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从品种改良角度对蓝莓耐旱性的综述。

Review on blueberry drought tolerance from the perspective of cultivar improvement.

作者信息

Ru Sushan, Sanz-Saez Alvaro, Leisner Courtney P, Rehman Tanzeel, Busby Savannah

机构信息

Department of Horticulture, Auburn University, Auburn, AL, United States.

Department of Crop, Soil and Environmental Sciences, Auburn University, Auburn, AL, United States.

出版信息

Front Plant Sci. 2024 May 14;15:1352768. doi: 10.3389/fpls.2024.1352768. eCollection 2024.

Abstract

Blueberry ( spp.) is an increasingly popular fruit around the world for their attractive taste, appearance, and most importantly their many health benefits. Global blueberry production was valued at $2.31 billion with the United States alone producing $1.02 billion of cultivated blueberries in 2021. The sustainability of blueberry production is increasingly threatened by more frequent and extreme drought events caused by climate change. Blueberry is especially prone to adverse effects from drought events due to their superficial root system and lack of root hairs, which limit blueberry's ability to intake water and nutrients from the soil especially under drought stress conditions. The goal of this paper is to review previous studies on blueberry drought tolerance focusing on physiological, biochemical, and molecular drought tolerance mechanisms, as well as genetic variability present in cultivated blueberries. We also discuss limitations of previous studies and potential directions for future efforts to develop drought-tolerant blueberry cultivars. Our review showed that the following areas are lacking in blueberry drought tolerance research: studies of root and fruit traits related to drought tolerance, large-scale cultivar screening, efforts to understand the genetic architecture of drought tolerance, tools for molecular-assisted drought tolerance improvement, and high-throughput phenotyping capability for efficient cultivar screening. Future research should be devoted to following areas: (1) drought tolerance evaluation to include a broader range of traits, such as root architecture and fruit-related performance under drought stress, to establish stronger association between physiological and molecular signals with drought tolerance mechanisms; (2) large-scale drought tolerance screening across diverse blueberry germplasm to uncover various drought tolerance mechanisms and valuable genetic resources; (3) high-throughput phenotyping tools for drought-related traits to enhance the efficiency and affordability of drought phenotyping; (4) identification of genetic architecture of drought tolerance using various mapping technologies and transcriptome analysis; (5) tools for molecular-assisted breeding for drought tolerance, such as marker-assisted selection and genomic selection, and (6) investigation of the interactions between drought and other stresses such as heat to develop stress resilient genotypes.

摘要

蓝莓(越橘属)因口感诱人、外观漂亮,且最重要的是具有诸多健康益处,在全球范围内越来越受欢迎。2021年,全球蓝莓产量价值23.1亿美元,仅美国的人工种植蓝莓产量就达10.2亿美元。气候变化导致干旱事件愈发频繁和极端,蓝莓生产的可持续性正受到日益严重的威胁。蓝莓特别容易受到干旱事件的不利影响,因为其根系浅且无根毛,这限制了蓝莓在干旱胁迫条件下从土壤中吸收水分和养分的能力。本文的目的是回顾以往关于蓝莓耐旱性的研究,重点关注生理、生化和分子耐旱机制,以及人工种植蓝莓中存在的遗传变异性。我们还讨论了以往研究的局限性以及未来培育耐旱蓝莓品种的潜在努力方向。我们的综述表明,蓝莓耐旱性研究在以下方面存在不足:与耐旱性相关的根系和果实性状研究、大规模品种筛选、对耐旱性遗传结构的理解、分子辅助耐旱性改良工具以及用于高效品种筛选的高通量表型分析能力。未来的研究应致力于以下领域:(1)耐旱性评估,纳入更广泛的性状,如干旱胁迫下的根系结构和果实相关表现,以建立生理和分子信号与耐旱机制之间更强的关联;(2)对不同蓝莓种质进行大规模耐旱性筛选,以揭示各种耐旱机制和有价值的遗传资源;(3)用于干旱相关性状的高通量表型分析工具,以提高干旱表型分析的效率和可承受性;(4)利用各种图谱技术和转录组分析确定耐旱性的遗传结构;(5)用于耐旱性分子辅助育种的工具,如标记辅助选择和基因组选择;(6)研究干旱与其他胁迫(如高温)之间的相互作用,以培育抗逆性强的基因型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eac6/11130474/bcf98eead420/fpls-15-1352768-g001.jpg

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