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Omics of Maize Stress Response for Sustainable Food Production: Opportunities and Challenges

机译:玉米对可持续粮食生产的应对措施的组学:机遇与挑战

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摘要

Maize originated in the highlands of Mexico approximately 8700 years ago and is one of the most commonly grown cereal crops worldwide, followed by wheat and rice. Abiotic stresses (primarily drought, salinity, and high and low temperatures), together with biotic stresses (primarily fungi, viruses, and pests), negatively affect maize growth, development, and eventually production. To understand the response of maize to abiotic and biotic stresses and its mechanism of stress tolerance, high-throughput omics approaches have been used in maize stress studies. Integrated omics approaches are crucial for dissecting the temporal and spatial system-level changes that occur in maize under various stresses. In this comprehensive analysis, we review the primary types of stresses that threaten sustainable maize production; underscore the recent advances in maize stress omics, especially proteomics; and discuss the opportunities, challenges, and future directions of maize stress omics, with a view to sustainable food production. The knowledge gained from studying maize stress omics is instrumental for improving maize to cope with various stresses and to meet the food demands of the exponentially growing global population. Omics systems science offers actionable potential solutions for sustainable food production, and we present maize as a notable case study.
机译:玉米起源于大约8700年前的墨西哥高地,是世界上最常见的谷物作物之一,其次是小麦和水稻。非生物胁迫(主要是干旱,盐分以及高温和低温),以及生物胁迫(主要是真菌,病毒和害虫),对玉米的生长,发育和最终生产产生负面影响。为了了解玉米对非生物和生物胁迫的反应及其胁迫耐受的机制,高通量组学方法已用于玉米胁迫研究。集成组学方法对于剖析玉米在各种胁迫下发生的时空系统级变化至关重要。在这项全面的分析中,我们回顾了威胁可持续玉米生产的主要压力类型。强调了玉米胁迫组学特别是蛋白质组学的最新进展;并讨论玉米胁迫组学的机遇,挑战和未来方向,以实现可持续的粮食生产。通过研究玉米胁迫组学获得的知识有助于改善玉米以应对各种胁迫并满足全球指数增长的粮食需求。 Omics系统科学为可持续食品生产提供了可行的潜在解决方案,我们将玉米作为重要案例研究。

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