Andriy Kovalchuk (University of Helsinki): Genomic and exon-capture system identifies genetic variants of conifer genes involved in resistance to Heterobasidion infection
Andriy Kovalchuk (University of Helsinki): Genomic and exon-capture system identifies genetic variants of conifer genes involved in resistance to Heterobasidion infection
Zhen Zeng (University of Helsinki): Patterns of genomic variations in multiple isolates of Heterobasidion parviporum: Impact on the evolution of virulence & pathogenicity traits
Zhen Zeng (University of Helsinki): Patterns of genomic variations in multiple isolates of Heterobasidion parviporum: Impact on the evolution of virulence & pathogenicity traits
Journal of Ethnobotany | Applications of DNA barcoding and future directions ...Innspub Net
DNA barcoding help to recognize the plant based on short, gene sequences in a rapid, accurate, and cost effective manner. Current focus is on the investigation of phytomedicinals and herbal product integrity and authenticity through DNA barcoding with the goal of protecting consumers from potential health risks associated with product substitution and contamination. Recent reports reveal that DNA barcoding can be used for the assignment of unknown specimens to a taxonomic group, authentic identification of phytomedicinals, and in plant biodiversity conservation. Research indicates that there is no single universal barcode candidate for identification of all plant groups. Hence, comparative analysis of plant barcode loci is essential for choosing a best candidate for authenticating particular medicinal plant genus/families. Currently, both chloroplast/nuclear regions are used as universal barcodes for the authentication of phytomedicinals. A recent advance in genomics has further enhanced the progress in DNA barcoding of plants by the introduction of high-throughput techniques like next generation sequencing, which has paved the way for complete plastome sequencing that is now termed as super-barcodes. Hence, current focus is on the investigation of phytomedicines and herbal product integrity and authenticity through DNA barcoding with the goal of protecting consumers from potential health risks associated with product substitution and contamination. These approaches could improve the traditional ethnobotanical and scientific knowledge of phytomedicines and their safe use.
The Biology of Chalara Ash Dieback Disease (Hymonescyphus fraxineus): identif...Edward Wilson
This lecture was presented at the Living Ash Project Workshop, hosted by Tamar Valley AONB, at Tiverton, Devon on 13 August 2015.
The lecture provided an update on the history and biology of Chalara ash dieback disease (Hymenoscyphus fraxineus) (formerly Chalara fraxinea) in Britain. Included in the presentation was the natural history of ash, the biology of Chalara ash dieback disease, the history of infection in Britain and Ireland, and information about reporting and citizen science.
Journal of Ethnobotany | Applications of DNA barcoding and future directions ...Innspub Net
DNA barcoding help to recognize the plant based on short, gene sequences in a rapid, accurate, and cost effective manner. Current focus is on the investigation of phytomedicinals and herbal product integrity and authenticity through DNA barcoding with the goal of protecting consumers from potential health risks associated with product substitution and contamination. Recent reports reveal that DNA barcoding can be used for the assignment of unknown specimens to a taxonomic group, authentic identification of phytomedicinals, and in plant biodiversity conservation. Research indicates that there is no single universal barcode candidate for identification of all plant groups. Hence, comparative analysis of plant barcode loci is essential for choosing a best candidate for authenticating particular medicinal plant genus/families. Currently, both chloroplast/nuclear regions are used as universal barcodes for the authentication of phytomedicinals. A recent advance in genomics has further enhanced the progress in DNA barcoding of plants by the introduction of high-throughput techniques like next generation sequencing, which has paved the way for complete plastome sequencing that is now termed as super-barcodes. Hence, current focus is on the investigation of phytomedicines and herbal product integrity and authenticity through DNA barcoding with the goal of protecting consumers from potential health risks associated with product substitution and contamination. These approaches could improve the traditional ethnobotanical and scientific knowledge of phytomedicines and their safe use.
Biomedical text mining: Automatic processing of unstructured text
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The Biology of Chalara Ash Dieback Disease (Hymonescyphus fraxineus): identif...Edward Wilson
This lecture was presented at the Living Ash Project Workshop, hosted by Tamar Valley AONB, at Tiverton, Devon on 13 August 2015.
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Introduction
Willie Nelson net worth is a testament to his enduring influence and success in many fields. Born on April 29, 1933, in Abbott, Texas. Nelson's journey from a humble beginning to becoming one of the most iconic figures in American music is nothing short of inspirational. His net worth, which estimated to be around $25 million as of 2024. reflects a career that is as diverse as it is prolific.
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Andriy Kovalchuk (University of Helsinki): Genomic and exon-capture system identifies genetic variants of conifer genes involved in resistance to Heterobasidion infection
1. Seminar on Forest Pathology, 29 March 2017
Natural Resources Institute Finland, Viikki, Helsinki
Genome-wide exon-capture approach identifies genetic variants of
conifer genes linked to resistance to Heterobasidion infection
Andriy Kovalchuk
Department of Forest Sciences, P.O. Box 27, Latokartanonkaari 7, Helsinki, Finland
Email: andriy.kovalchuk@helsinki.fi
Root and butt rot caused by members of the Heterobasidion annosum species complex is the most
economically important disease of conifer trees in boreal forests. Wood decay in the infected trees
dramatically decreases their value and causes considerable losses to forest owners. Pine and spruce
trees vary in their susceptibility to Heterobasidion infection, but the genetic determinants
determining the variation in the susceptibility are not well understood.
We performed the identification of Norway spruce genes linked to resistance to Heterobasidion
infection using genome-wide exon-capture approach. First, 64 clonal Norway spruce lines were
phenotyped, and their response to Heterobasidion inoculation was determined by lesion length
measurements. Then, the selected spruce lines were genotypes by targeted resequencing and
identification of genetic variants (SNPs). Finally, genome-wide association analysis was performed
to identify genetic variants associated with the variation in the lesion lengths. The results of our
project will be discussed during the presentation.