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在恶劣环境下维持花生的产量和营养品质:干旱和热胁迫耐受性的生理及分子基础

Sustaining yield and nutritional quality of peanuts in harsh environments: Physiological and molecular basis of drought and heat stress tolerance.

作者信息

Puppala Naveen, Nayak Spurthi N, Sanz-Saez Alvaro, Chen Charles, Devi Mura Jyostna, Nivedita Nivedita, Bao Yin, He Guohao, Traore Sy M, Wright David A, Pandey Manish K, Sharma Vinay

机构信息

Agricultural Science Center at Clovis, New Mexico State University, Las Cruces, NM, United States.

Department of Biotechnology, University of Agricultural Sciences, Dharwad, India.

出版信息

Front Genet. 2023 Mar 8;14:1121462. doi: 10.3389/fgene.2023.1121462. eCollection 2023.

Abstract

Climate change is significantly impacting agricultural production worldwide. Peanuts provide food and nutritional security to millions of people across the globe because of its high nutritive values. Drought and heat stress alone or in combination cause substantial yield losses to peanut production. The stress, in addition, adversely impact nutritional quality. Peanuts exposed to drought stress at reproductive stage are prone to aflatoxin contamination, which imposes a restriction on use of peanuts as health food and also adversely impact peanut trade. A comprehensive understanding of the impact of drought and heat stress at physiological and molecular levels may accelerate the development of stress tolerant productive peanut cultivars adapted to a given production system. Significant progress has been achieved towards the characterization of germplasm for drought and heat stress tolerance, unlocking the physiological and molecular basis of stress tolerance, identifying significant marker-trait associations as well major QTLs and candidate genes associated with drought tolerance, which after validation may be deployed to initiate marker-assisted breeding for abiotic stress adaptation in peanut. The proof of concept about the use of transgenic technology to add value to peanuts has been demonstrated. Advances in phenomics and artificial intelligence to accelerate the timely and cost-effective collection of phenotyping data in large germplasm/breeding populations have also been discussed. Greater focus is needed to accelerate research on heat stress tolerance in peanut. A suits of technological innovations are now available in the breeders toolbox to enhance productivity and nutritional quality of peanuts in harsh environments. A holistic breeding approach that considers drought and heat-tolerant traits to simultaneously address both stresses could be a successful strategy to produce climate-resilient peanut genotypes with improved nutritional quality.

摘要

气候变化正在对全球农业生产产生重大影响。花生因其高营养价值,为全球数百万人提供了粮食和营养安全保障。单独或综合出现的干旱和热胁迫会给花生产量造成大幅损失。此外,这种胁迫还会对营养品质产生不利影响。处于生殖阶段的花生遭受干旱胁迫时容易受到黄曲霉毒素污染,这限制了花生作为健康食品的使用,也对花生贸易产生了不利影响。从生理和分子层面全面了解干旱和热胁迫的影响,可能会加速培育适应特定生产系统的耐胁迫高产花生品种。在花生耐旱和耐热种质特性鉴定、揭示胁迫耐受性的生理和分子基础、确定显著的标记-性状关联以及与耐旱性相关的主要数量性状位点和候选基因等方面已经取得了重大进展,经过验证后,这些成果可用于启动花生非生物胁迫适应性的分子标记辅助育种。利用转基因技术提升花生价值的概念验证已经得到证实。文中还讨论了表型组学和人工智能方面的进展,以加速在大型种质/育种群体中及时且经济高效地收集表型数据。需要更加关注加速花生耐热性的研究。育种人员现在有一系列技术创新手段可用于提高恶劣环境下花生的产量和营养品质。一种综合考虑耐旱和耐热性状以同时应对这两种胁迫的整体育种方法,可能是培育具有改善营养品质且适应气候变化的花生基因型的成功策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bba4/10030941/f9d27986a4c0/fgene-14-1121462-g001.jpg

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