首页> 外文期刊>日本作物学会紀事 >Growth characteristics of submerged hill-seeded rice (Oryza sativa L.) in warmer regions of Japan - Difference of growth as compared with broadcast-seeded rice [Japanese]
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Growth characteristics of submerged hill-seeded rice (Oryza sativa L.) in warmer regions of Japan - Difference of growth as compared with broadcast-seeded rice [Japanese]

机译:日本较温暖的山地稻米(Oryza Sativa L.)的生长特征 - 与播种稻育苗相比,增长差异[日文]

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摘要

The growth characteristics of hill-seeded rice were compared with those of broadcast-seeded rice to establish the submerged direct seeding cultivation using a newly developed 'Shooting hill-seeder'. The hill-seeded rice suffered from severe growth competition among individuals at an earlier growth stage, and showed a decrease in tillering and dry matter production until the maximum-tillering stage. The nitrogen uptake at the panicle-initiation stage was higher in hill-seeded rice, because the growth reduction at the early growth stage resulted in higher nitrogen content during the period between maximum-tillering and full-heading stage. However, a higher nitrogen uptake did not increase the number of spikelets in hill-seeded rice because of a greater decrease in the nitrogen content during the period between maximum-tillering stage and panicle-initiation stage as compared with that in broadcast-seeded rice. Furthermore, in the hill-seeded rice, a higher LAI at the maturing stage and higher photosynthetic rate due to higher nitrogen content of leaf blade at the full-heading stage seemed to result in an increase of dry matter production during the ripening period. These results suggest that the number of spikelets is increased by the improvement of nitrogen application resulting in an increase in yield of hill-seeded rice.
机译:将山地稻米的生长特性与广播种子稻米进行比较,以使用新开发的“射击山播种机”建立淹没直接播种栽培。在早期的生长阶段,山苗患者患有严重的生长竞争,并且在最大分蘖期之前显示出分蘖和干物质产生的减少。胰岛淀粉稻的氮吸收较高,因为早期生长阶段的生长降低导致最大分蘖和全场阶段之间的氮含量较高。然而,较高的氮吸收性未增加山子籽米中的小磷胶的数量,因为在最大分蘖阶段和穗起始阶段之间的时段之间的氮含量较大,与广播播种稻米相比,氮含量较大。此外,在山坡上的水稻中,由于叶片在全场阶段的叶片含量较高的含氮阶段,光合速率较高似乎导致成熟时期的干物质产生增加。这些结果表明,通过氮施加的改善增加了尖峰的数量,从而提高了山地稻米产率的增加。

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