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综合组学策略在理解和防治水稻生产中褐飞虱毒力中的应用:综述。

Integrative Omics Strategies for Understanding and Combating Brown Planthopper Virulence in Rice Production: A Review.

机构信息

The National Key Laboratory of Rice Biological Breeding, China National Rice Research Institute, Hangzhou 311401, China.

出版信息

Int J Mol Sci. 2024 Oct 12;25(20):10981. doi: 10.3390/ijms252010981.

Abstract

The brown planthopper (, BPH) is a serious insect pest responsible for causing immense economic losses to rice growers around the globe. The development of high-throughput sequencing technologies has significantly improved the research on this pest, and its genome structure, gene expression profiles, and host-plant interactions are being unveiled. The integration of genomic sequencing, transcriptomics, proteomics, and metabolomics has greatly increased our understanding of the biological characteristics of planthoppers, which will benefit the identification of resistant rice varieties and strategies for their control. Strategies like more optimal genome assembly and single-cell RNA-seq help to update our knowledge of gene control structure and cell type-specific usage, shedding light on how planthoppers adjust as well. However, to date, a comprehensive genome-wide investigation of the genetic interactions and population dynamics of BPHs has yet to be exhaustively performed using these next-generation omics technologies. This review summarizes the recent advances and new perspectives regarding the use of omics data for the BPH, with specific emphasis on the integration of both fields to help develop more sustainable pest management strategies. These findings, in combination with those of post-transcriptional and translational modifications involving non-coding RNAs as well as epigenetic variations, further detail intricate host-brown planthopper interaction dynamics, especially regarding resistant rice varieties. Finally, the symbiogenesis of the symbiotic microbial community in a planthopper can be characterized through metagenomic approaches, and its importance in enhancing virulence traits would offer novel opportunities for plant protection by manipulating host-microbe interactions. The concerted diverse omics approaches collectively identified the holistic and complex mechanisms of virulence variation in BPHs, which enables efficient deployment into rice resistance breeding as well as sustainable pest management.

摘要

褐飞虱(,BPH)是一种严重的昆虫害虫,它导致了全球范围内的水稻种植者遭受了巨大的经济损失。高通量测序技术的发展极大地促进了对这种害虫的研究,其基因组结构、基因表达谱和与宿主植物的相互作用正在被揭示。基因组测序、转录组学、蛋白质组学和代谢组学的整合极大地提高了我们对飞虱生物学特性的理解,这将有助于鉴定抗水稻品种和控制它们的策略。更优化的基因组组装和单细胞 RNA-seq 等策略有助于更新我们对基因调控结构和细胞类型特异性使用的认识,揭示了飞虱的适应机制。然而,迄今为止,利用这些下一代组学技术对 BPH 的遗传相互作用和种群动态进行全面的全基因组调查尚未详尽进行。本综述总结了利用组学数据研究 BPH 的最新进展和新观点,特别强调了这两个领域的整合,以帮助制定更可持续的害虫管理策略。这些发现,结合涉及非编码 RNA 和表观遗传变异的转录后和翻译后修饰的发现,进一步详细说明了复杂的宿主-褐飞虱相互作用动态,特别是关于抗水稻品种的动态。最后,可以通过宏基因组学方法来描述飞虱共生微生物群落的共生发生,并且通过操纵宿主-微生物相互作用来增强毒力特性,这为植物保护提供了新的机会。协同的多种组学方法共同确定了 BPH 毒力变异的整体和复杂机制,这使得它们能够有效地应用于水稻抗性育种和可持续的害虫管理。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ccf3/11507613/a6d256cec110/ijms-25-10981-g001.jpg

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