首页> 外文期刊>Journal of Food Composition and Analysis >Estimation and multi-variate analysis of iron and zinc concentration in a diverse panel of urdbean (Vigna mungo L. Hepper) genotypes grown under differing soil conditions
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Estimation and multi-variate analysis of iron and zinc concentration in a diverse panel of urdbean (Vigna mungo L. Hepper) genotypes grown under differing soil conditions

机译:不同土壤条件下种植尿布(Vigna Mungo L. HEPPER)基因型中铁和锌浓度的估计和多变异分析

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摘要

Urdbean is an important pulse crop in South Asia and has the potential to be a global food legume due to its rich nutrient profile. Therefore, identification of sources with high concentration of iron and zinc is important for overcoming the problem of micronutrient malnutrition. In the present study, 83 urdbean genotypes of diverse origin were tested for iron and zinc concentrations over two locations. Analysis of variance showed that genotype effects were significant for both traits over both locations. Iron concentration ranged from 19-235 mg/kg (mean 117 mg/kg) and 16-255 mg/kg (mean 91 mg/kg) among tested genotypes at the first and second locations, respectively. For zinc concentration it ranged from 5-134 mg/kg (mean 44 mg/kg) at first location, while at second location it was between 12-59 mg/kg (mean 29 mg/kg). Combined analysis of variance showed the 'genotype (G)', 'location (L)' and 'genotype' (G) x 'location' (L) interaction effects significant for both micronutrient concentrations. For high iron concentration, most stable urdbean genotypes (PU 31 and IPU 99-43) were identified using GGEBiplot analysis. Similarly, highly stable genotypes for high concentration of zinc were BGP 28 and HPU 120. This study has identified useful donors and enhanced our knowledge towards the development of biofortified urdbean cultivars.
机译:Urdbean是南亚的一个重要脉搏作物,由于其营养学概况丰富,有可能成为全球食物豆科植物。因此,具有高浓度铁和锌的来源对于克服微量营养素营养不良的问题是重要的。在本研究中,在两个地点上测试了83种不同起源的核心基因型。方差分析表明,基因型效应对于两个位置上的特征都很重要。在第一和第二位置的测试基因型中,铁浓度范围为19-235mg / kg(平均117mg / kg)和16-255mg / kg(平均91mg / kg)。对于锌浓度,它在第一位置的5-134mg / kg(平均44mg / kg)范围内,而在第二位置处为12-59mg / kg(平均29mg / kg)。转方的组合分析显示“基因型(G)”,'位置(L)'和'基因型'(G)X'定位'(L)相互作用对微量营养素浓度的显着性。对于高铁浓度,使用GGEBiplot分析鉴定了最稳定的核素基因型(PU 31和IPU 99-43)。类似地,高浓度的锌的高度稳定基因型是BGP 28和HPU 120.本研究已确定有用的捐助者,并提高了我们对生物化核糖品种的发展的知识。

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