Phenotyping revealed tolerance traits and genotypes for acidity and aluminum toxicity in European Vicia faba L

蚕豆 种质资源 生物 维西亚 营养物 开枪 土壤pH值 毒性 脯氨酸 基因型 农学 园艺 植物 土壤水分 化学 生物化学 生态学 有机化学 氨基酸 基因
作者
Kiflemariam Belachew,Cathrine Kiel Skovbjerg,Stig Uggerhøj Andersen,Frederick L. Stoddard
出处
期刊:Physiologia Plantarum [Wiley]
卷期号:176 (3)
标识
DOI:10.1111/ppl.14404
摘要

Abstract Soil acidity is a global issue; soils with pH <4.5 are widespread in Europe. This acidity adversely affects nutrient availability to plants; pH levels <5.0 lead to aluminum (Al 3+ ) toxicity, a significant problem that hinders root growth and nutrient uptake in faba bean ( Vicia faba L.) and its symbiotic relationship with Rhizobium . However, little is known about the specific traits and tolerant genotypes among the European faba beans. This study aimed to identify response traits associated with tolerance to root zone acidity and Al 3+ toxicity and potentially tolerant genotypes for future breeding efforts. Germplasm survey was conducted using 165 genotypes in a greenhouse aquaponics system. Data on the root and shoot systems were collected. Subsequently, 12 genotypes were selected for further phenotyping in peat medium, where data on physiological and morphological parameters were recorded along with biochemical responses in four selected genotypes. In the germplasm survey, about 30% of genotypes showed tolerance to acidity and approximately 10% exhibited tolerance to Al 3+ , while 7% showed tolerance to both. The phenotyping experiment indicated diverse morphological and physiological responses among treatments and genotypes. Acid and Al 3+ increased proline concentration. Interaction between genotype and environment was observed for ascorbate peroxidase activity, malondialdehyde, and proline concentrations. Genomic markers associated with acidity and acid+Al 3+ ‐toxicity tolerances were identified using GWAS analysis. Four faba bean genotypes with varying levels of tolerance to acidity and Al 3+ toxicity were identified.
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