Dempsey Mark, Thavarajah Dil
Plant and Environmental Sciences, Pulse Quality and Nutritional Breeding, Biosystems Research Complex, Clemson University, Clemson, SC, United States.
Front Plant Sci. 2024 Oct 3;15:1408252. doi: 10.3389/fpls.2024.1408252. eCollection 2024.
Lentil ( Medikus) is a nutrient-rich, cool-season food legume that is high in protein, prebiotic carbohydrates, vitamins, and minerals. It is a staple food in many parts of the world, but crop performance is threatened by climate change, where increased temperatures and less predictable precipitation can reduce yield and nutritional quality. One mechanism that many plant species use to mitigate heat and drought stress is the production of disaccharides, oligosaccharides and sugar alcohols, collectively referred to as low molecular weight carbohydrates (LMWCs). Recent evidence indicates that lentil may also employ this mechanism - especially raffinose family oligosaccharides and sugar alcohols - and that these may be suitable targets for genomic-assisted breeding to improve crop tolerance to heat and drought stress. While the genes responsible for LMWC biosynthesis in lentil have not been fully elucidated, single nucleotide polymorphisms and putative genes underlying biosynthesis of LMWCs have been identified. Yet, more work is needed to confirm gene identity, function, and response to abiotic stress. This review i) summarizes the diverse evidence for how LMWCs are utilized to improve abiotic stress tolerance, ii) highlights current knowledge of genes that control LMWC biosynthesis in lentil, and iii) explores how LMWCs can be targeted using diverse genomic resources and markers to accelerate lentil breeding efforts for improved stress tolerance.
小扁豆(Medikus)是一种营养丰富的冷季食用豆类,富含蛋白质、益生元碳水化合物、维生素和矿物质。它是世界许多地区的主食,但气候变化威胁着作物的生长表现,气温升高和降水更难预测会降低产量和营养品质。许多植物物种用来缓解高温和干旱胁迫的一种机制是产生二糖、寡糖和糖醇,统称为低分子量碳水化合物(LMWC)。最近的证据表明,小扁豆可能也采用这种机制——尤其是棉子糖家族寡糖和糖醇——并且这些可能是基因组辅助育种提高作物耐热和耐旱胁迫能力的合适目标。虽然小扁豆中负责LMWC生物合成的基因尚未完全阐明,但已鉴定出LMWC生物合成的单核苷酸多态性和潜在基因。然而,还需要更多工作来确认基因的身份、功能以及对非生物胁迫的反应。本综述:i)总结了关于LMWC如何用于提高非生物胁迫耐受性的各种证据;ii)强调了目前对小扁豆中控制LMWC生物合成基因的了解;iii)探讨了如何利用各种基因组资源和标记靶向LMWC,以加速小扁豆育种工作,提高胁迫耐受性。