Seonghan Jang,Jin-Soo Son,Eric A Schmelz,Choong-Min Ryu
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引用次数: 0
摘要
Ralstonia solanacearum 和 R. pseudosolanacearum 是细菌性枯萎病的病原菌,是第二大破坏性植物病原菌,影响 310 多种植物,在全球造成重大经济损失。R.solanacearum和R.pseudosolanacearum通过地下根系感染植物,与寄主和周围的微生物群相互作用,并在木质部繁殖,细菌细胞及其多糖产物阻碍了从根部到地上部的水分运输。目前,有效的控制方法有限,因为抗性基因不可用,抗生素也证明无效。在本评论中,我们回顾了防治细菌性枯萎病的最新进展,并将方法(武器)分为三种不同的策略。物理和化学武器分别侧重于利用声波触发作物免疫和减少细菌毒力信号。生物武器则利用捕食性原生动物直接吞噬根区的 Ralstonia 细胞,同时重塑保护性根瘤微生物群以强化植物。我们相信,这些新方法有望彻底改变作物对细菌性枯萎病的保护,并开创可持续农业的新纪元。
Novel weapon-aided plant protection in the underground battlefield.
Ralstonia solanacearum and R. pseudosolanacearum, the causative agents of bacterial wilt, ranks as the second most devastating phytopathogens, affecting over 310 plant species and causing substantial economic losses worldwide. R. solanacearum and R. pseudosolanacearum infect plants through the underground root system, where it interacts with both the host and the surrounding microbiota and multiply in the xylem where bacteria cell and its polysaccharide product block the water transportation from root to aboveground. Currently, effective control methods are limited, as resistance genes are unavailable and antibiotics prove ineffective. In current Commentary, we review recent advancements in combating bacterial wilt, categorizing the approaches (weapons) into three distinct strategies. The physical and chemical weapons focus on leveraging sound waves to trigger crop immunity and reducing bacterial virulence signaling, respectively. The biological weapon employs predatory protists to directly consume Ralstonia cells in the root zone, while also reshaping the protective rhizosphere microbiome to fortify the plant. We believe that these novel methods hold the potential to revolutionize crop protection from bacterial wilt and inspire new era in sustainable agriculture.
期刊介绍:
Plant Signaling & Behavior, a multidisciplinary peer-reviewed journal published monthly online, publishes original research articles and reviews covering the latest aspects of signal perception and transduction, integrative plant physiology, and information acquisition and processing.