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Characteristic of dry-matter accumulation and nitrogen-uptake of super-high-yielding early rice in China.

机译:中国超高产早稻干物质积累和氮素吸收特征。

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摘要

Chinese super-high yield rice (Oryza sativa L.) breeding project has developed many new varieties with high yield capacity. But there is a lack of information about the dry matter and N accumulation and translocation promoting grain yield of super-high yield early rice (SER). This study was conducted to compare grain yield, and the association of dry matter and N accumulation and translocation between super-high yield early rice and ordinary early rice (OER). Three SER varieties Lingliangyou268, Jinyou458, and Luliangyou996, and two OER varieties Zhuliangyou09 and Jinyou463 were grown in Yujiang County, Jiangxi Province, China, in 2008 and 2009. Grain yield, yield components, dry matter and N accumulation, and dry matter and N translocation related parameters were measured for each variety. A significant difference in grain yield was observed among the varieties and varietal groups. The SER varieties increased rice yield by 20.2% compared with OER varilated eties. The higher yield of SER varieties was attributed to larger panicle size, which resulted in large sink size. Differences between SER varieties and OER varieties in translocation-related parameters were found. Dry matter and N accumulation and translocation-related parameters were greater for SER varieties compared to OER varieties. Grain yield was positively and significantly correlated with dry matter and N translocation-reparameters, suggesting that the sink strength could be involved in the translocation-related parameters.
机译:中国超高产水稻育种项目已经开发出许多具有高产量的新品种。但是缺乏有关超高产早稻(SER)干物质,氮素积累和转运促进籽粒产量的信息。这项研究的目的是比较谷物产量,以及超高产早稻和普通早稻(OER)之间干物质与氮素积累和转运的关系。 2008年和2009年在江西省余江县种植了3个SER品种Lingliangyou268,Jinyou458和Luliangyou996,以及两个OER品种Zhuliangyou09和Jinyou463。粮食产量,产量构成,干物质和氮素积累,干物质和氮素测量每个品种的易位相关参数。在品种和品种组之间观察到谷物产量的显着差异。 SER品种比OER变异品种提高了20.2%的水稻产量。 SER品种的高产量归因于较大的穗大小,从而导致较大的水槽大小。发现SER变种和OER变种在易位相关参数上的差异。与OER品种相比,SER品种的干物质,氮积累和转运相关参数更大。籽粒产量与干物质和N易位参数正相关且显着相关,这表明下沉强度可能与易位相关参数有关。

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