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利用基因组学辅助堆叠蜡质1、不透明2和crtRB1基因,以提高用于工业利用和营养安全的生物强化玉米中的支链淀粉含量。

Genomics-assisted stacking of waxy1, opaque2, and crtRB1 genes for enhancing amylopectin in biofortified maize for industrial utilization and nutritional security.

作者信息

Mishra Subhra J, Hossain Firoz, Zunjare Rajkumar U, Chhabra Rashmi, Katral Ashvinkumar, Gopinath Ikkurti, Bhatt Vinay, Sarma Govinda Rai, Talukder Zahirul A, Kasana Ravindra K, Devi Elangbam L, Sarika Konsam, Mehta Brijesh K, Guleria Satish K, Kumar Jitender, Muthusamy Vignesh

机构信息

ICAR-Indian Agricultural Research Institute, New Delhi, 110012, India.

AMITY Institute of Biotechnology, AMITY University, Noida, Uttar Pradesh, 201313, India.

出版信息

Funct Integr Genomics. 2025 Jan 20;25(1):18. doi: 10.1007/s10142-024-01523-8.

Abstract

Waxy maize is highly preferred diet in developing countries due to its high amylopectin content. Enriching amylopectin in biofortified maize meets food security and fulfils the demand of rising industrial applications, especially bioethanol. The mutant waxy1 (wx1) gene is responsible for increased amylopectin in maize starch, with a wide range of food and industrial applications. Conventional maize has a modest amount of amylopectin (70-75% of starch), but waxy maize, with favourable wx1 allele, has ~ 95-100% amylopectin. In this study, the wx1 allele was introgressed into the multi-nutrient-rich maize parental inbreds (PMI-PV9 and PMI-PV5) of APQH8, a multi-nutrient rich maize hybrid having high lysine, tryptophan, and provitamin-A nutritionally superior over the traditional hybrids. Gene-specific markers specific for o2 and crtRB1 were employed to select desirable gene segregants from BCF, BCF, and BCF. Background selection was employed with > 90 SSR markers. Selected backcross progenies showed high recovery of recurrent parent genomes (RPG: 94.8-96.8%). The reconstituted waxy hybrids exhibited an increase in amylopectin (mean: 98.4%) compared to the original hybrid (mean: 72.7%). The reconstituted hybrids also recorded enhanced lysine (mean: 0.382%), tryptophan (mean: 0.092%), and provitamin-A (mean: 10.36 ppm), respectively, than normal maize, however similar to the original hybrid with high lysine: 0.330%, tryptophan: 0.079% and provitamin-A: 10.42 ppm. Furthermore, MAS-derived genotypes showed similar agro-morphological traits and grain yield. These biofortified waxy maize hybrids, rich in provitamin-A, lysine, and tryptophan with enhanced amylopectin hold great potential in diverse industrial applications and nutritional security.

摘要

由于富含支链淀粉,糯玉米在发展中国家是备受青睐的食物。在生物强化玉米中富集支链淀粉既满足了粮食安全需求,又满足了不断增长的工业应用需求,尤其是生物乙醇的需求。突变的蜡质1(wx1)基因致使玉米淀粉中的支链淀粉增加,具有广泛的食品和工业应用。常规玉米含有适量的支链淀粉(占淀粉的70 - 75%),但具有有利wx1等位基因的糯玉米含有约95 - 100%的支链淀粉。在本研究中,将wx1等位基因导入了APQH8的多营养丰富玉米亲本自交系(PMI - PV9和PMI - PV5)中,APQH8是一个多营养丰富的玉米杂交种,其赖氨酸、色氨酸和维生素A原在营养上优于传统杂交种。使用针对o2和crtRB1的基因特异性标记从BCF、BCF和BCF中选择理想的基因分离体。利用超过90个SSR标记进行背景选择。所选回交后代显示出轮回亲本基因组的高恢复率(RPG:94.8 - 96.8%)。重构的糯玉米杂交种与原始杂交种相比,支链淀粉含量增加(平均值:98.4%,原始杂交种平均值:72.7%)。重构的杂交种赖氨酸(平均值:0.382%)、色氨酸(平均值:0.092%)和维生素A原(平均值:10.36 ppm)的含量也分别高于普通玉米,但与赖氨酸含量为0.330%、色氨酸含量为0.079%、维生素A原含量为10.42 ppm的原始杂交种相似。此外,通过标记辅助选择获得的基因型表现出相似的农艺形态性状和籽粒产量。这些富含维生素A原、赖氨酸和色氨酸且支链淀粉含量增加的生物强化糯玉米杂交种在各种工业应用和营养安全方面具有巨大潜力。

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