Monitoring growth and movement of Ralstonia solanacearum cells harboring plasmid pRSS12 derived from bacteriophage φRSS1(PLANT BIOTECHNOLOGY)
スポンサーリンク
概要
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We monitored growth and movement of Ralstonia solanacearum harboring the plasmid pRSS12 in tomato seedlings. The plasmid contains a gene for green fluorescent protein (GFP) and is stably maintained in R. solanacearum cells without selection pressure. Bacteria harboring the plasmid can be tracked in planta by visualizing GFP fluorescence. Stems of seedlings were infected with R. solanacearum cells transformed with pRSS12, and bacterial growth and movement, particularly around the vascular bundles, were monitored for more than 7 days. Our results showed that vascular bundles are independent of each other within the stem, and that it takes a long time for R. solanacearum cells to migrate from one vascular bundle to another. For real-time monitoring of bacteria in planta, tomato seedlings were grown on agar medium and bacterial suspension was applied to the root apex. The bacterial invasion process was monitored by fluorescent microscopy. Bacteria invaded taproots within 6h, and movement of the bacteria was observed until 144h after inoculation. In susceptible tomato cultivars, strong GFP fluorescence was observed in hypocotyls and lateral roots as well as the taproot. In resistant cultivars, however, GFP fluorescence was rarely observed on lateral roots. Our results show that this monitoring system can be used to assess bacterial pathogenicity efficiently.
著者
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Fujie Makoto
Department of Molecular Biotechnology, Graduate School of Advanced Sciences of Matter, Hiroshima Uni
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Takamoto Hirofumi
Department of Molecular Biotechnology, Graduate School of Advanced Sciences of Matter, Hiroshima Uni
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Kawasaki Takeru
Department of Molecular Biotechnology, Graduate School of Advanced Sciences of Matter, Hiroshima Uni
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Fujiwara Akiko
Department of Molecular Biotechnology, Graduate School of Advanced Sciences of Matter, Hiroshima Uni
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Yamada Takashi
Department of Molecular Biotechnology, Graduate School of Advanced Sciences of Matter, Hiroshima Uni
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Fujie M
Graduate School Of Advanced Sciences Of Matter Hiroshima University
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Fujie M
Hiroshima Univ. Higashi‐hiroshima Jpn
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Fujie Makoto
Department Of Molecular Biotechnology Graduate School Of Engineering Hiroshima University
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Fujiwara Akiko
Department Of Molecular Biotechnology Graduate School Of Advanced Sciences Of Matter Hiroshima Unive
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KAWASAKI Takeru
Dept. Mol. Biotech., Grad. Sch. Adv. Sci. Mat., Hiroshima Univ.
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Takamoto Hirofumi
Department Of Molecular Biotechnology Graduate School Of Advanced Sciences Of Matter Hiroshima Unive
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Kawabata Toyoki
Energia Economic And Technical Research Institute
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Kawasaki Takeru
Department Of Molecular Biotechnology Graduate School Of Advanced Sciences Of Matter Hiroshima Unive
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Kawasaki Takeru
Department Of Molecular Biotechnology Graduate School Of Advanced Matter Hiroshima University
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Fujie Makoto
Department Of Fermentation Technology Faculty Of Engineering Hiroshima University
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Fujiwara Akiko
Department Of Applied Microbiology Nippon Roche Research Center
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Yamada Takashi
Department Of Chemistry Faculty Of Science And Engineering Konan University
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Yamada T
Department Of Molecular Biotechnology Graduate School Of Advanced Sciences Of Matter Hiroshima Unive
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Yamada T
National Institute Of Agrobiological Sciences Ministry Of Agriculture Forestry And Fisheries
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Yamada Takashi
Department Of Animal Science Graduate School Of Agricultural Science Kobe University
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