Department of Biotechnology, Guru Nanak Dev University, Amritsar, 143005, Punjab, India.
Department of Biotechnology, Guru Nanak Dev University, Amritsar, 143005, Punjab, India; Department of Agriculture, Guru Nanak Dev University, Amritsar, 143005, Punjab, India.
Int J Biol Macromol. 2023 Jul 31;244:125272. doi: 10.1016/j.ijbiomac.2023.125272. Epub 2023 Jun 8.
Biotic and abiotic stresses impose adverse effects on plant's development, growth, and production. For the past many years, researchers are trying to understand the stress induced responses in plants and decipher strategies to produce stress tolerant crops. It has been demonstrated that molecular networks encompassing an array of genes and functional proteins play a key role in generating responses to combat different stresses. Newly, there has been a resurgence of interest to explore the role of lectins in modulating various biological responses in plants. Lectins are naturally occurring proteins that form reversible linkages with their respective glycoconjugates. To date, several plant lectins have been recognized and functionally characterized. However, their involvement in stress tolerance is yet to be comprehensively analyzed in greater detail. The availability of biological resources, modern experimental tools, and assay systems has provided a fresh impetus for plant lectin research. Against this backdrop, the present review provides background information on plant lectins and recent knowledge on their crosstalks with other regulatory mechanisms, which play a remarkable role in plant stress amelioration. It also highlights their versatile role and suggests that adding more information to this under-explored area will usher in a new era of crop improvement.
生物和非生物胁迫会对植物的发育、生长和产量产生不利影响。多年来,研究人员一直试图了解植物的胁迫诱导反应,并解析产生抗胁迫作物的策略。已经证明,包含一系列基因和功能蛋白的分子网络在产生应对各种胁迫的反应中起着关键作用。最近,人们重新产生了兴趣,以探索凝集素在调节植物各种生物反应中的作用。凝集素是天然存在的蛋白质,它们与各自的糖缀合物形成可逆连接。迄今为止,已经识别和功能表征了几种植物凝集素。然而,它们在耐胁迫方面的作用尚未得到全面深入的分析。生物资源的可用性、现代实验工具和测定系统为植物凝集素研究提供了新的动力。在此背景下,本综述提供了植物凝集素的背景信息,以及它们与其他调节机制相互作用的最新知识,这些相互作用在植物胁迫缓解中起着重要作用。它还强调了它们的多功能作用,并表明向这个研究不足的领域添加更多信息将开创作物改良的新时代。