Shelake Rahul Mahadev, Pramanik Dibyajyoti, Kim Jae-Yean
Division of Applied Life Science (BK21 Plus Program), Plant Molecular Biology and Biotechnology Research Center, Gyeongsang National University, Jinju 660-701, Korea.
Division of Life Science (CK1 Program), Gyeongsang National University, Jinju 660-701, Korea.
Microorganisms. 2019 Aug 17;7(8):269. doi: 10.3390/microorganisms7080269.
Plants and microbes are co-evolved and interact with each other in nature. Plant-associated microbes, often referred to as plant microbiota, are an integral part of plant life. Depending on the health effects on hosts, plant-microbe (PM) interactions are either beneficial or harmful. The role of microbiota in plant growth promotion (PGP) and protection against various stresses is well known. Recently, our knowledge of community composition of plant microbiome and significant driving factors have significantly improved. So, the use of plant microbiome is a reliable approach for a next green revolution and to meet the global food demand in sustainable and eco-friendly agriculture. An application of the multifaceted PM interactions needs the use of novel tools to know critical genetic and molecular aspects. Recently discovered clustered regularly interspaced short palindromic repeats (CRISPR)/Cas-mediated genome editing (GE) tools are of great interest to explore PM interactions. A systematic understanding of the PM interactions will enable the application of GE tools to enhance the capacity of microbes or plants for agronomic trait improvement. This review focuses on applying GE techniques in plants or associated microbiota for discovering the fundamentals of the PM interactions, disease resistance, PGP activity, and future implications in agriculture.
植物和微生物在自然界中共同进化并相互作用。与植物相关的微生物,通常被称为植物微生物群,是植物生命不可或缺的一部分。根据对宿主的健康影响,植物 - 微生物(PM)相互作用要么有益要么有害。微生物群在促进植物生长(PGP)和抵御各种胁迫方面的作用是众所周知的。最近,我们对植物微生物组群落组成和重要驱动因素的了解有了显著提高。因此,利用植物微生物组是实现下一次绿色革命以及满足可持续和生态友好型农业全球粮食需求的可靠途径。多方面的PM相互作用的应用需要使用新工具来了解关键的遗传和分子方面。最近发现的成簇规律间隔短回文重复序列(CRISPR)/Cas介导的基因组编辑(GE)工具对于探索PM相互作用非常有意义。对PM相互作用的系统理解将有助于应用GE工具来增强微生物或植物改善农艺性状的能力。本综述重点关注在植物或相关微生物群中应用GE技术来发现PM相互作用的基本原理、抗病性、PGP活性以及对农业的未来影响。