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创新策略用于柑橘黄龙病的鉴定与管理。

Innovative strategies for characterizing and managing huanglongbing in citrus.

机构信息

Department of Plant Pathology, College of Agriculture, University of Sargodha, Sargodha, 40100, Pakistan.

Department of Plant Protection, Sivas University of Science and Technology, Sivas, 58140, Turkey.

出版信息

World J Microbiol Biotechnol. 2024 Oct 8;40(11):342. doi: 10.1007/s11274-024-04135-3.

Abstract

Huanglongbing is a severe citrus disease that causes significant tree and crop losses worldwide. It is caused by three Candidatus liberibacter species and spread by psyllids and infected budwood. Various methods have been used to diagnose and understand HLB, including recent advances in molecular and biochemical assays that explore the pathogen's mode of action and its impact on the host plant. Characterization is essential for developing sustainable HLB management strategies. Nanotechnology, particularly nano sensors and metal nanoparticles, shows potential for precise disease diagnosis and control. Additionally, antibiotics, nanomaterials, and genetic engineering techniques like transgenesis offer promising avenues for mitigating HLB. These diverse approaches, from conventional to cutting-edge, contribute to developing integrated HLB management strategies for sustainable citrus cultivation. The review highlights the significant advancements in conventional and advanced molecular and biochemical characterization of HLB, aiding in early detection and understanding of the infection mechanism. It emphasizes the multidimensional efforts required to characterize disease and devise innovative management strategies. As the citrus industry faces unprecedented challenges, exploring new frontiers in HLB research provides hope for sustainable solutions and a resilient future for global citrus cultivation.

摘要

黄龙病是一种严重的柑橘病害,在全球范围内造成了显著的树木和作物损失。它由三种候选自由杆菌物种引起,通过木虱和感染的接穗传播。已经使用了各种方法来诊断和了解 HLB,包括最近在分子和生化分析方面的进展,这些进展探索了病原体的作用方式及其对宿主植物的影响。特征描述对于制定可持续的 HLB 管理策略至关重要。纳米技术,特别是纳米传感器和金属纳米粒子,显示出精确诊断和控制疾病的潜力。此外,抗生素、纳米材料和基因工程技术如转基因提供了减轻 HLB 的有前途的途径。这些从传统到前沿的多样化方法为可持续的柑橘种植开发综合的 HLB 管理策略做出了贡献。该综述强调了在 HLB 的常规和先进分子及生化特征描述方面的重大进展,有助于早期检测和理解感染机制。它强调了为了对疾病进行特征描述和制定创新管理策略而需要进行的多维努力。由于柑橘产业面临前所未有的挑战,探索 HLB 研究的新前沿为可持续解决方案和全球柑橘种植的弹性未来提供了希望。

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