利用水稻(Oryza sativa L.)产量及产量相关性状的遗传变异性和性状关联性

Lavkesh Kumar Lodhi, Bineeta Singh, Shraddha Chowhan
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摘要

本研究考察了 17 个面包稻基因型,包括一个对照,以研究遗传参数、相关性和遗传多样性。该实验于 2021-22 年的旱季在 M.P. 萨特纳的 AKS 大学遗传学与植物育种研究农场进行,采用随机区组设计(RBD),三次重复。方差分析结果表明,17 个面包稻基因型在 14 个研究特征方面存在非常显著的差异。方差统计分析显示,在所有 14 个性状上,包括开花至 50%的天数、株高、单株有效分蘖、旗叶长度、成熟度、圆锥花序长度、籽粒长度和宽度、测试重量、收获指数、单株生物产量和单株谷物产量,各基因型之间均存在显著差异。结果表明,这些水稻作物基因型的花期短、株高高、单株有效分蘖多、旗叶长、圆锥花序长、单株粮食产量高。变异系数较低,表明基因型内部每个性状的变异很小。研究结果表明,水稻作物不同基因型的特征差异显著,有助于作物改良。基因型相关系数普遍高于表型相关系数。与生殖生长相关的性状,如每株有效分蘖数、每圆锥花序种子数和收获指数,对单株谷物产量有正向影响,而与无性生长相关的性状,如50%开花天数和株高,则有负向影响。路径系数分析表明,单株生物产量和收获指数对单株谷物产量的正效应最大,而每穗小穗数、每穗谷粒数、每株有效分蘖数、成熟天数和50%开花天数的负效应最大。这些发现为水稻作物改良提供了宝贵的启示。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Harnessing the Genetic Variability and Trait Association of Yield and Yield Related Traits in Rice (Oryza sativa L.)
The present investigation was conducted to examine the 17 bread rice genotypes including one check to study the genetic parameters, correlation and genetic diversity. The experiment was carried out in Research Farm Genetics & Plant Breeding of AKS University, Satna, M.P., during kharif season, 2021-22 in Randomized Block Design (RBD) with three replications. Analysis of variance showed highly significant differences among 17 bread rice genotypes for 14 characters studied. The statistical analysis of variance showed significant differences among genotypes for all 14 traits, including days to 50% flowering, plant height, effective tillers per plant, flag leaf length, maturity, panicle length, kernel length and width, test weight, harvest index, biological yield per plant and grain yield per plant. The results showed that these genotypes of rice crops have short flowering period, tall plant height, many effective tillers per plant, long flag leaf, long panicle and high grain yield per plant. The coefficients of variation were low, indicating little variation within the genotypes for each trait. The study results suggest significant variations in the characteristics of different genotypes of rice crops and can be useful for crop improvement. The genotypic correlation coefficients were generally higher than the phenotypic ones. Traits related to reproductive growth, such as number of effective tillers per plant, number of seeds per panicle, and harvest index, had positive effects on grain yield per plant, while traits related to vegetative growth, such as days to 50% flowering and plant height, had negative effects. The path coefficient analysis indicated that biological yield per plant and harvest index had the maximum positive effect on grain yield per plant, while spikelet’s per spike, grain per spike, effective tiller per plant, days to maturity, and days to 50% flowering had the maximum negative effect. These findings provide valuable insights for rice crop improvement.
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