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Maximum node production rate and main culm node number contributions to yield and yield-related traits in rice

机译:水稻最大结节率和主茎结节数对产量及产量相关性状的贡献

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摘要

Preliminary studies have suggested that maximum node production rate and main culm node number may be useful as selection criteria in breeding for improved rice (Oryza sativa L.) cultivars. The objective of this research was to determine the significance of the direct effects of maximum node production rate and main culm node number on 15 yield-related traits (filled grain percentage, mass per panicle, maximum tiller density, number of degree-days to heading, LAI at heading, number of spikelets per panicle, panicle density, plant height, panicle length, and the masses of panicles, leaves, and stems at heading and at harvest) and their subsequent direct effects on grain yield. Correlation and path analyses were used to analyze data from field experiments involving 15 lines that represented the combinations of low and high levels of four important yield determinants -- maximum number of tillers, grain mass, main culm node number, and panicle mass. Maximum node production rate had a negative direct effect on degree-days to heading (p = -0.35) and positive direct effects on maximum tiller density (p = 0.59), panicle mass at harvest (p = 0.48), panicle density (p = 0.40), LAI at heading (p = 0.37), panicle weight (p = 0.36), and on the masses of leaves(p = 0.39), panicles (p = 0.35), and stems (p = 0.32) at heading. Main culm node number had significant direct effects on degree-days to heading (p = 0.98), plant height (p = 0.75), LAI at heading (p = 0.54), maximum tiller density (p = 0.33), stem massat harvest (p = 0.53), and the masses of stems (p = 0.58), leaves (p = 0.54), and panicles (p = 0.42) at heading. Five of the traits that maximum node production rate and main culm node number directly affected (degree-days to heading, mass per panicle, panicle density, and stem mass at heading and harvest) had subsequent direct effects on grain yield.
机译:初步研究表明,最大结节生产率和主茎结节数目可作为育种改良水稻(Oryza sativa L.)品种的选择标准。这项研究的目的是确定最大结节产率和主要茎节数对15个与产量相关的性状(实粒率,每穗质量,最大分er密度,抽穗期天数)的直接影响的意义。 ,抽穗期的LAI,每穗的小穗数,穗密度,株高,穗长以及抽穗期和收获时穗,叶和茎的质量)及其随后对谷物产量的直接影响。相关性和路径分析用于分析来自15个品系的田间试验的数据,这些品系代表了四个重要产量决定因素的低水平和高水平的组合-分of的最大数量,谷物质量,主要茎节数和穗茎质量。最大结节生产率对抽穗数天数具有负面直接影响(p = -0.35),并且对最大分till密度(p = 0.59),收获时的穗重(p = 0.48),穗密度(p = 0.40),抽穗期的LAI(p = 0.37),穗重(p = 0.36)和叶片质量(p = 0.39),穗状花序(p = 0.35)和茎的质量(p = 0.32)。主茎节数对抽穗数天数(p = 0.98),株高(p = 0.75),抽穗期LAI(p = 0.54),最大分till密度(p = 0.33),茎秆收获量( p = 0.53),茎上的茎(p = 0.58),叶(p = 0.54)和穗的质量(p = 0.42)。最大结节生产率和主要茎节数直接影响的五个特征(抽穗天数,每穗质量,穗密度和抽穗和收获时的茎重)对谷物产量产生直接影响。

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