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营养强化玉米的分子育种:现状与展望

Molecular Breeding for Nutritionally Enriched Maize: Status and Prospects.

作者信息

Prasanna Boddupalli M, Palacios-Rojas Natalia, Hossain Firoz, Muthusamy Vignesh, Menkir Abebe, Dhliwayo Thanda, Ndhlela Thokozile, San Vicente Felix, Nair Sudha K, Vivek Bindiganavile S, Zhang Xuecai, Olsen Mike, Fan Xingming

机构信息

International Maize and Wheat Improvement Center (CIMMYT), Nairobi, Kenya.

CIMMYT, Texcoco, Mexico.

出版信息

Front Genet. 2020 Feb 21;10:1392. doi: 10.3389/fgene.2019.01392. eCollection 2019.

Abstract

Maize is a major source of food security and economic development in sub-Saharan Africa (SSA), Latin America, and the Caribbean, and is among the top three cereal crops in Asia. Yet, maize is deficient in certain essential amino acids, vitamins, and minerals. Biofortified maize cultivars enriched with essential minerals and vitamins could be particularly impactful in rural areas with limited access to diversified diet, dietary supplements, and fortified foods. Significant progress has been made in developing, testing, and deploying maize cultivars biofortified with quality protein maize (QPM), provitamin A, and kernel zinc. In this review, we outline the status and prospects of developing nutritionally enriched maize by successfully harnessing conventional and molecular marker-assisted breeding, highlighting the need for intensification of efforts to create greater impacts on malnutrition in maize-consuming populations, especially in the low- and middle-income countries. Molecular marker-assisted selection methods are particularly useful for improving nutritional traits since conventional breeding methods are relatively constrained by the cost and throughput of nutritional trait phenotyping.

摘要

玉米是撒哈拉以南非洲(SSA)、拉丁美洲和加勒比地区粮食安全和经济发展的主要来源,也是亚洲三大谷类作物之一。然而,玉米缺乏某些必需氨基酸、维生素和矿物质。富含必需矿物质和维生素的生物强化玉米品种,对于难以获得多样化饮食、膳食补充剂和强化食品的农村地区可能具有特别重要的意义。在开发、测试和推广用优质蛋白玉米(QPM)、维生素A原和籽粒锌进行生物强化的玉米品种方面已取得重大进展。在本综述中,我们概述了通过成功利用传统育种和分子标记辅助育种来培育营养强化玉米的现状和前景,强调需要加大力度,以便对玉米消费人群的营养不良问题产生更大影响,特别是在低收入和中等收入国家。分子标记辅助选择方法对于改善营养性状特别有用,因为传统育种方法相对受到营养性状表型分析成本和通量的限制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9323/7046684/bfc8a5eb7091/fgene-10-01392-g001.jpg

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