gel doc system alpha imager (Alpha Innotech)
90
Structured Review
Alpha Innotech
gel doc system alpha imager
Gel Doc System Alpha Imager, supplied by Alpha Innotech, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/gel+doc+system+alpha+imager/gel+documentation+and+analysis+system+alphaimager+2000/10__1016_slash_j__pmpp__2024__102334-97-20-25
Average 90 stars, based on 1 article reviews
Gel Doc System Alpha Imager, supplied by Alpha Innotech, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/gel+doc+system+alpha+imager/gel+documentation+and+analysis+system+alphaimager+2000/10__1016_slash_j__pmpp__2024__102334-97-20-25
Average 90 stars, based on 1 article reviews
gel doc system alpha imager - by Bioz Stars,
2026-09
90/100 stars
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Amplification:Article Title: Rapid and sensitive detection of Sclerotium rolfsii associated with collar rot disease of Amorphophallus paeoniifolius by species-specific polymerase chain reaction assay. Article Snippet: Collar rot disease caused by Sclerotium rolfsii is an economically important disease prevailing in all Amorphophallus growing areas.. The pathogen propagules surviving in soil and planting material are the major sources of inoculum.. A nested PCR assay has been developed for specific detection of S. rolfsii in soil and planting material. Article Title: Rapid and sensitive detection of Phytophthora colocasiae responsible for the taro leaf blight using conventional and real-time PCR assay. Article Snippet: .. The amplified products were visualized in a 1.5% agarose gel, and photographs were scanned through a Article Title: Insights into the population dynamics of phytophthora species associated with arecanut fruit rot disease Article Snippet: Phytophthora, a ubiquitous filamentous oomycete, causes huge yield losses and is fatal to arecanut palms in case of severe infection.. From 2014 onwards, a severe fruit rot epidemic has been recorded during the South-West monsoon season in major arecanut-growing states of South India.. We have assessed the diversity and delineated the population structure of Phytophthora isolates infecting arecanut in India using a combination of morphological traits, multi-gene profiling, haplotype analysis, and pathogenicity. Article Title: Exploration of D1/D2 domain of large-subunit ribosomal DNA for specific detection of Sclerotium rolfsii by polymerase chain reaction assay Article Snippet: Collar rot disease of Amorphophallus paeoniifolius caused by Sclerotium rolfsii is an important disease existing in all Amorphophallus growing areas.. The pathogen propagules present in soil and plantingmaterial form key basis of inoculum.. This study presents the aptness of D1/D2 domain of large-subunit ribosomal DNA (rDNA-LSU) for PCR based detection of S. rolfsii. Article Title: Nucleic acid spot hybridization based species-specific detection of Sclerotium rolfsii associated with collar rot disease of Amorphophallus paeoniifolius. Article Snippet: Collar rot is one of the most destructive and prevalent disease of Amorphophallus paeoniifolius, resulting in heavy yield losses.. The causative organism, Sclerotium rolfsii is a soil-borne polyphagous fungus characterized by prolific growth and ability to produce persistent sclerotia.. The pathogen propagules surviving in soil and planting material are the major sources of inoculum. Article Title: Multigene phylogeny and haplotype analysis reveals predominance of oomycetous fungus, Phytophthora meadii (McRae) associated with fruit rot disease of arecanut in India Article Snippet: PCR was performed in T100 TM thermal cycler (Bio-Rad, USA) for 20 μL reaction volumes consist of 80 ng genomic DNA and ready to use Red Dye PCR Master mix (Genei, Bangalore, India). .. The amplified products were diluted with 1.5% agarose gel in Tris-Borate-EDTA (TBE) buffer containing 0.5 μg ml −1 ethidium bromide and amplification was detected by Agarose Gel Electrophoresis:Article Title: Rapid and sensitive detection of Sclerotium rolfsii associated with collar rot disease of Amorphophallus paeoniifolius by species-specific polymerase chain reaction assay. Article Snippet: Collar rot disease caused by Sclerotium rolfsii is an economically important disease prevailing in all Amorphophallus growing areas.. The pathogen propagules surviving in soil and planting material are the major sources of inoculum.. A nested PCR assay has been developed for specific detection of S. rolfsii in soil and planting material. Article Title: Rapid and sensitive detection of Phytophthora colocasiae responsible for the taro leaf blight using conventional and real-time PCR assay. Article Snippet: .. The amplified products were visualized