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棉子糖家族低聚糖(RFOs):在种子活力和长寿中的作用。

Raffinose family oligosaccharides (RFOs): role in seed vigor and longevity.

机构信息

National Agri-Food Biotechnology Institute, Punjab 140308, India.

Govt. Shaheed Gend Singh College, Charama, Chhattisgarh 494337, India.

出版信息

Biosci Rep. 2022 Oct 28;42(10). doi: 10.1042/BSR20220198.

Abstract

Seed vigor and longevity are important agronomic attributes, as they are essentially associated with crop yield and thus the global economy. Seed longevity is a measure of seed viability and the most essential property in gene bank management since it affects regeneration of seed recycling. Reduced seed life or storability is a serious issue in seed storage since germplasm conservation and agricultural enhancement initiatives rely on it. The irreversible and ongoing process of seed deterioration comprises a complex gene regulatory network and altered metabolism that results in membrane damage, DNA integrity loss, mitochondrial dysregulation, protein damage, and disrupted antioxidative machinery. Carbohydrates and/or sugars, primarily raffinose family oligosaccharides (RFOs), have emerged as feasible components for boosting or increasing seed vigor and longevity in recent years. RFOs are known to perform diverse functions in plants, including abiotic and biotic stress tolerance, besides being involved in regulating seed germination, desiccation tolerance, vigor, and longevity. We emphasized and analyzed the potential impact of RFOs on seed vigor and longevity in this review. Here, we comprehensively reviewed the molecular mechanisms involved in seed longevity, RFO metabolism, and how RFO content is critical and linked with seed vigor and longevity. Further molecular basis, biotechnological approaches, and CRISPR/Cas applications have been discussed briefly for the improvement of seed attributes and ultimately crop production. Likewise, we suggest advancements, challenges, and future possibilities in this area.

摘要

种子活力和寿命是重要的农艺性状,因为它们与作物产量密切相关,进而影响全球经济。种子寿命是衡量种子活力的指标,也是基因库管理中最重要的特性,因为它影响着种子循环再生。由于种质资源保存和农业发展计划依赖于种子的长期存储,因此种子活力和长期存储能力的降低是种子储存中的一个严重问题。种子劣变是一个不可逆转且持续进行的过程,涉及复杂的基因调控网络和代谢改变,导致膜损伤、DNA 完整性丧失、线粒体功能失调、蛋白质损伤和抗氧化机制破坏。近年来,碳水化合物和/或糖,主要是棉子糖家族低聚糖(RFOs),已成为提高种子活力和寿命的可行成分。RFOs 在植物中具有多种功能,包括耐受非生物和生物胁迫,同时还参与调控种子萌发、耐旱性、活力和寿命。在本综述中,我们强调并分析了 RFOs 对种子活力和寿命的潜在影响。在这里,我们全面回顾了种子寿命、RFO 代谢所涉及的分子机制,以及 RFO 含量如何对种子活力和寿命产生关键影响并与之相关。我们还简要讨论了进一步的分子基础、生物技术方法和 CRISPR/Cas 的应用,以改善种子特性并最终提高作物产量。同样,我们也对该领域的进展、挑战和未来可能性提出了建议。

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