作物の閉花受粉性~その分子機構と育種における利用

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Published in育種学研究 Vol. 16; no. 2; pp. 61 - 66
Main Authors 藤田, 健司, 矢頭, 治, 吉田, 均, 藤田, 雅也, 木谷, 吉則, 大森, 伸之介, 小松田, 隆夫, 王, 寧, 蛯谷, 武志, 山‍口‍, 琢‍也‍, 久保, 堅司
Format Journal Article
LanguageJapanese
Published 日本育種学会 2014
Subjects
Online AccessGet full text
ISSN1344-7629
1348-1290
DOI10.1270/jsbbr.16.61

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Author 大森, 伸之介
蛯谷, 武志
小松田, 隆夫
久保, 堅司
吉田, 均
矢頭, 治
木谷, 吉則
山‍口‍, 琢‍也
王, 寧
藤田, 雅也
藤田, 健司
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  fullname: 小松田, 隆夫
  organization: 農業生物資源研究所作物ゲノム
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  fullname: 王, 寧
  organization: 農業生物資源研究所作物ゲノム
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  fullname: 蛯谷, 武志
  organization: 富山県農林水産総合技術センター
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  fullname: 山‍口‍, 琢‍也‍
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  fullname: 久保, 堅司
  organization: 農研機構東北農業研究センター福島研究拠点
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References 吉田 均・長戸康郎(2008).開花せず花粉を飛散しにくいイネの突然変異体と原因遺伝子の同定.農林水産技術研究ジャーナル 31: 26–29
Wang, N., N.S. Ning, M. Pourkheirandish, I. Honda and T. Komatsuda (2013) An alternative mechanism for cleistogamy in barley. Theor. Appl. Genet. 126: 2753–2762.
Nagasawa, N., M. Miyoshi, Y. Sano, H. Satoh, H. Hirano, H. Sakai and Y. Nagato (2003) SUPERWOMAN1 and DROOPING LEAF genes control floral organ identity in rice. Development 130: 705–718.
Yoshida, H. (2012) Is the lodicule a petal: molecular evidence? Plant Sci. 184: 121–128.
Honda, I., Y. Turuspekov, T. Komatsuda and Y. Watanabe (2005) Morphological and physiological analysis of cleistogamy in barley (Hordeum vulgare). Physiol. Plant. 124: 524–531.
Ning, S., N. Wang, S. Sakuma, M. Pourkheirandish, T. Koba and T. Komatsuda (2013b) Variation in the wheat AP2 homoeologs, the genes underlying lodicule development. Breed. Sci. 63: 255–266.
藤田雅也・渡辺好昭・久保堅司・八田浩一・小田俊介・松中 仁‍(2009)コムギ系統「U24」における閉花受粉性の要因.育種学研究 11(別2): 386.
久保堅司・河田尚之・藤田雅也・八田浩一・松中 仁・小田俊介・波多野哲也・関 昌子・吉岡藤治・乙部千雅子・中島 隆(2012)閉花性で赤かび病抵抗性に優れる「小麦中間母本農9号」(赤かび系3号)の育成.九州沖縄農研報告 57: 21–34.
Kubo, K., M. Fujita, N. Kawada, T. Nakajima, K. Nakamura, H. Maejima, T. Ushiyama, K. Hatta and H. Matsunaka (2013) Minor differences in anther extrusion affect resistance to Fusarium head blight in wheat. J. Phytopathol. 161: 308–314.
藤田雅也・松中 仁・久保堅司・八田浩一・A. Hamada・奥本 裕・新田みゆき・那須田周平(2011)「U24」と「あやひかり」の倍加半数体系統を用いたコムギの閉花受粉性に関するQTL解析.育種学研究 13(別2): 250.
Ohmori, S., H. Tabuchi, O. Yatou and H. Yoshida (2012) Agronomic traits and gene containment capability of cleistogamous rice lines with the superwoman1-cleistogamy mutation. Breed. Sci. 62: 124–132.
Turuspekov, Y., Y. Mano, I. Honda, N. Kawada, Y. Watanabe and T. Komatsuda (2004) Identification and mapping of cleistogamy genes in barley. Theor. Appl. Genet. 109: 480–487.
Fujita, M., Y. Watanabe, I. Honda, H. Eguchi, H. Matsunaka, C. Kiribuchi-Otobe and M. Seki (2005) Inheritance of the cleis­togamy in wheat (Triticum aestivum L. var. “U24”). Proceedings of 10th SABRAO, G-9.
星川清親(1975)「解剖図説 イネの生長」農文協,東京. p. 249.
