Alien introgression to wheat for food security: functional and nutritional quality for novel products under climate change

Eva Johansson, Yuzhou Lan, Olawale Olalekan, R. Kuktaite, A. Chawade, M. Rahmatov
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Abstract

Crop yield and quality has increased globally during recent decades due to plant breeding, resulting in improved food security. However, climate change and shifts in human dietary habits and preferences display novel pressure on crop production to deliver enough quantity and quality to secure food for future generations. This review paper describes the current state-of-the-art and presents innovative approaches related to alien introgressions into wheat, focusing on aspects related to quality, functional characteristics, nutritional attributes, and development of novel food products. The benefits and opportunities that the novel and traditional plant breeding methods contribute to using alien germplasm in plant breeding are also discussed. In principle, gene introgressions from rye have been the most widely utilized alien gene source for wheat. Furthermore, the incorporation of novel resistance genes toward diseases and pests have been the most transferred type of genes into the wheat genome. The incorporation of novel resistance genes toward diseases and pests into the wheat genome is important in breeding for increased food security. Alien introgressions to wheat from e.g. rye and Aegilops spp. have also contributed to improved nutritional and functional quality. Recent studies have shown that introgressions to wheat of genes from chromosome 3 in rye have an impact on both yield, nutritional and functional quality, and quality stability during drought treatment, another character of high importance for food security under climate change scenarios. Additionally, the introgression of alien genes into wheat has the potential to improve the nutritional profiles of future food products, by contributing higher minerals levels or lower levels of anti-nutritional compounds into e.g., plant-based products substituting animal-based food alternatives. To conclude, the present review paper highlights great opportunities and shows a few examples of how food security and functional-nutritional quality in traditional and novel wheat products can be improved by the use of genes from alien sources, such as rye and other relatives to wheat. Novel and upcoming plant breeding methods such as genome-wide association studies, gene editing, genomic selection and speed breeding, have the potential to complement traditional technologies to keep pace with climate change and consumer eating habits.
小麦的外来引种促进粮食安全:气候变化下新型产品的功能和营养质量
近几十年来,由于植物育种,全球作物产量和质量都有所提高,从而改善了粮食安全状况。然而,气候变化以及人类饮食习惯和偏好的改变,给作物生产带来了新的压力,要求其提供足够的数量和质量,以确保子孙后代的粮食供应。本综述论文介绍了当前的先进技术,并介绍了与小麦外来基因导入有关的创新方法,重点关注与质量、功能特性、营养属性和新型食品开发有关的方面。此外,还讨论了新型和传统植物育种方法在植物育种中使用外来种质所带来的益处和机遇。原则上,黑麦的基因导入是小麦利用最广泛的外来基因来源。此外,小麦基因组中转移最多的是抗病虫的新型基因。在小麦基因组中加入新的抗病虫害基因对于育种提高粮食安全非常重要。从黑麦和 Aegilops 等外来基因导入小麦也有助于提高小麦的营养和功能品质。最近的研究表明,将黑麦 3 号染色体上的基因导入小麦,对小麦的产量、营养和功能品质以及在干旱处理过程中的品质稳定性都有影响,而这是在气候变化情况下对粮食安全至关重要的另一个特性。此外,将外来基因导入小麦还有可能改善未来食品的营养成分,如提高矿物质含量或降低抗营养成分含量,以植物性产品替代动物性食品。总之,本综述论文强调了巨大的机遇,并举例说明了如何通过使用外来基因(如黑麦和小麦的其他近缘种)来提高传统和新型小麦产品的食品安全和功能营养质量。全基因组关联研究、基因编辑、基因组选择和快速育种等新的和即将出现的植物育种方法有可能补充传统技术的不足,以跟上气候变化和消费者饮食习惯的步伐。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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