期刊论文详细信息
Japanese Journal of Crop Science
Tillering Behavior in Oryza sativa L. : VIII. Relationship between the tillering position on the stem and the final leaf number of each tiller
Kiyochika HOSHIKAWA1  Yusuke GOTO1 
关键词: Flag leaf;    イネ;    Nodal position of tiller;    相対分げつ位;    Number of leaves;    相対葉位;    Relative leaf position;    同伸葉;    Relative tiller position;    止葉;    Synchronously emerging leaf;    分げつ位;    Tiller;    葉数;   
DOI  :  10.1626/jcs.60.392
学科分类:农业科学(综合)
来源: Nihon Sakumotsu Gakkai / Crop Science Society of Japan
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【 摘 要 】

Using two types of nodal position of tiller development (counted acropetally from base and basipetally from panicle), relationships between the nodal position of tiller development and the final number of leaves emerged on the tiller (LN) were investigated. To compare the tendency of LN between different tiller positions, we used two indicators, the relative leaf position (RLP) of the flag leaf (RLP-FL) and the relative tiller position (RTP). RLP is the leaf position expressed with the acropetal position of the "synchronously emerging leaf" of the main stem according to the Katayama's theory (Katayama, 1951) and RTP is the acropetal tiller position arranged in theoretical order of tiller emergence. According to the Katayama's theory, there should be no differences in RLP-FL among individual tillers. But in actual measurement, RLP-FL increased with tiller order in each RTP and with emergence order after panicle initiation. The developmental position of tiller was rearranged in basipetal order (bT-position : bT 1 designated the tiller from the axil of the flag leaf), the relationship between bT-position and LN of each tillers was analyzed. At bT 6 position and lower, LN decreased 1.0 by 1.0 for every upward node order, while at bT 5 position and upper, LN was reduced 0.5 by 0.5 for every upward node order. We concluded that the cause of the difference of these decreasing patterns depends on that the time of the tiller bud development is situated before or after panicle initiation of its mother stem.

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