Analysis of nutritional composition in opaque2- and crtRB1-based single- and double-biofortified super sweet corn.

IF 2 3区 生物学 Q3 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Journal of Applied Genetics Pub Date : 2025-02-01 Epub Date: 2024-05-11 DOI:10.1007/s13353-024-00873-0
Bhavna Singh, Vignesh Muthusamy, Smriti Shrivastava, Gulab Chand, Nisrita Gain, Vinay Bhatt, Rajkumar U Zunjare, Firoz Hossain
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Abstract

Sweet corn has emerged as a favorite food item worldwide owing to its kernel sweetness. However, traditional sweet corn cultivars are poor in provitamin-A (proA) and essential amino acids, viz., lysine and tryptophan. So far, no sweet corn hybrid with high nutritional qualities has been commercialized elsewhere. Here, we analyzed accumulation of provitamin-A (proA), lysine, and tryptophan in a set of mutant versions of (i) crtRB1-, (ii) o2-, and (iii) crtRB1 + o2-based sweet corn inbreds and hybrids with (iv) traditional sweet corn (wild-type: O2 + CrtRB1). The crtRB1- and crtRB1 + o2-based genotypes possessed significantly higher proA (17.31 ppm) over traditional sweet corn (2.83 ppm), while o2- and crtRB1 + o2-based genotypes possessed significantly higher lysine (0.345%) and tryptophan (0.080%) over traditional sweet corn (lysine 0.169%, tryptophan 0.036%). Late sowing favored high kernel lysine, proA, and green cob yield among hybrids. Sweetness (17.87%) among the improved inbreds and hybrids was comparable to the original sweetcorn genotypes (17.84%). Among the four genotypic classes, crtRB1 + o2-based improved genotypes showed stronger association among traits over genotypes with o2 and crtRB1 genes alone. Significant association was observed among (i) proA and BC (r = 0.99), (ii) proA and BCX (r = 0.93), (iii) lysine and tryptophan (r = 0.99), and (iv) green cob yield with fodder yield (r = 0.73) in sweet corn hybrids. The study demonstrated that combining crtRB1 and o2 genes did not pose any negative impact on nutritional, yield, and agronomic performance. Sweet corn with crtRB1 + o2 assumes significance for alleviating malnutrition through sustainable and cost-effective approach.

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基于不透明2和crtRB1的单一和双重生物强化超级甜玉米的营养成分分析。
甜玉米因其籽粒甜美而成为全世界最受欢迎的食品。然而,传统的甜玉米品种缺乏维生素 A(proA)和必需氨基酸,即赖氨酸和色氨酸。迄今为止,其他地方还没有高营养品质的甜玉米杂交种实现商业化。在这里,我们分析了一组突变型(i)crtRB1-、(ii)o2-、(iii)crtRB1 + o2 甜玉米近交系和杂交种与(iv)传统甜玉米(野生型:O2 + CrtRB1)中维生素 A(proA)、赖氨酸和色氨酸的积累情况。与传统甜玉米(2.83 ppm)相比,基于 crtRB1- 和 crtRB1 + o2 的基因型具有显著较高的 proA(17.31 ppm);与传统甜玉米(赖氨酸 0.169%,色氨酸 0.036%)相比,基于 o2- 和 crtRB1 + o2 的基因型具有显著较高的赖氨酸(0.345%)和色氨酸(0.080%)。晚播有利于提高杂交种的籽粒赖氨酸、proA 和青棒产量。改良近交系和杂交种的甜度(17.87%)与原始甜玉米基因型(17.84%)相当。在四个基因型类别中,基于 crtRB1 + o2 基因的改良基因型与仅有 o2 和 crtRB1 基因的基因型相比,在性状之间表现出更强的关联性。在甜玉米杂交种中,(i) proA 和 BC(r = 0.99)、(ii) proA 和 BCX(r = 0.93)、(iii) 赖氨酸和色氨酸(r = 0.99)以及 (iv) 青棒产量和饲料产量(r = 0.73)之间存在显著关联。研究表明,crtRB1 和 o2 基因的结合不会对营养、产量和农艺性能产生任何负面影响。含有 crtRB1 + o2 基因的甜玉米对于通过可持续和具有成本效益的方法缓解营养不良问题具有重要意义。
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来源期刊
Journal of Applied Genetics
Journal of Applied Genetics 生物-生物工程与应用微生物
CiteScore
4.30
自引率
4.20%
发文量
62
审稿时长
6-12 weeks
期刊介绍: The Journal of Applied Genetics is an international journal on genetics and genomics. It publishes peer-reviewed original papers, short communications (including case reports) and review articles focused on the research of applicative aspects of plant, human, animal and microbial genetics and genomics.
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