Identification of aluminum resistant Andean common bean (Phaseolus vulgaris L.) genotypes

M. Blair, Hernán D. López-Marín, I. Rao
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引用次数: 29

Abstract

Aluminum (Al) toxicity is the principal abiotic constraint in acid soils of the tropics. Common bean, meanwhile, is for the most part very sensitive to this stress although certain genotypes within the species show some level of resistance, justifying screening of germplasm from both the Andean and Mesoamerican genepools to identify better performing sources. The objective of this study was to evaluate 36 genotypes of common bean under hydroponic conditions to identify root morphological traits that could be associated with Al resistance. A total of five root traits (elongation rate of the primary root, total root length, root biomass, average root diameter and specific root length) were measured using a simple nutrient solution with or without Al (20 µM) over a 48 hour growth period with the experiments conducted in five replicates. We found that genotypes from the Andean gene pool were more resistant to Al than Mesoamerican genotypes under these conditions, based on a smaller decrease in the elongation rate of the primary root, total root length, specific root length and a lesser increase in root diameter in the presence of Al in nutrient solution. These root traits but not root biomass can serve as selection criteria to distinguish between Al-resistant and Al-sensitive genotypes.
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安第斯菜豆抗铝基因型的鉴定
铝(Al)毒性是热带酸性土壤的主要非生物限制。与此同时,普通豆在很大程度上对这种压力非常敏感,尽管物种内的某些基因型表现出一定程度的抗性,这证明了从安第斯和中美洲基因库中筛选种质以确定更好的来源是合理的。本研究的目的是在水培条件下对36个基因型的普通豆进行评价,以确定可能与铝抗性相关的根系形态性状。采用添加或不添加Al(20µM)的简单营养液,在48 h的生长期内测定了5个根系性状(主根伸长率、总根长、根系生物量、平均根径和比根长),试验分5个重复进行。我们发现,在这些条件下,来自安第斯基因库的基因型比中美洲基因型对铝的抗性更强,这是基于在营养液中存在铝的情况下,主根伸长率、总根长、比根长下降幅度较小,根直径增加幅度较小。这些根系性状(而非根系生物量)可以作为区分铝抗性基因型和铝敏感基因型的选择标准。
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