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用于饮食-健康复杂性研究的黄酮类化合物表达增强的玉米近等基因系的特性分析

Characterization of Maize Near-Isogenic Lines With Enhanced Flavonoid Expression to Be Used as Tools in Diet-Health Complexity.

作者信息

Wu Binning, Chang Haotian, Marini Rich, Chopra Surinder, Reddivari Lavanya

机构信息

Department of Plant Science, The Pennsylvania State University, State College, PA, United States.

Interdisciplinary Graduate Program in Plant Biology, The Pennsylvania State University, State College, PA, United States.

出版信息

Front Plant Sci. 2021 Jan 18;11:619598. doi: 10.3389/fpls.2020.619598. eCollection 2020.

Abstract

Increasing incidence of chronic diseases in the 21st century has emphasized the importance of developing crops with enhanced nutritional value. Plant-based diets are associated with reduced incidence of many chronic diseases. The growing population and increased food demand have prioritized the development of high-yielding commercial crop varieties at the expense of natural flavors as well as health-benefiting compounds including polyphenols. Flavonoids are a large subfamily of polyphenols abundant in the plant kingdom with known health-promoting effects, making them a promising trait to be re-introduced into elite lines. Given the vast array of flavonoids and the complexity of plant food metabolome interactions, it is difficult to identify with certainty the specific class(es) of flavonoids in the food matrix that are anti-inflammatory. To address this, we have developed four maize near-isogenic lines (NILs); a line that lacked both anthocyanins and phlobaphenes, a second NIL containing phlobaphenes, a third line had anthocyanins, and a fourth line that contained both anthocyanins and phlobaphenes. The phytochemical profiles and the antioxidant potential of the NILs were characterized. The accumulation of anthocyanins and phlobaphenes contributed significantly to antioxidant capacity compared to maize lines that lacked one or both of the compounds ( < 0.05). Pilot study showed that intake of flavonoid-rich maize diets were able to alleviate experimental colitis in mice. These NILs offer novel materials combining anthocyanins and phlobaphenes and can be used as powerful tools to investigate the disease-preventive effects of specific flavonoid compound in diet/feeding experiments.

摘要

21世纪慢性病发病率的上升凸显了培育营养价值更高作物的重要性。以植物为基础的饮食与许多慢性病发病率的降低有关。不断增长的人口和增加的食物需求使得高产商业作物品种的开发成为优先事项,却牺牲了天然风味以及包括多酚在内的有益健康的化合物。黄酮类化合物是多酚的一个大亚科,在植物界中含量丰富,具有已知的促进健康的作用,这使得它们成为有望重新引入优良品系的性状。鉴于黄酮类化合物种类繁多以及植物性食物代谢组相互作用的复杂性,很难确切确定食物基质中具有抗炎作用的特定黄酮类化合物类别。为了解决这个问题,我们培育了四个玉米近等基因系(NIL);一个既缺乏花青素又缺乏紫胶色物质的品系,第二个NIL含有紫胶色物质,第三个品系含有花青素,第四个品系同时含有花青素和紫胶色物质。对这些NIL的植物化学特征和抗氧化潜力进行了表征。与缺乏其中一种或两种化合物的玉米品系相比,花青素和紫胶色物质的积累对抗氧化能力有显著贡献(<0.05)。初步研究表明,摄入富含黄酮类化合物的玉米饮食能够缓解小鼠的实验性结肠炎。这些NIL提供了结合花青素和紫胶色物质的新材料,可作为强大的工具,用于在饮食/喂养实验中研究特定黄酮类化合物的疾病预防作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2e55/7874058/073503cc3a69/fpls-11-619598-g001.jpg

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