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用于甘薯品种“红春”和“福村紫”品种特异性鉴定的色谱印刷阵列条带(C-PAS)方法

Chromatographic printed array strip (C-PAS) method for cultivar-specific identification of sweetpotato cultivars 'Beniharuka' and 'Fukumurasaki'.

作者信息

Monden Yuki, Kakigi Maho, Haque Emdadul, Takeuchi Tomoyuki, Takasaki Kazuto, Tanaka Masaru

机构信息

Graduate School of Environmental and Life Science, Okayama University, 1-1-1 Tsushimanaka, Kita-ku, Okayama, Okayama 700-8530, Japan.

Faculty of Agriculture, Okayama University, 1-1-1 Tsushimanaka, Kita-ku, Okayama, Okayama 700-8530, Japan.

出版信息

Breed Sci. 2023 Jun;73(3):313-321. doi: 10.1270/jsbbs.22101. Epub 2023 Jun 28.

Abstract

Sweetpotato () cultivars grown in Japan are highly valued for their excellent sweetness, high quality, and good texture. The export volume of sweetpotato from Japan has been rising rapidly, with a 10-fold increase on a weight basis over the last 10 years. However, since sweetpotato is propagated vegetatively from storage roots, it is easy to cultivate and propagate this crop, prompting concerns that Japanese sweetpotato cultivars/lines are being exported overseas, cultivated without permission, or reimported. Therefore, a rapid and accurate cultivar identification methodology is needed. In this study, we comprehensively analyzed the insertion sites of retrotransposon to develop a cultivar identification technique for the Japanese cultivars 'Beniharuka' and 'Fukumurasaki'. These two cultivars were successfully distinguished from other cultivars using a minimum of two marker sets. Using the chromatographic printed array strip (C-PAS) method for DNA signal detection, 'Beniharuka' and 'Fukumurasaki' can be precisely identified using a single strip of chromatographic paper based on multiplex DNA signals derived from the amplicons of the insertion sites. Since this method can detect DNA signals in only ~15 minutes, we expect that our method will facilitate rapid, reliable, and convenient cultivar discrimination for on-site inspection of sweetpotato.

摘要

日本种植的甘薯()品种因其出色的甜度、高品质和良好的质地而备受重视。日本甘薯的出口量一直在迅速增长,过去10年按重量计算增长了10倍。然而,由于甘薯是通过贮藏根进行无性繁殖的,这种作物易于种植和繁殖,这引发了人们对日本甘薯品种/品系被出口到海外、未经许可种植或重新进口的担忧。因此,需要一种快速准确的品种鉴定方法。在本研究中,我们全面分析了反转录转座子的插入位点,以开发针对日本品种“红春”和“福村崎”的品种鉴定技术。使用最少两组标记,这两个品种成功地与其他品种区分开来。使用色谱打印阵列条(C-PAS)方法进行DNA信号检测,基于来自插入位点扩增子的多重DNA信号,仅用一条色谱纸就能精确鉴定“红春”和“福村崎”。由于该方法仅需约15分钟就能检测到DNA信号,我们预计我们的方法将有助于在甘薯现场检查中进行快速、可靠和便捷的品种鉴别。

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