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Jayawardana, N. U.

Publications and source records attributed to Jayawardana, N. U..

2 recordsLinked to original sources

Isolation and Characterization of Salt Tolerant Soil Bacteria from Selected Locations in the West Coast of Sri Lanka.

BackgroundSoil salinity is one of the inherent problems in coastal soils. The increased soil salinity in costal soils results in low bacterial diversity. However, salt tolerant bacteria have the ability to survive in saline soils because of their unique salt tolerant mechanisms. The current study was focused on identifying the salinity tolerant bacteria in the West coast of Sri Lanka. The molecular characterization of potential salt tolerant bacteria was carried out by 16S rRNA sequencing. ResultsNegombo lagoon, Balapitiya coastal area and Beruwala coastal area were selected as three locations from the West coast of Sri Lanka. Twenty bacterial isolates namely NE01 to NE09 (Negombo lagoon), BA01 to BA07 (Balapitiya coastal area), BE01 to BE04 (Beruwala coastal area) were obtained from 12 soil samples of selected locations. The isolates were characterized based on the bacterial colony morphology, Grams stain and biochemical tests namely, catalase test, modified oxidase test, hemolytic reaction on blood agar and growth on MacConkey agar. All the bacterial isolates were screened for salt tolerance at different concentrations of NaCl ranging from 3 dS/m to 18 dS/m. All 20 bacterial isolates were found salt tolerant upto the highest NaCl concentration (18 dS/m). The salinity tolerant behavior of selected five isolates namely NE 03, NE 06, NE 07, BA 01 and BA 02 were observed by enumerating the number of colony forming units per milliliter (CFU/ml) with increasing salinity. Molecular identification of the above five isolates were carried out by sequencing the 16S rRNA gene and were identified upto their genus level as Bacillus sp., Aeromonas sp., Pseudomonas sp., Aeromonas sp. and Mangrovibacter sp. respectively. ConclusionsThe identified salt tolerant bacterial species can be screened for their plant growth promoting rhizobacterial (PGPR) activities such as phosphate solubilization, potassium solubilization, indole acetic acid (IAA) and nitrogen fixation. Therefore, there is a potential for using these isolates in biofertilizer formulations with the aim of increasing the productivity of saline affected soils of Sri Lanka.

microbiology↗

Cost-Effective Approaches to Elucidate Intergeneric Relationships of Plants: Utilizing Multiple Conserved Nuclear Genes and Whole Chloroplast Genomes

The chloroplast (cp) genome is a widely used tool for exploring plant evolutionary relationships, yet its effectiveness in fully resolving these relationships remains uncertain. Integrating cp genome data with nuclear DNA information offers a more comprehensive view but often requires separate datasets. In response, we employed the same raw read sequencing data to construct cp genome-based trees and nuclear DNA phylogenetic trees using Read2Tree, a cost-efficient method for extracting conserved nuclear gene sequences from raw read data, focusing on the Aurantioideae subfamily, which includes Citrus and its relatives. The resulting nuclear DNA trees were consistent with existing nuclear evolutionary relationships derived from high-throughput sequencing, but diverged from cp genome-based trees. To elucidate the underlying complex evolutionary processes causing these discordances, we implemented an integrative workflow that utilized multiple alignments of each gene generated by Read2Tree, in conjunction with other phylogenomic methods. Our analysis revealed that incomplete lineage sorting predominantly drives these discordances, while introgression and ancient introgression also contribute to topological discrepancies within certain clades. This study underscores the cost-effectiveness of using the same raw sequencing data for both cp and nuclear DNA analyses in understanding plant evolutionary relationships.

genomics↗