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Transgenic sweet potato expressing thionin from barley gives resistance to black rot disease caused by Ceratocystis fimbriata in leaves and storage roots.

Plant Cell Rep.. 2019-06; 
MuramotoNobuhiko,TanakaTomoko,ShimamuraTakashi,MitsukawaNorihiro,HoriEtsuko,KodaKatsunori,OtaniMotoyasu,HiraiMasana,NakamuraKenzo,ImaedaT
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Catalog Antibody … 2.2. Antibodies. Mouse anti-6x-histidine was purchased from Genscript Corp (Piscataway, NJ), Goat anti-cathepsin S was purchased from Santa Cruz Biotechnology (Santa Cruz, CA), and Mouse anti-GFP was purchased from Sigma–Aldrich (Oakville, ON, Canada). 2.3 … Get A Quote

摘要

Black rot of sweet potato caused by pathogenic fungus Ceratocystis fimbriata severely deteriorates both growth of plants and post-harvest storage. Antimicrobial peptides from various organisms have broad range activities of killing bacteria, mycobacteria, and fungi. Plant thionin peptide exhibited anti-fungal activity against C. fimbriata. A gene for barley α-hordothionin (αHT) was placed downstream of a strong constitutive promoter of E12Ω or the promoter of a sweet potato gene for β-amylase of storage roots, and introduced into sweet potato commercial cultivar Kokei No. 14. Transgenic E12Ω:αHT plants showed high-level expression of αHT mRNA in both leaves and storage roots. Transgenic β-Amy:αHT... More

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