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We are analyzing https://link.springer.com/article/10.1007/pl00012919.

Title:
Pathogenicity, Mating Ability and DNA Restriction Fragment Length Polymorphisms of Pyricularia Populations Isolated from Gramineae, Bambusideae and Zingiberaceae Plants | Journal of General Plant Pathology
Description:
Eighty-five Pyricularia isolates were collected from 29 host species of Gramineae, Bambusideae and Zingiberaceae plants sampled in Brazil, Uganda, Ivory Coast, India, Nepal, China, Indonesia and Japan. These isolates were compared on the basis of pathogenicity, mating ability and restriction fragment length polymorphisms with single-copy DNA probes. Based on the pathogenicity to eight differential gramineous plants, these isolates were classified into seven pathotypes: finger millet type, foxtail millet type, common millet type, rice type, crabgrass type, Italian ryegrass/ weeping lovegrass type, and non-cereal/grass type. Genetic variation among these isolates was assessed by RFLP analysis with two restriction enzymes and nine single-copy DNA probes isolated from a finger millet strain. An UPGMA dendrogram based on the RFLPs revealed that the 85 isolates could be classified into seven major groups. Isolates from cereal crops (finger millet, foxtail millet, common millet, wheat and rice) and a grass, Brachiaria plantaginea, were clustered into a single group. They were further divided into six subgroups corresponding to the pathotypes. Among cereal crop isolates only an isolate from pearl millet was located into a different group. The remaining isolates were clustered into five groups designated as the crabgrass group, the buffelgrass and jungle rice group, the rice cutgrass, knotroot bristlegrass and Setaria tomentosa group, the bamboo and bamboo grass group and the Zingiber mioga group. The isolates from cereal crops were generally capable of mating with finger millet strains and constituted a closed mating compatibility group. These results suggested that the isolates from cereal crops form a single group with a common ancestor although they are pathogenic to taxonomically diverse plants. A combined analysis of the pathogenicity and genetic similarity suggested that the transmission of M. grisea isolates occurs in natural agroecosystems between finger millet and Eleusine africana, goosegrass or Bambusa arundinacea, between foxtail millet and green bristlegrass, and between rice and tall fescue, Italian ryegrass, sweet vernalgrass, reed canarygrass or Oryza longistaminata.
Website Age:
28 years and 1 months (reg. 1997-05-29).

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🌠 Phenomenal Traffic: 5M - 10M visitors per month


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Keywords {πŸ”}

isolates, millet, article, plant, group, type, mating, plants, finger, privacy, cookies, content, journal, pathogenicity, restriction, rice, information, publish, search, pathology, dna, fragment, length, polymorphisms, pyricularia, cereal, access, kobe, analysis, data, log, research, ability, isolated, gramineae, bambusideae, zingiberaceae, kato, yamamoto, yamaguchiozaki, host, japan, foxtail, common, genetic, crops, suggested, discover, springer, optional,

Topics {βœ’οΈ}

single-copy dna probes month download article/chapter privacy choices/manage cookies full article pdf pyricularia populations isolated differential gramineous plants taxonomically diverse plants european economic area zingiberaceae plants published yukio tosa zingiberaceae plants sampled rhizoctonia solani isolates conditions privacy policy setaria tomentosa group zingiber mioga group cereal crops form finger millet type finger millet strain finger millet strains tomona yamaguchi-ozaki accepting optional cookies upgma dendrogram based morpho-cultural cereal/grass type foxtail millet type common millet type jungle rice group journal finder publish cereal crop isolates grisea isolates occurs genetic similarity suggested italian ryegrass bamboo grass group article kato article journal information restriction enzymes related subjects zingiberaceae plants 1007/pl00012919 keywords single group article log privacy policy personal data books a finger millet 29 host species rice type host range yamaguchi-ozaki

