• Title/Summary/Keyword: japonica L. branches

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Novel quantitative trait loci for the strong-culm and high-yield related traits in rice detected from the F2 population between the super thick-culm and super grain-bearing line 'LTAT-29' and the high-yielding variety 'Takanari'

  • Nomura, Tomohiro;Yamamoto, Toshio;Ueda, Tadamasa;Yonemaru, Junichi;Abe, Akira;Adachi, Shunsuke;Hirasawa, Tadashi;Ookawa, Taiichiro
    • Proceedings of the Korean Society of Crop Science Conference
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    • 2017.06a
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    • pp.95-95
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    • 2017
  • Lodging is a serious issue in rice production, because it drastically decreases the biomass production and grain yield. Since the Green Revolution, the lodging resistance has been increased by lowering the moment of above-ground parts due to the short culm by the semi-dwarf gene sd1. However, it has been pointed out that sd1 alone has suppressive effects for biomass production and yield. To increase rice yield, the long-culm and large panicle type varieties with a superior lodging resistance need to be developed. To improve the lodging resistance and yield of these type varieties, it would be effective to identify novel alleles for these traits underlying natural variations in rice and to pyramid these alleles to a single rice variety. In order to perform this strategy, we have developed new rice lines derived from crosses among varieties with superior alleles. At first, TULT-gh-5-5 was selected from a cross between strong culm and high biomass variety Leaf Star and high-yielding variety Takanari, and TUAT-32HB was selected from a cross between high-yielding variety Akenohoshi and Takanari. Then, we developed the super thick-culm and super grain-bearing line, LTAT-29 derived from a cross between TULT-gh-5-5 and TUAT-32HB. In the current study, to identify the QTLs and genes relating to the strong culm and the high yield of LTAT-29, we performed QTL analysis using SNPs markers with $F_2$ population derived from a cross between LTAT-29 and Takanari. LTAT-29 has never lodged throughout the growth period despite it had long culms and heavy panicles. LTAT-29 had a larger outer diameter of the culm and twice the size of the section modulus than Takanari. As a result, the bending moment at breaking of LTAT-29 was significantly larger than that of Takanari. Brown rice yield of LTAT-29 was $9.2t\;ha^{-1}$ about 10% higher than that of Takanari due to the larger number of spikelets per panicle. LTAT-29 had a greater number of secondary branches per panicle. In the $F_2$ population between LTAT-29 and Takanari, we found continuous frequency distributions in the section modulus and the spikelet number per panicle. Two QTLs increased the section modulus by the alleles of LTAT-29 were detected on Chr.1L and Chr.2L. One QTL increased the spikelet number per panicle of Takanari by the allele of LTAT-29 was detected on Chr.1L, and two QTLs increased the number of secondary branches per panicle by the alleles of LTAT-29 were detected on Chr.1L and Chr.4L. It was found that the alleles of these QTLs were the japonica type originated from Leaf Star or Akenohoshi. The novel QTLs for the traits related to super thick-culm and super grain-bearing and their combinations could be utilized for improving the lodging resistance and yield in rice varieties.

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Effect of Wollastonite and Nitrogen Application on the Growth of Rice Plant (퇴화염토에서 수도생육에 대한 질소와 규회석의 시용효과)

  • 김규진;이주열
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.26 no.4
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    • pp.279-286
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    • 1981
  • This study was conducted to find out the effect of wollastonite application in degraded saline soil condition on the growth of japonica rice variety. The variety, Palgweng was tested with 4 levels of wollastonite (200, 400, 600 and 400/200 kg/l0a) and two nitrogen levels (12 and 16 kg/l0a). The effect of wollastonite was higher in 16 than 12 kg of nitrogen application. The wollastonite application reduced rice leaf blast and dead left at lower nodal position, and increased percentage of effective tillers, percentage of ripened grains and 1, 000 grain weight. The SiO$_2$ content of upper leaf was higher than lower leaf in 200 kg of wollastonite application, but there was no difference under high wollastonite application (400 kg/l0a). Highly significant positive correlationships were obtained between SiO_2 content of plant at heading and percentage of ripened grains, (r=0.613) and SiO_2 content of flag leaf and percentage of ripened grains (r=0.407). Wollastonite application did not affect the development and degeneration of primary and secondary rachis branches of panicles, but it increased the number of spikelets. The highest grain yield was obtained with 16 kg of nitrogen and 600 kg of wollastonite.

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