Tissue Culture Section, Agri. Sci. & Tech. Dept., Vasantdada Sugar Institute, Pune, India.
Homi Bhabha National Institute, Mumbai, India.
Environ Sci Pollut Res Int. 2022 Nov;29(53):80062-80087. doi: 10.1007/s11356-022-20938-z. Epub 2022 May 31.
β-Glucan is an eco-friendly, biodegradable, and economical biopolymer with important roles for acquiring adaptations to mitigate climate change in crop plants. β-Glucan plays a crucial role in the activation of functional plant innate immune system by triggering the downward signaling cascade/s, resulting in the accumulation of different pathogenesis-related proteins (PR-proteins), reactive oxygen species (ROS), antioxidant defense enzymes, Ca-influx as well as activation of mitogen-activated protein kinase (MAPK) pathway. Recent experimental studies have shown that β-glucan recognition is mediated by co-receptor LysMPRR (lysin motif pattern recognition receptor)-CERK1 (chitin elicitor receptor kinase 1), LYK4, and LYK5 (LysM-containing receptor-like kinase), as well as different receptor systems in plants that could be plant species-specific and/or age and/or tissue-dependent. Transgenic overexpression of β-glucanase, chitinase, and/or in combination with other PR-proteins like cationic peroxidase, AP24,thaumatin-likeprotein 1 (TLP-1) has also been achieved for improving plant disease resistance in crop plants, but the transgenic methods have some ethical and environmental concerns. In this regard, elicitation of plant immunity using biopolymer like β-glucan and chitosan offers an economical, safe, and publicly acceptable method. The β-glucan and chitosan nanocomposites have proven to be useful for the activation of plant defense pathways and to enhance plant response/systemic acquired resistance (SAR) against broad types of plant pathogens and mitigating multiple stresses under the changing climate conditions.
β-葡聚糖是一种环保、可生物降解且经济实惠的生物聚合物,在农作物中具有适应气候变化的重要作用。β-葡聚糖通过触发下游信号级联反应,在激活植物固有免疫功能方面发挥着关键作用,导致不同病程相关蛋白(PR 蛋白)、活性氧(ROS)、抗氧化防御酶、钙离子内流以及丝裂原激活蛋白激酶(MAPK)途径的积累。最近的实验研究表明,β-葡聚糖的识别是由共受体 LysMPRR(赖氨酸基模式识别受体)-CERK1(几丁质激发受体激酶 1)、LYK4 和 LYK5(含赖氨酸的受体样激酶)介导的,以及植物中的不同受体系统,这些受体系统可能具有植物种特异性和/或年龄和/或组织依赖性。β-葡聚糖酶、几丁质酶的转基因过表达,和/或与其他 PR 蛋白如阳离子过氧化物酶、AP24、thaumatin-like protein 1(TLP-1)的组合,也已被用于提高农作物的抗病性,但转基因方法存在一些伦理和环境方面的问题。在这方面,使用生物聚合物如β-葡聚糖和壳聚糖来诱导植物免疫为提供了一种经济、安全且公众可接受的方法。β-葡聚糖和壳聚糖纳米复合材料已被证明可用于激活植物防御途径,并增强植物对广泛类型植物病原体的抗性和对气候变化下多种胁迫的系统获得性抗性(SAR)。