Schema {πŸ—ΊοΈ}

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         headline:Pathogenicity, Mating Ability and DNA Restriction Fragment Length Polymorphisms of Pyricularia Populations Isolated from Gramineae, Bambusideae and Zingiberaceae Plants
         description:Eighty-five Pyricularia isolates were collected from 29 host species of Gramineae, Bambusideae and Zingiberaceae plants sampled in Brazil, Uganda, Ivory Coast, India, Nepal, China, Indonesia and Japan. These isolates were compared on the basis of pathogenicity, mating ability and restriction fragment length polymorphisms with single-copy DNA probes. Based on the pathogenicity to eight differential gramineous plants, these isolates were classified into seven pathotypes: finger millet type, foxtail millet type, common millet type, rice type, crabgrass type, Italian ryegrass/ weeping lovegrass type, and non-cereal/grass type. Genetic variation among these isolates was assessed by RFLP analysis with two restriction enzymes and nine single-copy DNA probes isolated from a finger millet strain. An UPGMA dendrogram based on the RFLPs revealed that the 85 isolates could be classified into seven major groups. Isolates from cereal crops (finger millet, foxtail millet, common millet, wheat and rice) and a grass, Brachiaria plantaginea, were clustered into a single group. They were further divided into six subgroups corresponding to the pathotypes. Among cereal crop isolates only an isolate from pearl millet was located into a different group. The remaining isolates were clustered into five groups designated as the crabgrass group, the buffelgrass and jungle rice group, the rice cutgrass, knotroot bristlegrass and Setaria tomentosa group, the bamboo and bamboo grass group and the Zingiber mioga group. The isolates from cereal crops were generally capable of mating with finger millet strains and constituted a closed mating compatibility group. These results suggested that the isolates from cereal crops form a single group with a common ancestor although they are pathogenic to taxonomically diverse plants. A combined analysis of the pathogenicity and genetic similarity suggested that the transmission of M. grisea isolates occurs in natural agroecosystems between finger millet and Eleusine africana, goosegrass or Bambusa arundinacea, between foxtail millet and green bristlegrass, and between rice and tall fescue, Italian ryegrass, sweet vernalgrass, reed canarygrass or Oryza longistaminata.
         datePublished:
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            Keywords: Magnaporthe grisea, Pyricularia blast fungus population, restriction fragment length polymorphisms, mating compatibility, host range, phylogeny.
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            Agriculture
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      headline:Pathogenicity, Mating Ability and DNA Restriction Fragment Length Polymorphisms of Pyricularia Populations Isolated from Gramineae, Bambusideae and Zingiberaceae Plants
      description:Eighty-five Pyricularia isolates were collected from 29 host species of Gramineae, Bambusideae and Zingiberaceae plants sampled in Brazil, Uganda, Ivory Coast, India, Nepal, China, Indonesia and Japan. These isolates were compared on the basis of pathogenicity, mating ability and restriction fragment length polymorphisms with single-copy DNA probes. Based on the pathogenicity to eight differential gramineous plants, these isolates were classified into seven pathotypes: finger millet type, foxtail millet type, common millet type, rice type, crabgrass type, Italian ryegrass/ weeping lovegrass type, and non-cereal/grass type. Genetic variation among these isolates was assessed by RFLP analysis with two restriction enzymes and nine single-copy DNA probes isolated from a finger millet strain. An UPGMA dendrogram based on the RFLPs revealed that the 85 isolates could be classified into seven major groups. Isolates from cereal crops (finger millet, foxtail millet, common millet, wheat and rice) and a grass, Brachiaria plantaginea, were clustered into a single group. They were further divided into six subgroups corresponding to the pathotypes. Among cereal crop isolates only an isolate from pearl millet was located into a different group. The remaining isolates were clustered into five groups designated as the crabgrass group, the buffelgrass and jungle rice group, the rice cutgrass, knotroot bristlegrass and Setaria tomentosa group, the bamboo and bamboo grass group and the Zingiber mioga group. The isolates from cereal crops were generally capable of mating with finger millet strains and constituted a closed mating compatibility group. These results suggested that the isolates from cereal crops form a single group with a common ancestor although they are pathogenic to taxonomically diverse plants. A combined analysis of the pathogenicity and genetic similarity suggested that the transmission of M. grisea isolates occurs in natural agroecosystems between finger millet and Eleusine africana, goosegrass or Bambusa arundinacea, between foxtail millet and green bristlegrass, and between rice and tall fescue, Italian ryegrass, sweet vernalgrass, reed canarygrass or Oryza longistaminata.