Hamada, A., M. Nitta, S. Nasuda, K. Kato, M. Fujita, H. Matsunaka and Y. Okumoto (2012) Novel QTLs for growth angle of seminal roots in wheat (Triticum aestivum L.) Plant Soil 354: 395–405.
Yoshida, H. and Y. Nagato (2011) Flower development in rice. J. Exp. Bot. 62: 4719–4730.
Kubo, K., N. Kawada, M. Fujita, K. Hatta, S. Oda and T. Nakajima (2010) Effect of cleistogamy on Fusarium head blight resistance in wheat. Breed. Sci. 60: 405–411.
Yao, S.G., S. Ohmori, M. Kimizu and H. Yoshida (2008) Unequal genetic redundancy of rice PISTILLATA orthologs, OsMADS2 and OsMADS4, in lodicule and stamen development. Plant Cell Physiol. 49: 853–857.
Ueno, K. and H. Itoh (1997) Cleistogamy in wheat: genetic control and the effect of environmental conditions. Cereal Res. Comm. 25: 185–189.
Yoshida, M., N. Kawada and T. Nakajima (2007) Effect of infection timing on Fusarium head blight and mycotoxin accumulation in open- and closed-flowering barley. Phytopathology 97: 1054–1062.
Ning, S., N. Wang, S. Sakuma, M. Pourkheirandish, J. Wu, T. Matsumoto, T. Koba and T. Komatsuda (2013a) Structure, tran­scription and post-transcriptional regulation of the bread wheat orthologs of the barley cleistogamy gene Cly1. Theor. Appl. Genet. 126: 1273–1283.
Yoshida, H., J. Itoh, S. Ohmori, K. Miyoshi, A. Horigome, E. Uchida, M. Kimizu, Y. Matsumura, M. Kusaba, H. Satoh et al. (2007) superwoman1-cleistogamy, a hopeful allele for gene containment in GM rice. Plant Biotechnol. J. 5: 835–846.
Kurauchi, N., T. Makino and S. Hirose (1994) Inheritance of cleistogamy-chasmogamy in barley. Barley Genet. Newsl. 23: 19.
Nagao, S. and M. Takahshi (1954) Genetical studies on rice plant. XVIII. Some histological and genetical observations on cleis­togamous spikelets. Jpn. J. Breed. 4: 135–139.
Nair, S.K., N. Wang, Y. Turuspekov, M. Pourkheirandish, S. Sinsuwongwat, G. Chen, M. Sameri, A. Tagiri, I. Honda, Y. Watanabe et al. (2010) Cleistogamous flowering in barley arises from the suppression of microRNA-guided HvAP2 mRNA cleavage. Proc. Natl. Acad. Sci. USA 107: 490–495.
References_xml – reference: 久保堅司・河田尚之・藤田雅也・八田浩一・松中 仁・小田俊介・波多野哲也・関 昌子・吉岡藤治・乙部千雅子・中島 隆(2012)閉花性で赤かび病抵抗性に優れる「小麦中間母本農9号」(赤かび系3号)の育成.九州沖縄農研報告 57: 21–34.
– reference: Fujita, M., Y. Watanabe, I. Honda, H. Eguchi, H. Matsunaka, C. Kiribuchi-Otobe and M. Seki (2005) Inheritance of the cleis­togamy in wheat (Triticum aestivum L. var. “U24”). Proceedings of 10th SABRAO, G-9.
– reference: 吉田 均・長戸康郎(2008).開花せず花粉を飛散しにくいイネの突然変異体と原因遺伝子の同定.農林水産技術研究ジャーナル 31: 26–29.
– reference: Nair, S.K., N. Wang, Y. Turuspekov, M. Pourkheirandish, S. Sinsuwongwat, G. Chen, M. Sameri, A. Tagiri, I. Honda, Y. Watanabe et al. (2010) Cleistogamous flowering in barley arises from the suppression of microRNA-guided HvAP2 mRNA cleavage. Proc. Natl. Acad. Sci. USA 107: 490–495.
– reference: Yao, S.G., S. Ohmori, M. Kimizu and H. Yoshida (2008) Unequal genetic redundancy of rice PISTILLATA orthologs, OsMADS2 and OsMADS4, in lodicule and stamen development. Plant Cell Physiol. 49: 853–857.
– reference: Kurauchi, N., T. Makino and S. Hirose (1994) Inheritance of cleistogamy-chasmogamy in barley. Barley Genet. Newsl. 23: 19.
