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窃听植物与蓟马相互作用的关键防御代表。

Eavesdropping the pivotal defensive representatives of plant-thrips interaction.

作者信息

Singla Prabhjot, Kaur Rimaljeet, Sharma Sucheta

机构信息

Department of Biochemistry, Punjab Agricultural University, Ludhiana, Punjab 141004 India.

出版信息

Physiol Mol Biol Plants. 2025 Feb;31(2):173-197. doi: 10.1007/s12298-025-01554-w. Epub 2025 Mar 3.

Abstract

The substantial economic impact of thrips on crop yield and productivity enthused us to review comprehensive research findings associated with plant-thrips interaction. An attempt has been made to summarize a broad spectrum of knowledge on thrips infestation in different crops regarding defensive traits including plant morphological features, biochemical alterations and transcriptional profiling of defensive genes along with effective thrips management strategies. Thrips feeding mechanism involves puncturing the outer (epidermal) layer of host tissue and evoking the plant defence mechanism. Plants respond to thrips attacks by activating the defensive genes, which lead to the production of physical barriers (trichomes, waxes, and papillae) and biochemical compounds (primary and secondary metabolites). It is imperative to appreciate the physiological responses, metabolic changes, and regulation at the transcriptional level of various phytoconstituents during thrips feeding. The literature survey revealed that leaf size, papillae and trichome density, total phenols, tannins and genes associated with phenylalanine metabolism and flavonoid biosynthesis contribute to plant resistance against thrips infestation. Thus, this comprehensive overview will serve as a roadmap for researchers, guiding future studies and the development of sustainable pest management practices to mitigate thrips-related damage and enhance crop resilience.

摘要

蓟马对作物产量和生产力产生的重大经济影响促使我们回顾与植物-蓟马相互作用相关的全面研究结果。我们尝试总结关于不同作物中蓟马侵害的广泛知识,内容涉及防御特性,包括植物形态特征、生化变化以及防御基因的转录谱分析,同时还包括有效的蓟马管理策略。蓟马的取食机制包括刺穿宿主组织的外层(表皮)并引发植物防御机制。植物通过激活防御基因对蓟马攻击做出反应,这些基因会导致物理屏障(毛状体、蜡质和乳突)和生化化合物(初级和次级代谢产物)的产生。了解蓟马取食过程中各种植物成分在生理反应、代谢变化以及转录水平上的调控至关重要。文献调查表明,叶片大小、乳突和毛状体密度、总酚、单宁以及与苯丙氨酸代谢和类黄酮生物合成相关的基因有助于植物抵抗蓟马侵害。因此,这一全面概述将为研究人员提供路线图,指导未来的研究以及制定可持续的害虫管理措施,以减轻与蓟马相关的损害并增强作物的恢复力。

相似文献

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Eavesdropping the pivotal defensive representatives of plant-thrips interaction.窃听植物与蓟马相互作用的关键防御代表。
Physiol Mol Biol Plants. 2025 Feb;31(2):173-197. doi: 10.1007/s12298-025-01554-w. Epub 2025 Mar 3.

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