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Genetic variations in root morphology and phosphorus efficiency of Pinus massoniana under heterogeneous and homogeneous low phosphorus conditions

机译:均质低磷条件下马尾松根系形态和磷效率的遗传变异

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The vertical distribution of available phosphorus (P) in the soil is usually heterogeneous with soil depth. However, little is known about the P efficiency of conifer species under vertically heterogeneous low-P conditions. The purpose of this study was to investigate the genetic variations in growth traits and P efficiency of Pinus massoniana, under heterogeneous and homogeneous low-P conditions. Pot experiments consisting of low-P (a low P level in all soil layers), layered-P (a high P level in the topsoil and a low P level in the bottom soil), and high-P (high P levels in all soil layers) conditions were designed and conducted. Three-way ANOVA was used to investigate genetic variations in P efficiency and the major growth traits under these three types of P conditions. There were substantial genetic variations in the major growth traits, including tree height, stem diameter and seedling dry weight, under both heterogeneous and homogeneous low-P conditions. The heritability for major growth traits was high under both types of low-P condition. Moreover, there were significant genotype x P interaction effects for growth parameters. Our results indicate that it may be possible to select Masson pine genotypes with high P efficiency and productivity. The significant genotype x environment interactions should be exploited in breeding, and genotypes showing specific adaptations to certain nutrient environments should be bred and used within that environment.
机译:土壤中有效磷的垂直分布通常随土壤深度而异。但是,对于垂直非均质低磷条件下针叶树种的磷效率知之甚少。本研究的目的是研究异质和均质低磷条件下马尾松生长性状和磷效率的遗传变异。盆栽试验由低磷(所有土壤层中的低磷水平),分层磷(表层土壤中的高磷水平和底部土壤中的低磷水平)和高磷(所有土壤中的高磷水平)组成设计和实施土壤层)条件。三向方差分析用于研究这三种类型的磷条件下磷效率和主要生长性状的遗传变异。在非均质和均质低磷条件下,主要生长性状(包括树高,茎直径和幼苗干重)均存在显着的遗传变异。在两种低磷条件下,主要生长性状的遗传力均较高。此外,对于生长参数,存在显着的基因型x P交互作用。我们的结果表明,有可能选择具有高磷效率和高生产力的马尾松基因型。在育种中应利用显着的基因型x环境相互作用,并应在该环境中培育并使用表现出对某些营养环境的特定适应性的基因型。

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