首页> 外文期刊>Revista Brasileira de Ciência do Solo >Variability of root traits in common bean genotypes at different levels of phosphorus supply and ontogenetic stages
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Variability of root traits in common bean genotypes at different levels of phosphorus supply and ontogenetic stages

机译:不同磷素供应水平和个体发育阶段普通豆基因型根系性状的变异性

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Selection of common bean (Phaseolus vulgaris L.) cultivars with enhanced root growth would be a strategy for increasing P uptake and grain yield in tropical soils, but the strong plasticity of root traits may compromise their inclusion in breeding programs. The aim of this study was to evaluate the magnitude of the genotypic variability of root traits in common bean plants at two ontogenetic stages and two soil P levels. Twenty-four common bean genotypes, comprising the four growth habits that exist in the species and two wild genotypes, were grown in 4 kg pots at two levels of applied P (20 and 80 mg kg-1) and harvested at the stages of pod setting and early pod filling. Root area and root length were measured by digital image analysis. Significant genotype × P level and genotype × harvest interactions in analysis of variance indicate that the genotypic variation of root traits depended on soil nutrient availability and the stage at which evaluation was made. Genotypes differed for taproot mass, basal and lateral root mass, root area and root length at both P levels and growth stages; differences in specific root area and length were small. Genotypes with growth habits II (upright indeterminate) and III (prostrate indeterminate) showed better adaptation to limited P supply than genotypes of groups I (determinate) and IV (indeterminate climbing). Between the two harvests, genotypes of groups II and III increased the mass of basal and lateral roots by 40 and 50 %, respectively, whereas genotypes of groups I and IV by only 7 and 19 %. Values of the genotypic coefficient of determination, which estimates the proportion of phenotypic variance resulting from genetic effects, were higher at early pod filling than at pod setting. Correlations between shoot mass and root mass, which could indicate indirect selection of root systems via aboveground biomass, were higher at early pod filling than at pod setting. The results indicate that selection for root traits in common bean genotypes should preferentially be performed at the early pod-filling stage.
机译:选择具有增强的根系生长的普通豆(Phaseolus vulgaris L.)品种将是增加热带土壤中磷吸收和籽粒产量的一种策略,但是根系性状的强可塑性可能会损害它们在育种程序中的吸收。这项研究的目的是评估在两个个体发育阶段和两个土壤磷水平下普通豆类植物根系性状的基因型变异量。包括该物种中存在的四种生长习性和两种野生基因型在内的二十四种普通豆基因型在4 kg盆中以两种施磷水平(20和80 mg kg-1)生长,并在荚果阶段收获设置和早期灌装。通过数字图像分析测量根的面积和根的长度。方差分析中显着的基因型×P水平和基因型×收获交互作用表明根系性状的基因型变异取决于土壤养分的有效性和评估阶段。在P水平和生长期,主根质量,基部和侧根质量,根部面积和根长的基因型不同。比根面积和长度的差异很小。具有生长习惯II(直立不定)和III(俯卧不定)的基因型显示出比有限的I组(IV)和IV组(不定攀援)的基因型更好地适应有限的磷供应。在两次收获之间,II和III组的基因型分别使基部和侧根的质量增加40%和50%,而I和IV组的基因型仅增加7%和19%。确定基因型系数的值(估计由遗传效应引起的表型变异的比例)在早期荚果灌装中比在荚果设置时高。荚果灌浆与根系质量之间的相关性可能表明通过地上生物量间接选择了根系,在荚果灌浆早期比荚果设置高。结果表明,普通豆基因型根性状的选择应优先在豆荚灌装早期进行。

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