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褐飞虱肠道共生微生物菌群的研究

Study on the gut symbiotic microbiota in long- and short-winged brown planthopper, Nilaparvata lugens (Stål).

机构信息

Zhejiang Provincial Key Laboratory of Biometrology and Inspection and Quarantine, College of Life Science, China Jiliang University, Hangzhou, 310018, China.

出版信息

Sci Rep. 2024 May 17;14(1):11306. doi: 10.1038/s41598-024-62350-2.

Abstract

The brown planthopper (BPH), Nilaparvata lugens (Stål), is one of the most important rice pests in Asia rice regions. BPH has monophagy, migration, rapid reproduction and strong environmental adaptability, and its control is a major problem in pest management. Adult BPH exhibit wing dimorphism, and the symbiotic microbiota enriched in the gut can provide energy for wing flight muscles as a source of nutrition. In order to study the diversity of symbiotic microbiota in different winged BPHs, this paper takes female BPH as the research object. It was found that the number of symbiotic microbiota of different winged BPHs would change at different development stages. Then, based on the 16S rRNA and ITS sequences, a metagenomic library was constructed, combined with fluorescent quantitative PCR and high-throughput sequencing, the dominant symbiotic microbiota flora in the gut of different winged BPHs was found, and the community structure and composition of symbiotic microbiota in different winged BPHs were further determined. Together, our results preliminarily revealed that symbiotic microbiota in the gut of BPHs have certain effects on wing morphology, and understanding the mechanisms underlying wing morph differentiation will clarify how nutritional factors or environmental cues alter or regulate physiological and metabolic pathways. These findings also establish a theoretical basis for subsequent explorations into BPH-symbiont interplay.

摘要

褐飞虱(BPH),Nilaparvata lugens(Stål),是亚洲稻区最重要的水稻害虫之一。BPH 具有单食性、迁飞性、繁殖迅速和较强的环境适应性,其防治是害虫管理中的一个主要问题。成虫 BPH 表现出翅型二态性,共生微生物群丰富的肠道可以为翅膀飞行肌肉提供能量,作为营养来源。为了研究不同翅型 BPH 共生微生物群的多样性,本文以雌性 BPH 为研究对象。结果发现,不同翅型 BPH 的共生微生物数量在不同发育阶段会发生变化。然后,基于 16S rRNA 和 ITS 序列构建了一个宏基因组文库,结合荧光定量 PCR 和高通量测序,发现了不同翅型 BPH 肠道中优势共生微生物菌群,并进一步确定了不同翅型 BPH 共生微生物菌群的群落结构和组成。总之,我们的结果初步表明,BPH 肠道中的共生微生物群对翅形态有一定的影响,了解翅形态分化的机制将阐明营养因素或环境线索如何改变或调节生理和代谢途径。这些发现也为后续探索 BPH-共生体相互作用奠定了理论基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/91c1/11101650/7e4f5bf345c7/41598_2024_62350_Fig1_HTML.jpg

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