Durán María, San Emeterio Leticia, Múgica Leire, Zabalgogeazcoa Iñigo, Vázquez de Aldana Beatriz R, Canals Rosa María
Grupo de Ecología y Medio Ambiente, Departamento de Agronomía, Biotecnología y Alimentación, Universidad Pública de Navarra, Pamplona, Spain.
Centro Jerónimo de Ayanz, Institute on Innovation & Sustainable Development in Food Chain, Pamplona, Spain.
Front Microbiol. 2021 Jun 11;12:679729. doi: 10.3389/fmicb.2021.679729. eCollection 2021.
The plant microbiome is likely to play a key role in the resilience of communities to the global climate change. This research analyses the culturable fungal mycobiota of across a sharp gradient of disturbance caused by an intense, anthropogenic fire regime. This factor has dramatic consequences for the community composition and diversity of high-altitude grasslands in the Pyrenees. Plants were sampled at six sites, and the fungal assemblages of shoots, rhizomes, and roots were characterized by culture-dependent techniques. Compared to other co-occurring grasses, hosted a poorer mycobiome which consisted of many rare species and a few core species that differed between aerial and belowground tissues. Recurrent burnings did not affect the diversity of the endophyte assemblages, but the percentages of infection of two core species - and sp. -increased significantly. The patterns observed might be explained by (1) the capacity to survive in belowground tissues during winter and rapidly spread to the shoots when the grass starts its spring growth (), and (2) the location in belowground tissues and its resistance to stress ( sp.). Future work should address whether the enhanced taxa have a role in the expansive success of in these anthropized environments.
植物微生物群可能在群落应对全球气候变化的恢复力中发挥关键作用。本研究分析了在由强烈的人为火灾造成的急剧干扰梯度下的可培养真菌菌群。这一因素对比利牛斯山脉高海拔草原的群落组成和多样性产生了巨大影响。在六个地点采集了植物样本,并通过依赖培养的技术对地上部分、根茎和根系的真菌群落进行了表征。与其他共生草相比,[草的名称]拥有较差的微生物群,其中包括许多稀有物种和一些在地上和地下组织中不同的核心物种。反复燃烧并未影响内生菌群落的多样性,但两种核心物种——[物种名称1]和[物种名称2]——的感染率显著增加。观察到的模式可能由以下原因解释:(1)[物种名称1]在冬季地下组织中存活并在草开始春季生长时迅速传播到地上部分的能力,以及(2)[物种名称2]在地下组织中的位置及其对压力的抵抗力。未来的工作应探讨这些增加的分类群是否在这些人为环境中[草的名称]的扩张成功中发挥作用。