– reference: Kubo, K., N. Kawada, M. Fujita, K. Hatta, S. Oda and T. Nakajima (2010) Effect of cleistogamy on Fusarium head blight resistance in wheat. Breed. Sci. 60: 405–411.
– reference: Wang, N., N.S. Ning, M. Pourkheirandish, I. Honda and T. Komatsuda (2013) An alternative mechanism for cleistogamy in barley. Theor. Appl. Genet. 126: 2753–2762.
– reference: Nagao, S. and M. Takahshi (1954) Genetical studies on rice plant. XVIII. Some histological and genetical observations on cleis­togamous spikelets. Jpn. J. Breed. 4: 135–139.
– reference: Nagasawa, N., M. Miyoshi, Y. Sano, H. Satoh, H. Hirano, H. Sakai and Y. Nagato (2003) SUPERWOMAN1 and DROOPING LEAF genes control floral organ identity in rice. Development 130: 705–718.
– reference: Honda, I., Y. Turuspekov, T. Komatsuda and Y. Watanabe (2005) Morphological and physiological analysis of cleistogamy in barley (Hordeum vulgare). Physiol. Plant. 124: 524–531.
– reference: Ning, S., N. Wang, S. Sakuma, M. Pourkheirandish, J. Wu, T. Matsumoto, T. Koba and T. Komatsuda (2013a) Structure, tran­scription and post-transcriptional regulation of the bread wheat orthologs of the barley cleistogamy gene Cly1. Theor. Appl. Genet. 126: 1273–1283.
– reference: Ueno, K. and H. Itoh (1997) Cleistogamy in wheat: genetic control and the effect of environmental conditions. Cereal Res. Comm. 25: 185–189.
– reference: Ning, S., N. Wang, S. Sakuma, M. Pourkheirandish, T. Koba and T. Komatsuda (2013b) Variation in the wheat AP2 homoeologs, the genes underlying lodicule development. Breed. Sci. 63: 255–266.
– reference: 藤田雅也・渡辺好昭・久保堅司・八田浩一・小田俊介・松中 仁‍(2009)コムギ系統「U24」における閉花受粉性の要因.育種学研究 11(別2): 386.
– reference: 藤田雅也・松中 仁・久保堅司・八田浩一・A. Hamada・奥本 裕・新田みゆき・那須田周平(2011)「U24」と「あやひかり」の倍加半数体系統を用いたコムギの閉花受粉性に関するQTL解析.育種学研究 13(別2): 250.
– reference: Ohmori, S., H. Tabuchi, O. Yatou and H. Yoshida (2012) Agronomic traits and gene containment capability of cleistogamous rice lines with the superwoman1-cleistogamy mutation. Breed. Sci. 62: 124–132.
– reference: Hamada, A., M. Nitta, S. Nasuda, K. Kato, M. Fujita, H. Matsunaka and Y. Okumoto (2012) Novel QTLs for growth angle of seminal roots in wheat (Triticum aestivum L.) Plant Soil 354: 395–405.
– reference: Yoshida, H., J. Itoh, S. Ohmori, K. Miyoshi, A. Horigome, E. Uchida, M. Kimizu, Y. Matsumura, M. Kusaba, H. Satoh et al. (2007) superwoman1-cleistogamy, a hopeful allele for gene containment in GM rice. Plant Biotechnol. J. 5: 835–846.
– reference: Yoshida, H. and Y. Nagato (2011) Flower development in rice. J. Exp. Bot. 62: 4719–4730.
– reference: Yoshida, M., N. Kawada and T. Nakajima (2007) Effect of infection timing on Fusarium head blight and mycotoxin accumulation in open- and closed-flowering barley. Phytopathology 97: 1054–1062.
– reference: 星川清親(1975)「解剖図説 イネの生長」農文協,東京. p. 249.
– reference: Kubo, K., M. Fujita, N. Kawada, T. Nakajima, K. Nakamura, H. Maejima, T. Ushiyama, K. Hatta and H. Matsunaka (2013) Minor differences in anther extrusion affect resistance to Fusarium head blight in wheat. J. Phytopathol. 161: 308–314.
– reference: Turuspekov, Y., Y. Mano, I. Honda, N. Kawada, Y. Watanabe and T. Komatsuda (2004) Identification and mapping of cleistogamy genes in barley. Theor. Appl. Genet. 109: 480–487.
– reference: Yoshida, H. (2012) Is the lodicule a petal: molecular evidence? Plant Sci. 184: 121–128.
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SubjectTerms イネ
オオムギ
コムギ
交雑防止
赤かび病抵抗性
閉花受粉性
Title 作物の閉花受粉性~その分子機構と育種における利用
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