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         Keywords: Magnaporthe grisea, Pyricularia blast fungus population, restriction fragment length polymorphisms, mating compatibility, host range, phylogeny.
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         Agriculture
         Microbiology
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            address:
               name:Plant Pathology Laboratory, Faculty of Agriculture, Kobe University, Kobe 657-8501, Japan, , JP
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      name:Masaaki YAMAMOTO
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            address:
               name:Plant Pathology Laboratory, Faculty of Agriculture, Kobe University, Kobe 657-8501, Japan, , JP
               type:PostalAddress
            type:Organization
      name:Tomona YAMAGUCHI-OZAKI
      affiliation:
            name:Plant Pathology Laboratory, Faculty of Agriculture, Kobe University, Kobe 657-8501, Japan
            address:
               name:Plant Pathology Laboratory, Faculty of Agriculture, Kobe University, Kobe 657-8501, Japan, , JP
               type:PostalAddress
            type:Organization
      name:Hiroyuki KADOUCHI
      affiliation:
            name:Plant Pathology Laboratory, Faculty of Agriculture, Kobe University, Kobe 657-8501, Japan
            address:
               name:Plant Pathology Laboratory, Faculty of Agriculture, Kobe University, Kobe 657-8501, Japan, , JP
               type:PostalAddress
            type:Organization
      name:Yutaka IWAMOTO
      affiliation:
            name:Plant Pathology Laboratory, Faculty of Agriculture, Kobe University, Kobe 657-8501, Japan
            address:
               name:Plant Pathology Laboratory, Faculty of Agriculture, Kobe University, Kobe 657-8501, Japan, , JP
               type:PostalAddress
            type:Organization
      name:Hitoshi NAKAYASHIKI
      affiliation:
            name:Plant Pathology Laboratory, Faculty of Agriculture, Kobe University, Kobe 657-8501, Japan
            address:
               name:Plant Pathology Laboratory, Faculty of Agriculture, Kobe University, Kobe 657-8501, Japan, , JP
               type:PostalAddress
            type:Organization
      name:Yukio TOSA
      affiliation:
            name:Plant Pathology Laboratory, Faculty of Agriculture, Kobe University, Kobe 657-8501, Japan
            address:
               name:Plant Pathology Laboratory, Faculty of Agriculture, Kobe University, Kobe 657-8501, Japan, , JP
               type:PostalAddress
            type:Organization
      name:Shigeyuki MAYAMA
      affiliation:
            name:Plant Pathology Laboratory, Faculty of Agriculture, Kobe University, Kobe 657-8501, Japan
            address:
               name:Plant Pathology Laboratory, Faculty of Agriculture, Kobe University, Kobe 657-8501, Japan, , JP
               type:PostalAddress
            type:Organization
      name:Naoki MORI
      affiliation:
            name:Plant Genetics Laboratory, Faculty of Agriculture, Kobe University, Kobe 657-8501, Japan
            address:
               name:Plant Genetics Laboratory, Faculty of Agriculture, Kobe University, Kobe 657-8501, Japan, , JP
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      name:Plant Pathology Laboratory, Faculty of Agriculture, Kobe University, Kobe 657-8501, Japan, , JP
      name:Plant Pathology Laboratory, Faculty of Agriculture, Kobe University, Kobe 657-8501, Japan, , JP
      name:Plant Pathology Laboratory, Faculty of Agriculture, Kobe University, Kobe 657-8501, Japan, , JP
      name:Plant Pathology Laboratory, Faculty of Agriculture, Kobe University, Kobe 657-8501, Japan, , JP
      name:Plant Pathology Laboratory, Faculty of Agriculture, Kobe University, Kobe 657-8501, Japan, , JP
      name:Plant Pathology Laboratory, Faculty of Agriculture, Kobe University, Kobe 657-8501, Japan, , JP
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