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用于改善生菜采后品质的创新育种技术。

Innovative breeding technologies in lettuce for improved post-harvest quality.

作者信息

Damerum Annabelle, Chapman Mark A, Taylor Gail

机构信息

Department of Plant Sciences, University of California, Davis, 95616, USA.

School of Biological Sciences, University of Southampton, Southampton, SO179BJ, UK.

出版信息

Postharvest Biol Technol. 2020 Oct;168:111266. doi: 10.1016/j.postharvbio.2020.111266.

Abstract

Societal awareness of healthy eating is increasing alongside the market for processed bagged salads, which remain as one of the strongest growing food sectors internationally, including most recently from indoor growing systems. Lettuce represents a significant proportion of this ready-to-eat salad market. However, such products typically have a short shelf life, with decay of post-harvest quality occurring through complex biochemical and physiological changes in leaves and resulting in spoilage, food waste and risks to health. We review the functional and quantitative genetic understanding of lettuce post-harvest quality, revealing that few findings have translated into improved cultivar development. We identify (i) phytonutrient status (for enhanced antioxidant and vitamin status, aroma and flavour) (ii) leaf biophysical, cell wall and water relations traits (for longer shelf life) (iii) leaf surface traits (for enhanced food safety and reduced spoilage) and (iv) chlorophyll, other pigments and developmental senescence traits (for appearance and colour), as key targets for future post-harvest breeding. Lettuce is well-placed for rapid future exploitation to address postharvest quality traits with extensive genomic resources including the recent release of the lettuce genome and the development of innovative breeding technologies. Although technologies such as CRISPR/Cas genome editing are paving the way for accelerated crop improvement, other equally important resources available for lettuce include extensive germplasm collections, bi-parental mapping and wide populations with genotyping for genomic selection strategies and extensive multiomic datasets for candidate gene discovery. We discuss current progress towards post-harvest quality breeding for lettuce and how such resources may be utilised for future crop improvement.

摘要

随着加工袋装沙拉市场的发展,社会对健康饮食的意识也在不断提高,加工袋装沙拉仍是国际上增长最为强劲的食品领域之一,包括最近兴起的室内种植系统生产的沙拉。生菜在这种即食沙拉市场中占很大比例。然而,这类产品的保质期通常较短,采后品质下降是由于叶片中复杂的生化和生理变化导致的,进而造成变质、食物浪费和健康风险。我们回顾了对生菜采后品质的功能和数量遗传学认识,发现很少有研究成果转化为改良品种的培育。我们确定了以下几个方面作为未来采后育种的关键目标:(i)植物营养素状况(以提高抗氧化剂和维生素水平、香气和风味);(ii)叶片生物物理、细胞壁和水分关系性状(以延长保质期);(iii)叶片表面性状(以提高食品安全和减少变质);(iv)叶绿素、其他色素和发育衰老性状(以改善外观和颜色)。生菜具备利用广泛的基因组资源快速解决采后品质性状问题的良好条件,这些资源包括最近发布的生菜基因组以及创新育种技术的发展。尽管CRISPR/Cas基因组编辑等技术为加速作物改良铺平了道路,但生菜可用的其他同样重要的资源还包括广泛的种质资源库、双亲图谱绘制以及用于基因组选择策略基因分型的广泛群体,还有用于候选基因发现的大量多组学数据集。我们讨论了生菜采后品质育种的当前进展以及如何利用这些资源实现未来作物的改良。

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