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Agronomic Traits for High Productivity of Rice Grown in Aerobic Culture in Progeny of a Japonica Cultivar and a High-Yielding Indica Cultivar

机译:粳稻和高产In稻后代有氧栽培水稻高产的农艺性状

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Aerobic rice culture is a promising way to save water and achieve a high yield. The present study was conducted to identify the agronomic traits required for high rice productivity in aerobic culture using chromosomal segment substitution lines (CSSLs) obtained as progeny from the cross between Sasanishiki (japonica), as the recurrent parent and Habataki, a high-yielding indica cultivar with high spikelet production ability, grown under flooded and aerobic conditions in 2009 and 2011. Grain yields of the CSSLs in aerobic culture were similar to or higher than those in flooded culture in 2009, but were similar to or lower than those in flooded culture in 2011. There were significant effects of genotype and water environment on grain yield in both years. Most of the CSSLs had a higher grain yield than Sasanishiki in aerobic culture, whereas their average was close to that of Sasanishiki in flooded culture. Rice plants grown in aerobic culture had larger biomass production, which enabled most of the CSSLs to produce more spikelets per unit area and maintain single-grain weight, thereby producing a higher grain yield than Sasanishiki. These results suggest that high spikelet producing ability would promote high grain yield in aerobic culture.
机译:有氧水稻培养是节约用水和实现高产的有前途的方法。本研究的目的是鉴定作为有性繁殖体的Sasanishiki(japonica)与高产in稻Habataki的杂交后代获得的染色体片段替代系(CSSLs),从而在有氧培养中获得高水稻生产力所需的农艺性状小穗产量高的品种,在2009年和2011年在淹水和有氧条件下生长。有氧培养中CSSL的籽粒产量与2009年淹水栽培相似或高于,但与淹水栽培相似或低于在2011年。基因型和水环境对这两年的谷物产量都有显着影响。在有氧培养中,大多数CSSLs的谷物产量高于Sasanishiki,而在淹水养殖中,其平均收率接近Sasanishiki。在需氧培养中生长的水稻植物具有更高的生物量产量,这使大多数CSSLs能够在单位面积上产生更多的小穗并保持单粒重,从而比Sasanishiki产生更高的谷物产量。这些结果表明高小穗生产能力将促进有氧培养中的高谷物产量。

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