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Klair, D.

Publications and source records attributed to Klair, D..

2 recordsLinked to original sources

Exploring Taxonomic and Functional Microbiome of Hawaiian Stream and Spring Irrigation Water Systems Using Illumina and Oxford Nanopore Sequencing Platforms

Irrigation water is a potential source of contamination that carries plant and foodborne human pathogens and provides a niche for survival and proliferation of microbes in agricultural settings. This project investigated bacterial communities and their functions in the irrigation water from wetland taro farms on Oahu, Hawaii using different DNA sequencing platforms. Irrigation water samples (stream, spring, and tank stored water) were collected from North, East, and West sides of Oahu and subjected to high quality DNA isolation, library preparation and sequencing of the V3-V4 region, full length 16S rRNA, and shotgun metagenome sequencing using Illumina iSeq100, Oxford Nanopore MinION and Illumina NovaSeq, respectively. Illumina reads provided the most comprehensive taxonomic classification at the phylum level where Proteobacteria was identified as the most abundant phyla in river stream source and associated wet taro field water samples. Cyanobacteria was also a dominant phylum from tank and spring water, whereas Bacteroidetes were most abundant in wetland taro fields irrigated with spring water. However, over 50% of the valid short amplicon reads remained unclassified and inconclusive at the species level. Whereas samples sequenced for full length 16S rRNA and shotgun metagenome, clearly illustrated that Oxford Nanopore MinION is a better choice to classify the microbes to the genus and species levels. In terms of functional analyses, only 12% of the genes were shared by two consortia. Total 95 antibiotic resistant genes (ARGs) were detected with variable relative abundance. Description of microbial communities and their functions are essential for the development of better water management strategies to produce safer fresh produce and to protect plant, animal, human and environmental health. This project identified analytical tools to study microbiome of irrigation water.

microbiology↗

Pectobacterium colocasium sp. nov. isolated from taro (Colocasia esculenta)

Pectobacterium, agenus comprising gram-negative, pectinolytic phytopathogens, is responsible for economic losses in a wide host range of plants. In this study, the bacterial strains PL152T and PL155 were isolated from taro corms in Hawaii in 2018, and characterized using genomic and biochemical assays. The Next Generation Sequencing technologies, Oxford Nanopore MinION and Illumina NovaSeq, were used for whole genome sequencing of the PL152T strain. Short and long reads were assembled using the Unicycler tool accessible at the bioinformatic resource center, and PATRIC (PathoSystems Resource Integration Center) was used to generate a more accurate and reliable "hybrid" assembly. The 16S rRNA analysis of PL152T with type strains of other known Pectobacterium species showed a close relationship with P. fontis. Multi-locus sequence analysis using nine housekeeping genes (dnaA, gapA, gyrB, recA, dnaN, rpoS, mdh, rpoA and dnaK) differentiated strain PL152T from other species of Pectobacterium and formed a unique and well-defined clade. The concurrent results of average nucleotide identity (ANI) and digital DNA-DNA hybridization, with calculated values lower than 95 and 70%, respectively, supported the delineation of a novel bacterial species. Here, we proposed Pectobacterium colocasium, strain PL152T (=ICMP 24362T; LMG 32536 T) and PL155 as a novel species in the genus Pectobacterium. 1.5 RepositoriesCP091064; MZ542535 - MZ542540; OM457660

microbiology↗