annual precipitation. The aim of the present study is to identify and characterize Bacillus and Bacillus-derived bacterial genera from the rhizospheric and non-rhizospheric soil samples from the Khewra Salt Mine, Pakistan, by using culture-independent and -dependent methods. Seven Bacillus-like bacterial genera, Bacillus, Halobacillus, Virgibacillus, Brevibacillus, Paenibacillus, Tumebacillus, and Lysinibacillus, were detected by using pyrosequencing analysis, whereas only four genera, Bacillus, Halobacillus, Oceanobacillus, and Virgibacillus, were identified by culture-dependent methods. Most of the Bacillus-like isolates identified in this study were moderately halophilic, alkaliphilic, and mesophilic bacteria and were considered a good source of hydrolytic enzymes because of their ability to degrade proteins, carbohydrates, and lipids. Eight Bacillus-like strains from the genera Bacillus, Halobacillus, Oceanobacillus, and Virgibacillus showed positive results for the presence of ectABC gene cluster (ectoine), six strains could synthesize betaine from choline, and six strains tested positive for the synthesis of proline from either glutamate or ornithine by using proline dehydrogenase enzyme.


Assuntos
Atriplex/microbiologia , Bacillaceae/classificação , Bacillaceae/genética , Biodiversidade , Osmorregulação/genética , Salsola/microbiologia , Plantas Tolerantes a Sal/microbiologia , Diamino Aminoácidos/genética , Bacillaceae/metabolismo , DNA Bacteriano/genética , Paquistão , Filogenia , Microbiologia do Solo
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