in a 1.5% agarose gel, and photographs were scanned through a Article Title: Insights into the population dynamics of phytophthora species associated with arecanut fruit rot disease Article Snippet: Phytophthora, a ubiquitous filamentous oomycete, causes huge yield losses and is fatal to arecanut palms in case of severe infection.. From 2014 onwards, a severe fruit rot epidemic has been recorded during the South-West monsoon season in major arecanut-growing states of South India.. We have assessed the diversity and delineated the population structure of Phytophthora isolates infecting arecanut in India using a combination of morphological traits, multi-gene profiling, haplotype analysis, and pathogenicity. Article Title: Exploration of D1/D2 domain of large-subunit ribosomal DNA for specific detection of Sclerotium rolfsii by polymerase chain reaction assay Article Snippet: Collar rot disease of Amorphophallus paeoniifolius caused by Sclerotium rolfsii is an important disease existing in all Amorphophallus growing areas.. The pathogen propagules present in soil and plantingmaterial form key basis of inoculum.. This study presents the aptness of D1/D2 domain of large-subunit ribosomal DNA (rDNA-LSU) for PCR based detection of S. rolfsii. Article Title: Nucleic acid spot hybridization based species-specific detection of Sclerotium rolfsii associated with collar rot disease of Amorphophallus paeoniifolius. Article Snippet: Collar rot is one of the most destructive and prevalent disease of Amorphophallus paeoniifolius, resulting in heavy yield losses.. The causative organism, Sclerotium rolfsii is a soil-borne polyphagous fungus characterized by prolific growth and ability to produce persistent sclerotia.. The pathogen propagules surviving in soil and planting material are the major sources of inoculum. Article Title: Multigene phylogeny and haplotype analysis reveals predominance of oomycetous fungus, Phytophthora meadii (McRae) associated with fruit rot disease of arecanut in India Article Snippet: PCR was performed in T100 TM thermal cycler (Bio-Rad, USA) for 20 μL reaction volumes consist of 80 ng genomic DNA and ready to use Red Dye PCR Master mix (Genei, Bangalore, India). .. The amplified products were diluted with 1.5% agarose gel in Tris-Borate-EDTA (TBE) buffer containing 0.5 μg ml −1 ethidium bromide and amplification was detected by Polymerase Chain Reaction:Article Title: Insights into the population dynamics of phytophthora species associated with arecanut fruit rot disease Article Snippet: Phytophthora, a ubiquitous filamentous oomycete, causes huge yield losses and is fatal to arecanut palms in case of severe infection.. From 2014 onwards, a severe fruit rot epidemic has been recorded during the South-West monsoon season in major arecanut-growing states of South India.. We have assessed the diversity and delineated the population structure of Phytophthora isolates infecting arecanut in India using a combination of morphological traits, multi-gene profiling, haplotype analysis, and pathogenicity. Article Title: Exploration of D1/D2 domain of large-subunit ribosomal DNA for specific detection of Sclerotium rolfsii by polymerase chain reaction assay Article Snippet: Collar rot disease of Amorphophallus paeoniifolius caused by Sclerotium rolfsii is an important disease existing in all Amorphophallus growing areas.. The pathogen propagules present in soil and plantingmaterial form key basis of inoculum.. This study presents the aptness of D1/D2 domain of large-subunit ribosomal DNA (rDNA-LSU) for PCR based detection of S. rolfsii. Article Title: Rapid and sensitive detection of Sclerotium rolfsii associated with collar rot disease of Amorphophallus paeoniifolius by species-specific polymerase chain reaction assay. Article Snippet: Collar rot disease caused by Sclerotium rolfsii is an economically important disease prevailing in all Amorphophallus growing areas.. The pathogen propagules surviving in soil and planting material are the major sources of inoculum.. A nested PCR assay has been developed for specific detection of S. rolfsii in soil and planting material. Article Title: Nucleic acid spot hybridization based species-specific detection of Sclerotium rolfsii associated with collar rot disease of Amorphophallus paeoniifolius. Article Snippet: Collar rot is one of the most destructive and prevalent disease of Amorphophallus paeoniifolius, resulting in heavy yield losses.. The causative organism, Sclerotium rolfsii is a soil-borne polyphagous fungus characterized by prolific growth and ability to produce persistent sclerotia.. The pathogen propagules surviving in soil and planting material are the major sources of inoculum. |