Suppr超能文献

蓝莓叶际微生物群:组织特异性核心群落及其在不同品种和年份间的稳定性

The blueberry phyllosphere microbiota: tissue-specific core communities and their stability across cultivars and years.

作者信息

Giese Matteo, Stefani Erika, Larger Simone, Pindo Massimo, Farneti Brian, Ajelli Matteo, Cattani Monica, Delgado-Baquerizo Manuel, Giongo Lara, Coleine Claudia, Donati Claudio

机构信息

University School for Advanced Studies IUSS Pavia, Palazzo del Broletto, Piazza della Vittoria 15, Pavia, 27100, Italy.

Unit of Computational Biology, Research and Innovation Centre, Fondazione Edmund Mach, Via Mach 1, San Michele all'Adige, 38098, Italy.

出版信息

BMC Plant Biol. 2025 Jul 22;25(1):947. doi: 10.1186/s12870-025-06871-6.

Abstract

Blueberries are critical for food production due to their widespread consumption and nutritional value. Beyond agriculture, wild Vaccinium species play essential ecological roles, including supporting pollinators and enhancing soil health. This dual importance underscores their relevance to both food security and ecosystem sustainability. The fruit-associated microbiome, both internal and surface-dwelling, includes a wide range of microorganisms. These microbial communities play a dual role: they influence fruit quality (e.g., taste, texture, shelf life) and are also involved in the degradation processes that occur during fruit senescence or postharvest storage.". Despite their importance, the specific factors shaping the microbiomes of blueberry fruits, as well as their relationship with other above-ground parts of the plant and their stability over different years, remain poorly understood. We conducted a field experiment to characterize the taxonomic composition of fungal and bacterial communities colonizing the leaves and the surface and pulp of fruits on a collection of 10 different cultivars of blueberry over two years. Independently from the sampling time, pulp of the fruit, surface and leaves harbor specific and distinct microbiomes. A major factor determining the microbiome of blueberry fruits and leaves was plant cultivar, followed by tissue. We further identified the core microbiome for each plant tissue and demonstrated that core taxa account for the dominant fraction of the microbiota of each plant. As trade and production of blueberries is expanding, our results provide a foundation for advancing the development of targeted microbiome management strategies, with potential applications in enhancing plant health and productivity.

摘要

蓝莓因其广泛的消费和营养价值,对粮食生产至关重要。除农业领域外,野生越橘物种发挥着重要的生态作用,包括为传粉者提供支持和改善土壤健康。这种双重重要性凸显了它们与粮食安全和生态系统可持续性的相关性。与果实相关的微生物群,包括内部和表面的微生物,包含广泛的微生物种类。这些微生物群落发挥着双重作用:它们影响果实品质(如味道、质地、保质期),也参与果实衰老或采后储存期间发生的降解过程。”尽管它们很重要,但塑造蓝莓果实微生物群的具体因素,以及它们与植物其他地上部分的关系及其在不同年份的稳定性,仍然知之甚少。我们进行了一项田间试验,以表征在两年时间里,10个不同蓝莓品种的叶片、果实表面和果肉上定殖的真菌和细菌群落的分类组成。与采样时间无关,果实的果肉、表面和叶片具有特定且不同的微生物群。决定蓝莓果实和叶片微生物群的一个主要因素是植物品种,其次是组织。我们进一步确定了每个植物组织的核心微生物群,并证明核心分类群占每个植物微生物群的主导部分。随着蓝莓贸易和生产的不断扩大,我们的结果为推进有针对性的微生物群管理策略的发展提供了基础,在增强植物健康和生产力方面具有潜在应用价值。

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