bio sun uv chamber (VILBER GmbH)
86
Structured Review
VILBER GmbH
bio sun uv chamber
Bio Sun Uv Chamber, supplied by VILBER GmbH, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/bio+sun+uv+chamber/pm41629034-74-30-33
Average 86 stars, based on 1 article reviews
Bio Sun Uv Chamber, supplied by VILBER GmbH, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/bio+sun+uv+chamber/pm41629034-74-30-33
Average 86 stars, based on 1 article reviews
bio sun uv chamber - by Bioz Stars,
2026-10
86/100 stars
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Control:Article Title: Photoreactivation Activities of Rad5, Rad16A and Rad16B Help Beauveria bassiana to Recover from Solar Ultraviolet Damage Article Snippet: .. The UVB assays for conidial response were performed in a Article Title: Molecular basis and regulatory mechanisms underlying fungal insecticides' resistance to solar ultraviolet irradiation. Article Snippet: Resistance to solar ultraviolet (UV) irradiation is crucial for field-persistent control efficacies of fungal formulations against arthropod pests, because their active ingredients are formulated conidia very sensitive to solar UV wavelengths.. This review seeks to summarize advances in studies aiming to quantify, understand and improve conidial UV resistance.. One focus of studies has been on the many sets of genes that have been revealed in the postgenomic era to contribute to or mediate UV resistance in the insect pathogens serving as main sources of fungal insecticides. Article Title: Optional strategies for low-risk and non-risk applications of fungal pesticides to avoid solar ultraviolet damage. Article Snippet: BACKGROUND: Solar ultraviolet (UV) irradiation is harmful to formulated conidia as active ingredients of fungal pesticides and hence restrains their field application in sunny days of summer, a season requiring frequent pest controls.. This conflict makes it necessary to explore optimal strategies for the application of fungal pesticides to suppress pest populations but avoid solar UV damage during summer.. RESULTS: The conidia of Beauveria bassiana, a wide-spectrum fungal pesticide, were tolerable to UVB (major solar UV wavelengths) damage of ≤0.5 J cm. Irradiation:Article Title: Molecular basis and regulatory mechanisms underlying fungal insecticides' resistance to solar ultraviolet irradiation. Article Snippet: Resistance to solar ultraviolet (UV) irradiation is crucial for field-persistent control efficacies of fungal formulations against arthropod pests, because their active ingredients are formulated conidia very sensitive to solar UV wavelengths.. This review seeks to summarize advances in studies aiming to quantify, understand and improve conidial UV resistance.. One focus of studies has been on the many sets of genes that have been revealed in the postgenomic era to contribute to or mediate UV resistance in the insect pathogens serving as main sources of fungal insecticides. Article Title: Three α-1,2-mannosyltransferases contribute differentially to conidiation, cell wall integrity, multistress tolerance and virulence of Beauveria bassiana. Article Snippet: Members of a-1,2-mannosyltransferase (Ktr) family are required for protein O-mannosylation for the elongation of Ser/Thr mannose residues in yeasts but functionally unknown in most filamentous fungi.. Here we characterized the functions of the Ktr orthologues Ktr1, Ktr4 and Kre2/Mnt1 in Beauveria bassiana, a filamentous enotmopathogen, and found that they were positive, but differential, mediators of many biological traits.. Inactivation of Ktr4 and Kre2 resulted in 92% reduction of conidial yield on a standard medium and growth defects on substrates with altered carbon or nitrogen sources and availability, accompanied with reduced conidial size and complexity. Article Title: High photoreactivation activities of Rad2 and Rad14 in recovering insecticidal Beauveria bassiana from solar UV damage. Article Snippet: Anti-ultraviolet (UV) roles of Rad2 and Rad14 depend on nucleotide excision repair (NER) of UV-induced DNA lesions in budding yeast but remain unexplored yet in filamentous fungi.. Here, nucleus-specific Rad2 and Rad14 orthologs are shown to recover Beauveria bassiana, a main source of wide-spectrum mycoinsecticides, from solar UV damage through photorepair-depending photoreactivation.. As a photorepair index, photoreactivation (germination) rates of lethal UVB dose-irradiated conidia via a 3or 5-h light plus 9or 7-h dark incubation at 25 C were drastically reduced in the Δrad2 and Δrad14 mutants versus a wild-type strain. Article Title: Rad6, a ubiquitin conjugator required for insect-pathogenic lifestyle, UV damage repair, and genomic expression of Beauveria bassiana. Article Snippet: The E2 ubiquitin conjugator Rad6 is required for DNA damage bypass in budding yeast but remain functionally unknown in filamentous fungi.. Here, we report pleiotropic effect of Rad6 ortholog in Beauveria bassiana, a widespectrum fungal insecticide.. Global ubiquitination signal was greatly attenuated in the absence of rad6. Article Title: Optional strategies for low-risk and non-risk applications of fungal pesticides to avoid solar ultraviolet damage. Article Snippet: BACKGROUND: Solar ultraviolet (UV) irradiation is harmful to formulated conidia as active ingredients of fungal pesticides and hence restrains their field application in sunny days of summer, a season requiring frequent pest controls.. This conflict makes it necessary to explore optimal strategies for the application of fungal pesticides to suppress pest populations but avoid solar UV damage during summer.. RESULTS: The conidia of Beauveria bassiana, a wide-spectrum fungal pesticide, were tolerable to UVB (major solar UV wavelengths) damage of ≤0.5 J cm. Article Title: Rad1 and Rad10 Tied to Photolyase Regulators Protect Insecticidal Fungal Cells from Solar UV Damage by Photoreactivation Article Snippet: .. After 10 min drying via sterile ventilation, the plates were irradiated for less than 4 min [ ] in the sample tray of a Sterility:Article Title: Rad1 and Rad10 Tied to Photolyase Regulators Protect Insecticidal Fungal Cells from Solar UV Damage by Photoreactivation Article Snippet: .. After 10 min drying via sterile ventilation, the plates were irradiated for less than 4 min [ ] in the sample tray of a |