Establishing a testing method for the aphid transmission of SPFMV and evaluating viral resistance in transgenic sweet potatoes
Author:
Affiliation:
1. National Agricultural Research Center for Kyushu Okinawa Region (KONARC)
2. Faculty of Agriculture, Kagoshima University
Publisher
Japanese Society of Breeding
Subject
Plant Science,Genetics,Agronomy and Crop Science
Link
http://www.jstage.jst.go.jp/article/jsbbs/58/4/58_4_465/_pdf
Reference13 articles.
1. Cali, B.B. and J.W. Moyer (1981) Purification, serology and particle morphology of two russet crack strains of sweet potato feathery mottle virus. Phytopathology 71: 302–305.
2. Hanada, K., J. Sakai and M. Onuki (1997) Detection of sweet potato feathery mottle virus by RT-PCR using primers derived from conserved sequence among strains. Ann. Phytopath. Soc. Jpn. 63: 259.
3. International Potato Center Annual Report (1989) Worldwide Potato and Sweet Potato Improvement, International Potato Center Apartado 5969, Lima, Peru: 61–63.
4. Nucleotide Sequence at the 3′-Terminal Region of Sweet Potato Feathery Mottle Virus (Ordinary Strain, SPFMV-O) RNA
5. Nucleotide sequence analysis of two nuclear inclusion body and coat protein genes of a sweet potato feathery mottle virus severe strain (SPFMV-S) genomic RNA
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1. Review of major sweetpotato pests in Japan, with information on resistance breeding programs;Breeding Science;2017
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