QTL analysis for flowering time using backcross population between Oryza sativa Nipponbare and O. rufipogon
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概要
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In the near future, global average temperature is expected to increase due to the accumulation of greenhouse gases, and increased temperatures will cause severe sterility in many crop species. In rice, since wild species show high genetic variation, they may have the potential to improve the flowering characters of cultivars. In this study, we investigated flowering characters under natural conditions by comparing an Asian wild rice accession of Oryza rufipogon W630 (originated from Myanmar) with a Japanese rice cultivar, O. sativa Japonica cv. Nipponbare. Further, QTL analysis for days to heading (DH) and spikelet opening time (SOT: the time of day when the spikelet opens) was carried out using BC2F8 backcross population derived from the cross between them. Regarding DH, four QTLs were detected, and two of them were found to have wild alleles with strong effects leading to longer days to heading during the Japanese summer. These wild alleles may be used to produce late-heading cultivars that do not flower during the high summer temperatures anticipated in the future. As for SOT, two parameters of SOTb (beginning time when the first spikelet opens) and SOTm (median time when 50% of the spikelets open) were recorded and the time differences from Nipponbare were investigated. Two QTLs on chromosomes 5 and 10 and two QTLs on chromosomes 4 and 5 were detected for SOTb and SOTm, respectively. The wild alleles were responsible for early spikelet opening time at all loci. If the wild alleles detected in this study have the same effects in the genetic background of other cultivars, they will be very useful in producing early-flowering rice cultivars that complete fertilization in the morning before the temperature rises.
- 日本遺伝学会の論文
- 2010-08-25
著者
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Ishikawa Ryo
Graduate School Of Agricultural Science Kobe University
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THANH Pham
Graduate School of Agricultural Science, Kobe University
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Thanh Pham
Laboratory of Plant Breeding, Graduate School of Agricultural Science, Kobe University
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Phan Phuong
Laboratory of Plant Breeding, Graduate School of Agricultural Science, Kobe University
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Ishikawa Ryo
Laboratory Of Plant Molecular Genetics Nara Institute Of Science And Technology
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Thanh Pham
Graduate School Of Agricultural Science Kobe University
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Phan Phuong
Graduate School Of Agricultural Science Kobe University
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Ishii Takashige
Graduate School Of Agricultural Sci. Kobe Univ.
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Ishii Takashige
Graduate School Of Agricultural Science Kobe University
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Ishii Takashige
Laboratory Of Plant Breeding Faculty Of Agriculture Kobe University
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Ishikawa Ryo
Laboratory Of Plant Breeding Graduate School Of Agricultural Science Kobe University
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Phan Phuong
Laboratory Of Plant Breeding Graduate School Of Agricultural Science Kobe University
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ISHII Takashige
Laboratory of Genetics, Faculty of Agriculture, Kyoto University
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