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Biology subjects

Cetinkaya, A.

Publications and source records attributed to Cetinkaya, A..

2 recordsLinked to original sources

Prodan-based solvatochromic probes for polarity imaging of organelles

Solvatochromic probes provide microscopic, structural and functional information on their targeted cellular compartments. In this field, the challenge lies in designing probes that are both sufficiently sensitive to environment, and specific in their subcellular localization. Here, we design Prodan-based polarity probes targeting the following organelles: mitochondria, endoplasmic reticulum, Golgi apparatus, lysosomes and lipid droplets. The new probes provide robust organelle targeting, except for the mitochondrial probe, whose targeting ability is cell type dependent. Due to operating range of Prodan fluorophore in the UV-Blue region, our probes can be easily combined with other fluorescent tags in the visible range. Therefore, polarity of sub-cellular compartments can be studied together with additional fluorescent reporters. We used these probes to show the polarity of organelle membranes in healthy cells and under starvation condition where we observed organelle-specific polarity remodeling. These probes are important addition to the repertoire of smart cellular probes and will find critical use in understanding spatiotemporal regulation of cellular physiology.

biophysics↗

Exploring the genome-wide expression level of the bacterial strain belonging to Bacillus safensis (MM19) against Phomopsis viticola

IntroductionRhizobacteria has the suppression ability to compete with pathogenic microorganisms and help for plant immunity and defense mechanism. Their growth and survival in rhizosphere ensure biological balance in favor of the host plant. MethodsIn our study, with agar diffusion assays, we found a rhizobacterium species belonging to Bacillus safensis, which can significantly suppress Phomopsis viticola. To elucidate the antagonistic mechanism, genome-wide gene expression profiling of B. safensis (strain MM19) was performed in the presence and absence of P. viticola. We used RNA-seq analysis to obtain a comprehensive overview of the responsive B. safensis whole gene expression classified according to biological and metabolic process to P. viticola concomitant growth in liquid culture. ResultsThe differential gene expression profiles of B. safensis (MM19) revealed significantly increased expression of prominent genes related to thiamine biosynthesis involving various metabolites and enzymes that play role in the suppression of mycelium growth and pathogen inhibition. Correspondingly, the expression of three major genes (HOG1, FUS3, SGI) involving in the virulence of P. viticola was followed using qPCR analysis. HOG1 was the highest expressed gene in the pathogen when it co-cultivated with MM19. Based on these findings, we performed molecular docking and dynamics analysis to explore the interaction between HOG1 and thiamine, besides expression of network analysis constructed using Cytoscape. DiscussionThe results proved that the functional genomic data related to thiamine biosynthesis and corresponding pathways ensure a priming role in the antagonistic behavior of B. safensis (MM19) against P. viticola as a supporter for plant immunity.

microbiology↗