Search Results - "Nagamatsu, Shiro"

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  1. 1

    Mutation in BEIIb mitigates the negative effect of the mutation in ISA1 on grain filling and amyloplast formation in rice by Nagamatsu, Shiro, Wada, Takuya, Matsushima, Ryo, Fujita, Naoko, Miura, Satoko, Crofts, Naoko, Hosaka, Yuko, Yamaguchi, Osamu, Kumamaru, Toshihiro

    Published in Plant molecular biology (01-03-2022)
    “…Key message Mutation of the BEIIb gene in an isa1 mutant background mitigates the negative effect of the ISA1 mutation on grain filling, and facilitates…”
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    Journal Article
  2. 2

    Genome‐wide expression quantitative trait locus studies facilitate isolation of causal genes controlling panicle structure by Wang, Fanmiao, Yano, Kenji, Nagamatsu, Shiro, Inari‐Ikeda, Mayuko, Koketsu, Eriko, Hirano, Ko, Aya, Koichiro, Matsuoka, Makoto

    “…SUMMARY The morphology of rice (Oryza sativa L.) panicles is an important determinant of grain yield, and elucidation of the genetic control of panicle…”
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    Journal Article
  3. 3

    Strawberry fruit shape: quantification by image analysis and QTL detection by genome-wide association analysis by Nagamatsu, Shiro, Tsubone, Masao, Wada, Takuya, Oku, Koichiro, Mori, Miyuki, Hirata, Chiharu, Hayashi, Atsushi, Tanabata, Takanari, Isobe, Sachiko, Takata, Kinuko, Shimomura, Katsumi

    Published in Breeding Science (01-01-2021)
    “…Fruit shape of cultivated strawberry (Fragaria × ananassa Duch.) is an important breeding target. To detect genomic regions associated with this trait, its…”
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    Journal Article
  4. 4

    Survey of genes involved in rice secondary cell wall formation through a co-expression network by Hirano, Ko, Aya, Koichiro, Morinaka, Yoichi, Nagamatsu, Shiro, Sato, Yutaka, Antonio, Baltazar A, Namiki, Nobukazu, Nagamura, Yoshiaki, Matsuoka, Makoto

    Published in Plant and cell physiology (01-11-2013)
    “…The plant secondary cell wall is the major source of lignocellulosic biomass, a renewable energy resource that can be used for bioethanol production. To…”
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    Journal Article
  5. 5

    Comparative QTL mapping for male sterility of cultivated strawberry (Fragaria × ananassa Duch.) using different reference genome sequences by Wada, Takuya, Monden, Hiyori, Isobe, Sachiko, Shirasawa, Kenta, Sueyoshi, Takayuki, Hirata, Chiharu, Mori, Miyuki, Nagamatsu, Shiro, Tanaka, Yoshiki

    Published in Breeding Science (01-01-2021)
    “…Male sterility is one of the reproductive isolation systems in plants and quite useful for F1 seed production. We previously identified three independent…”
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    Journal Article
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  8. 8

    Efficacy of microarray profiling data combined with QTL mapping for the identification of a QTL gene controlling the initial growth rate in rice by Yano, Kenji, Takashi, Tomonori, Nagamatsu, Shiro, Kojima, Mikiko, Sakakibara, Hitoshi, Kitano, Hidemi, Matsuoka, Makoto, Aya, Koichiro

    Published in Plant and cell physiology (01-04-2012)
    “…Seedling vigor, which is controlled by many quantitative trait loci (QTLs), is one of several important agronomic traits for direct-seedling rice systems…”
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    Journal Article
  9. 9

    Comparative QTL mapping for male sterility of cultivated strawberry (Fragaria × ananassa Duch.) using different reference genome sequences by Wada, Takuya, Monden, Hiyori, Isobe, Sachiko, Shirasawa, Kenta, Sueyoshi, Takayuki, Hirata, Chiharu, Mori, Miyuki, Nagamatsu, Shiro, Tanaka, Yoshiki

    Published in Breeding Science (2021)
    “…Male sterility is one of the reproductive isolation systems in plants and quite useful for F1 seed production. We previously identified three independent…”
    Get full text
    Journal Article
  10. 10

    Strawberry fruit shape: quantification by image analysis and QTL detection by genome-wide association analysis by Nagamatsu, Shiro, Tsubone, Masao, Wada, Takuya, Oku, Koichiro, Mori, Miyuki, Hirata, Chiharu, Hayashi, Atsushi, Tanabata, Takanari, Isobe, Sachiko, Takata, Kinuko, Shimomura, Katsumi

    Published in Breeding Science (2021)
    “…Fruit shape of cultivated strawberry (Fragaria × ananassa Duch.) is an important breeding target. To detect genomic regions associated with this trait, its…”
    Get full text
    Journal Article