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Performance of super hybrid rice cultivars grown under no-tillage and direct seeding

机译:免耕直播直接杂交超级稻品种的性能

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Good progress has been made in the super hybrid rice (Oryza sativa L.) breeding in China. However, rice yield not only depends on the genetic characteristics but also on the agronomic practices. No-tillage and direct seeding (NTDS) is a simplified cultivation technology that greatly simplifies both land preparation and crop establishment. Aiming to determine the grain yield performance of super hybrid rice under NTDS and to identify critical factors that determine grain yield, field experiments were conducted in Nanxian, Hunan Province, China in 2009 and 2010. Two super hybrid cultivars, Liangyoupeijiu and Y-liangyou 1, were grown under conventional tillage and transplanting (CTTP) and NTDS. Grain yield, yield components, biomass production, crop growth rate and biomass accumulation during sowing to heading (HD) and HD to maturity were measured for each cultivar. There was no difference in grain yield under NTDS and CTTP. However, grain yield differed with cultivar and year. Y-liangyou 1 produced 4 % higher grain yield than Liangyoupeijiu in 2009, whereas in 2010 both cultivars yielded similarly. Grain yields of both cultivars were higher in 2009 than in 2010. Higher grain yield of Y-liangyou 1 in 2009 was associated with higher spikelet filling (spikelet filling percentage and grain weight), which resulted from higher biomass production. Crop growth rate after HD was critical for biomass production by the super hybrid rice. We suggest that increasing the crop growth rate after HD is an effective approach to increase grain yield of super hybrid rice under NTDS.
机译:中国超级杂交水稻育种工作取得了良好进展。但是,水稻产量不仅取决于遗传特性,而且还取决于农艺实践。免耕和直接播种(NTDS)是一种简化的耕作技术,可大大简化土地准备和农作物种植。为了确定NTDS条件下超级杂交稻的产量表现并找出决定产量的关键因素,于2009年和2010年在中国湖南省南县进行了田间试验。良优培九和Y-liangyou 2个超级杂交品种在常规耕作和移栽(CTTP)和NTDS条件下生长。测量了每个品种的抽穗抽穗(HD)和HD到成熟期间的谷物产量,产量组成,生物量产量,作物生长速率和生物量积累。在NTDS和CTTP下,谷物产量没有差异。但是,谷物产量随品种和年份的不同而不同。 2009年,Y-粮油1号的产量比两优培九高4%,而在2010年,两个品种的产量相似。 2009年两个品种的籽粒产量均高于2010年。2009年Y-两优1籽粒产量较高与小穗灌浆(小穗灌浆百分率和籽粒重量)较高有关,这是由于生物量产量较高所致。 HD后的作物生长速度对于超级杂交稻的生物量生产至关重要。我们认为,在HDDS下提高HD后的作物生长速度是提高超级杂交稻籽粒产量的有效途径。

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