Performance of Biofortified Spring Wheat Genotypes for Grain Zinc and Iron Concentrations, Grain Yield and Associated Traits in Terai/plains of Nepal

K. Pant, Deepak Pandey, Rajendra Prasad Yadav, N. Gautam, Anjal Nainabasti, D. Thapa, S. R. Upadhyay
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Abstract

Breeding for nutrient-rich high yielding wheat varieties is one of the most economical and feasible ways to improve micronutrient deficiency ad hoc building better consumer health among the rural people of South Asia. To identify the Zinc (Zn) and Iron (Fe) enriched high yielding wheat genotypes, 7th Harvest Plus Yield Trial (7th HPYT) and 8th Harvest Plus Yield Trial (8th HPYT) both composed of 50 genotypes (including two CIMMYT checks " Kachu#1" and "Baj#1" and one Local Check "Gautam") were evaluated in alpha lattice design with 2 replications under timely sown irrigated condition at NWRP, Bhairahawa during 2016/17 and 2017/18. The grain Zn concentration and Fe concentration varies among genotypes from 23.8 to 42.4 ppm and 20.6 to 60.6 ppm, respectively. The highly significant positive correlation was found between grain zinc and iron concentration (r = 0.74** in 7th HPYT and r=0.67** in 8th HPYT). This highly positive significant relation between grain Zn and grain Fe indicates that it is feasible to simultaneously improve both micronutrients. In addition, this study reveals that thousand grains weight (TGW) has shown highly significant positive correlation (r = 0.3) with grain zinc and (r=0.4) with grain iron in 7th HPYT to non-significant negative correlation (r = -0.1) with grain zinc and (r=-0.1) with grain iron in 8th HPYT. As Nepali farmers major trait of interest second to grain yield is TGW, this showed that Zn and Fe enriched wheat varieties with higher TGW (bold grain) is feasible. The 9 genotypes in 7th HPYT and 48 genotypes in 8th HPYT showed higher grain yield than local check variety "GAUTAM" which indicates that bio-fortified genotypes are capable of producing higher grain yield with added micronutrient supplements in them. This study recommended 17 genotypes from the 7th HPYT and 38 genotypes from the 8thHPYT based on higher grain yield, grain Zn and Fe concentration and these lines were included in national yield trial for further evaluation in different agro-ecological domain of Nepal. The genotypes with higher grain Zn and Fe concentration viz., 7HPYT409, 7HPYT410, 8HPYT417, 8HPYT404 and 7HPYT442 could be used as donor parents in national wheat breeding program and high yielding genotypes 7HPYT448, 7HPYT418, 7HPYT426, 7HPYT413, 8HPYT415, 8HPYT431, 8HPYT429, 8HPYT407 and 8HPYT405 would be further evaluated throughout the Terai region of Nepal, and outstanding genotype could be recommended as variety for Terai/plains of Nepal.
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尼泊尔德赖/平原地区生物强化春小麦基因型在籽粒锌和铁浓度、籽粒产量及相关性状方面的表现
培育营养丰富的高产小麦品种是改善微量营养素缺乏症的最经济、最可行的方法之一,可为南亚农村居民带来更好的健康。为了确定富含锌(Zn)和铁(Fe)的高产小麦基因型,2016/17 年度和 2017/18 年度期间,在巴哈拉哈瓦的 NWRP,在适时播种灌溉条件下,对由 50 个基因型(包括两个 CIMMYT 对照 "Kachu#1 "和 "Baj#1 "以及一个当地对照 "Gautam")组成的第 7 次丰收增产试验(7th HPYT)和第 8 次丰收增产试验(8th HPYT)进行了 2 次重复的阿尔法网格设计评估。不同基因型的谷粒锌浓度和铁浓度分别为 23.8 至 42.4 ppm 和 20.6 至 60.6 ppm。谷粒锌浓度和铁浓度之间存在高度显著的正相关关系(第 7 个 HPYT 中 r = 0.74**,第 8 个 HPYT 中 r=0.67**)。谷物锌和谷物铁之间的高度正相关表明,同时提高这两种微量营养元素是可行的。此外,本研究还发现,千粒重(TGW)与谷物锌的相关性(r=0.3)和与谷物铁的相关性(r=0.4)在第 7 个高培 育期表现为高度显著的正相关,而在第 8 个高培育期与谷物锌的相关性(r=-0.1)和与谷物铁的相关性 (r=-0.1)则表现为不显著的负相关。由于尼泊尔农民最关心的性状仅次于籽粒产量,即 TGW,这表明富含锌和铁的小麦品种具有较高的 TGW(粗粒)是可行的。第 7 次 HPYT 中的 9 个基因型和第 8 次 HPYT 中的 48 个基因型的谷物产量高于当地的对照品种 "GAUTAM",这表明生物强化基因型在添加微量营养元素后能够获得更高的谷物产量。本研究根据较高的谷物产量、谷物锌和铁浓度,推荐了第 7 HPYT 中的 17 个基因型和第 8 HPYT 中的 38 个基因型,并将这些品系纳入国家产量试验,以便在尼泊尔不同的农业生态区域进行进一步评估。谷粒锌和铁浓度较高的基因型为7HPYT409、7HPYT410、8HPYT417、8HPYT404 和 7HPYT442 可用作国家小麦育种计划的供体亲本,高产基因型 7HPYT448、7HPYT418、7HPYT426、7HPYT413、8HPYT4158HPYT431, 8HPYT429, 8HPYT407 和 8HPYT405 将在尼泊尔整个特莱地区进一步评估,优秀的基因型可被推荐为尼泊尔特莱/平原的品种。
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