Suppr超能文献

芽的生命:利用代谢条形码分析来描述榛子大芽微生物组生物多样性。

A bud's life: Metabarcoding analysis to characterise hazelnut big buds microbiome biodiversity.

机构信息

Dipartimento di Scienze Agrarie e Forestali, Università degli Studi della Tuscia, Via San Camillo de Lellis snc, Viterbo 01100, Italy.

Dipartimento di Scienze Agrarie e Forestali, Università degli Studi della Tuscia, Via San Camillo de Lellis snc, Viterbo 01100, Italy.

出版信息

Microbiol Res. 2024 Oct;287:127851. doi: 10.1016/j.micres.2024.127851. Epub 2024 Jul 24.

Abstract

Despite Corylus avellana L. being an economically important shrub species known for its resilience to adverse environmental conditions, it constantly faces attacks from a plethora of biotic entities. Among these, the mite pest Phytoptus avellanae is gaining importance, causing economic losses every year. This mite colonises the new generative and vegetative buds, leading them to become swollen and reddish, and drastically reducing hazelnut production. The biology behind gall formation is still poorly understood. This study provides a qualitative and quantitative description of the microbiome in both healthy and infested buds of two economically important hazelnut cultivars through metabarcoding of fungal ITS and bacterial 16 S. Potentially pathogenic genera such as Fusarium and Pseudomonas were predominant in the infested buds, along with the obligate intracellular bacterial genus Wolbachia. Akanthomyces muscarius was instead isolated from culture-based methods only from the infested buds. These findings could improve the understanding of gall ecology, supporting the management of mite populations, and they could also serve as a milestone for further studies on low-impact, monitoring-driven, and genetically targeted control strategies.

摘要

尽管榛子( Corylus avellana L.)是一种经济上重要的灌木物种,以其对不利环境条件的适应能力而闻名,但它不断面临着大量生物实体的攻击。在这些实体中,叶螨 Phytoptus avellanae 的重要性日益增加,每年都会造成经济损失。这种螨虫会在新的生殖和营养芽上定殖,导致它们变得肿胀和发红,并大大降低榛子的产量。关于瘿形成的生物学仍然知之甚少。本研究通过真菌 ITS 和细菌 16S 的宏条形码对两种经济上重要的榛子品种的健康和受感染芽进行了定性和定量描述。在受感染的芽中,优势属包括镰孢菌属( Fusarium )和假单胞菌属( Pseudomonas ),以及专性细胞内细菌属沃尔巴克氏体属( Wolbachia )。相反,阿克曼氏菌属( Akanthomyces muscarius )仅从受感染的芽中通过基于培养的方法分离出来。这些发现可以提高对瘿生态学的理解,支持对螨虫种群的管理,也可以作为进一步研究低影响、基于监测和基因靶向控制策略的里程碑。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验