Chandrasekaran Umashankar, Hong Woo Jong, Kim Hyeran
Institute of Life Sciences, Kangwon National University, Chuncheon, Republic of Korea.
Department of Biological Sciences, Kangwon National University, Chuncheon, Republic of Korea.
Front Plant Sci. 2025 Jan 7;15:1532074. doi: 10.3389/fpls.2024.1532074. eCollection 2024.
Plant peptides, synthesized from larger precursor proteins, often undergo proteolytic cleavage and post-translational modifications to form active peptide hormones. This process involves several proteolytic enzymes (proteases). Among these, SBTs (serine proteases) are a major class of proteolytic enzymes in plants and play key roles in various regulatory mechanisms, including plant immune response, fruit development and ripening, modulating root growth, seed development and germination, and organ abscission. However, current knowledge about SBTs is largely limited to ,' with few studies exploring loss of function analyses for more in depth characterization. Research focused on economically significant horticultural crops, like tomato and pepper, remains scarce. Given this, leveraging SBTs for horticultural crop improvement through advanced gene-editing tools is critical for enhancing crop resilience to stress and pathogens. Over the past five years, research on proteolytic enzymes, especially SBTs, has increased markedly, yet reports involving loss- or gain-of function analyses aimed at improving crop yield and quality are still limited. This review summarizes recent findings on SBT enzymes, which act as 'protein scissors' in activating peptide hormones, and discusses the potential for using selected SBTs in CRISPR-Cas9 gene editing to enhance the growth and resilience of economically important Solanaceae crops, with a focus on pepper.
植物肽由较大的前体蛋白合成,通常经过蛋白水解切割和翻译后修饰以形成活性肽激素。这个过程涉及几种蛋白水解酶(蛋白酶)。其中,丝氨酸蛋白酶(SBTs)是植物中一类主要的蛋白水解酶,在各种调节机制中起关键作用,包括植物免疫反应、果实发育和成熟、调节根系生长、种子发育和萌发以及器官脱落。然而,目前关于丝氨酸蛋白酶的知识在很大程度上仅限于,很少有研究探索功能丧失分析以进行更深入的表征。针对番茄和辣椒等具有经济重要性的园艺作物的研究仍然很少。鉴于此,利用先进的基因编辑工具利用丝氨酸蛋白酶来改良园艺作物对于增强作物对压力和病原体的抗性至关重要。在过去五年中,关于蛋白水解酶,尤其是丝氨酸蛋白酶的研究显著增加,但旨在提高作物产量和品质的功能丧失或功能获得分析的报告仍然有限。本综述总结了丝氨酸蛋白酶作为激活肽激素的“蛋白剪刀”的最新研究结果,并讨论了在CRISPR-Cas9基因编辑中使用选定的丝氨酸蛋白酶来增强重要经济茄科作物(重点是辣椒)的生长和抗性的潜力。