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Crop Physiology

Mutation of the SP1 gene is responsible for the small-panicle trait in the rice cultivar Tachisuzuka, but not necessarily for high sugar content in the stem

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Pages 90-94 | Received 01 Sep 2016, Accepted 07 Nov 2016, Published online: 28 Nov 2016

References

  • Kono, S. (2011). Similarity of artificial deflorated rice (common breed) to very short ear breed “Tachisuzuka” on the chemical composition. Japanese Journal of Grassland Science, 57, Extra Issue, 105**.
  • Li, S., Qian, Q., Fu, Z., Zeng, D., Meng, X., Kyozuka, J., … Wang, Y. (2009). Short panicle1 encodes a putative PTR family transporter and determines rice panicle size. The Plant Journal, 58, 592–605.10.1111/tpj.2009.58.issue-4
  • Matsushita, K., Iida, S., Ideta, O., Sunohara, Y., Maeda, H., Tamura, Y., … Takakuwa, M. (2011). ‘Tachisuzuka’, a new rice cultivar with high straw yield and high sugar content for whole-crop silage use. Breeding Science, 61, 86–92.10.1270/jsbbs.61.86
  • Matsushita, K., Ishii, T., Ideta, O., Iida, S., Sunohara, Y., Maeda, H., & Watanabe, H. (2014). Yield and lodging resistance of ‘Tachiayaka’, a novel rice cultivar with short panicles for whole-crop silage. Plant Production Science, 17, 202–206.10.1626/pps.17.202
  • Miyao, A., Tanaka, K., Murata, K., Sawaki, H., Takeda, S., Abe, Y., … Hirochika, H. (2003). Target site specificity of the Tos17 retrotransposon shows a preference for insertion within genes and against insertion in retrotransposon-rich regions of the genome. The Plant Cell, 15, 1771–1780.10.1105/tpc.012559
  • Murata, T., Hosaka, Y., Hirano, M., & Kuroda, E. (1997). Carbohydrate metabolism in leaf blades and stems of rice cultivar Akitakomachi at the ripening stage. Japanese Journal of Crop Science, 66, 221–228*.10.1626/jcs.66.221
  • Okamura, M., Hirose, T., Hashida, Y., Yamagishi, T., Ohsugi, R., & Aoki, N. (2013). Starch reduction in rice stems due to a lack of OsAGPL1 or OsAPL3 decreases grain yield under low irradiance during ripening and modifies plant architecture. Functional Plant Biology, 40, 1137–1146.
  • Wada, Y., Miura, K., & Watanabe, K. (1993). Effects of source-sink ratio on production and senescence of rice flag leaves during the ripening period. Japanese Journal of Crop Science, 62, 547–553*.10.1626/jcs.62.547