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Ecol Evol. 2019 Oct 19;9(21):12231-12244. doi: 10.1002/ece3.5711. eCollection 2019 Nov.
4
Effects of nutrient supply, herbivory, and host community on fungal endophyte diversity.养分供应、食草作用和宿主群落对真菌内生菌多样性的影响。
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环境和母体传播对叶片真菌内生菌群落组装的贡献。

Contributions of environmental and maternal transmission to the assembly of leaf fungal endophyte communities.

机构信息

Laboratory of Environmental Microbiology, Institute of Microbiology of the Czech Academy of Sciences, Vídeňská 1083, 142 20 Prague 4, Czech Republic.

W.K. Kellogg Biological Station, Michigan State University, Hickory Corners, MI 49060, USA.

出版信息

Proc Biol Sci. 2021 Aug 11;288(1956):20210621. doi: 10.1098/rspb.2021.0621.

DOI:10.1098/rspb.2021.0621
PMID:34375558
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC8354749/
Abstract

Leaf fungal endophytes (LFEs) contribute to plant growth and responses to stress. Fungi colonize leaves through maternal transmission, e.g. via the seed, and through environmental transmission, e.g. via aerial dispersal. The relative importance of these two pathways in assembly and function of the LFE community is poorly understood. We used amplicon sequencing to track switchgrass () LFEs in a greenhouse and field experiment as communities assembled from seed endophytes and rain fungi (integration of wet and dry aerial dispersal) in germinating seeds, seedlings, and adult plants. Rain fungi varied temporally and hosted a greater portion of switchgrass LFE richness (greater than 65%) than were found in seed endophytes (greater than 25%). Exposure of germinating seeds to rain inoculum increased dissimilarity between LFE communities and seed endophytes, increasing the abundance of rain-derived taxa, but did not change diversity. In the field, seedling LFE composition changed more over time, with a decline in seed-derived taxa and an increase in richness, in response to environmental transmission than LFEs of adult plants. We show that environmental transmission is an important driver of LFE assembly, and likely plant growth, but its influence depends on both the conditions at the time of colonization and plant life stage.

摘要

叶部真菌内生菌(LFEs)有助于植物生长和应对压力。真菌通过母本传播(例如通过种子)和环境传播(例如通过空气传播)定植于叶片。这两种途径在 LFEs 群落的组装和功能中的相对重要性尚未得到充分理解。我们使用扩增子测序,在温室和田间实验中追踪柳枝稷()LFEs,这些实验将种子内生真菌和雨真菌(湿和干空气传播的整合)作为群落组装在萌发种子、幼苗和成年植物中。雨真菌随时间变化,且比种子内生真菌(大于 25%)拥有更高比例的柳枝稷 LFEs 丰富度(大于 65%)。将萌发种子暴露于雨接种体中增加了 LFEs 群落与种子内生真菌之间的差异,增加了雨衍生类群的丰度,但并未改变多样性。在田间,幼苗 LFE 组成随时间的推移而变化更大,种子衍生类群减少,丰富度增加,这是对环境传播的反应,而不是成年植物的 LFEs。我们表明,环境传播是 LFEs 组装的重要驱动因素,可能也是植物生长的重要驱动因素,但它的影响取决于定植时的条件和植物的生活阶段。