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不同基因型小扁豆中铁和锌含量的遗传变异性及基因型×环境互作分析

Analysis of genetic variability and genotype × environment interactions for iron and zinc content among diverse genotypes of lentil.

作者信息

Kumar Jitendra, Thavarajah Dil, Kumar Shiv, Sarker Ashutosh, Singh Narendra Pratap

机构信息

1Division of Crop Improvement, ICAR-Indian Institute of Pulses Research, Kanpur, India.

2Department of Agricultural and Environmental Sciences, Clemson University, Clemson, SC 29634 USA.

出版信息

J Food Sci Technol. 2018 Sep;55(9):3592-3605. doi: 10.1007/s13197-018-3285-9. Epub 2018 Jul 6.

Abstract

Deficiencies of iron (Fe) and zinc (Zn) are major problems in developing countries especially for woman and preschool children. Biofortification of staple food crops is a sustainable approach to improve human mineral intake via daily diet. Objectives of this study were to (1) determine the genetic variability for Fe and Zn content in cultivated indigenous and exotic lentil genotypes, and (2) determine the effect of genetic (G) × environmental (E) interaction on Fe and Zn content in 96 lentil genotypes grown in India over the 2 years. Significant genetic variability was observed for Fe and Zn content in lentil genotypes. Content ranged from 71.3 to 126.2 mg/kg for Fe, and 40.1 to 63.6 mg/kg for Zn. For Fe, cultivars and parental lines (71.3-126.2 mg/kg) showed slightly higher content than the breeding lines (76.8-124.3 mg/kg). For Zn, content were similar for both cultivars and breeding lines. However, year and the genotype × year interaction were significant for both Fe and Zn. Broad sense heritability estimates were found to be 45.8, 45.4 and 40.1 for Fe; 30.0, 63.0 and 69.0 for Zn content in breeding lines, cultivars/parental lines, and exotic lines, respectively. These heritability estimates indicated the potential of these lentil genotypes towards genetic improvement for increased Fe and Zn content using hybridization and selection over several generations. Significant positive correlation of Fe content and seed weight suggested a selection strategy for developing large seeded lentil for accumulation of more Fe in the seeds. No correlation was observed between Fe and Zn content. Further, recombination of Fe and Zn content is possible by developing recombination breeding. Thus present study findings would be useful in future for mapping and tagging the genes/QTL controlling Fe and Zn content and developing the improved biofortified cultivars.

摘要

铁(Fe)和锌(Zn)缺乏是发展中国家的主要问题,尤其是对妇女和学龄前儿童而言。主粮作物的生物强化是一种通过日常饮食改善人类矿物质摄入量的可持续方法。本研究的目的是:(1)确定栽培的本地和外来小扁豆基因型中铁和锌含量的遗传变异性;(2)确定在印度种植两年的96个小扁豆基因型中,遗传(G)×环境(E)相互作用对铁和锌含量的影响。在小扁豆基因型中观察到铁和锌含量存在显著的遗传变异性。铁含量范围为71.3至126.2毫克/千克,锌含量范围为40.1至63.6毫克/千克。对于铁,品种和亲本系(71.3 - 126.2毫克/千克)的含量略高于育种系(76.8 - 124.3毫克/千克)。对于锌,品种和育种系的含量相似。然而,年份以及基因型×年份的相互作用对铁和锌均具有显著影响。发现广义遗传力估计值在育种系、品种/亲本系和外来系中,铁分别为45.8、45.4和40.1;锌含量分别为30.0、63.0和69.0。这些遗传力估计值表明,通过几代杂交和选择,这些小扁豆基因型具有提高铁和锌含量的遗传改良潜力。铁含量与种子重量之间存在显著正相关,这表明了一种选择策略,即培育大粒小扁豆以在种子中积累更多的铁。未观察到铁和锌含量之间的相关性。此外,通过开展重组育种有可能实现铁和锌含量的重组。因此,本研究结果将有助于未来对控制铁和锌含量的基因/QTL进行定位和标记,并培育改良的生物强化品种。

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