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首页> 外文期刊>Microbial Ecology: An International Journal >Communities of Cultivable Root Mycobionts of the Seagrass Posidonia oceanica in the Northwest Mediterranean Sea Are Dominated by a Hitherto Undescribed Pleosporalean Dark Septate Endophyte
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Communities of Cultivable Root Mycobionts of the Seagrass Posidonia oceanica in the Northwest Mediterranean Sea Are Dominated by a Hitherto Undescribed Pleosporalean Dark Septate Endophyte

机译:地中海西北海域海草波塞冬菌的可培养根真菌菌丝体以迄今未描述的侧孢子菌深色深色内生菌为主。

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摘要

Seagrasses, a small group of submerged marine macrophytes, were reported to lack mycorrhizae, i.e., the root-fungus symbioses most terrestrial plants use for nutrient uptake. On the other hand, several authors detected fungal endophytes in seagrass leaves, shoots, rhizomes, and roots, and an anatomically and morphologically unique dark septate endophytic (DSE) association has been recently described in the roots of the Mediterranean seagrass Posidonia oceanica. Nevertheless, the global diversity of seagrass mycobionts is not well understood, and it remains unclear what fungus forms the DSE association in P. oceanica roots. We isolated and determined P. oceanica root mycobionts from 11 localities in the northwest Mediterranean Sea with documented presence of the DSE association and compared our results with recent literature. The mycobiont communities were low in diversity (only three species), were dominated by a single yet unreported marine fungal species (ca. 90 % of the total 177 isolates), and lacked common terrestrial and freshwater root mycobionts. Our phylogenetic analysis suggests that the dominating species represents a new monotypic lineage within the recently described Aigialaceae family (Pleosporales, Ascomycota), probably representing a new genus. Most of its examined colonies developed from intracellular microsclerotia occupying host hypodermis and resembling microsclerotia of terrestrial DSE fungi. Biological significance of this hitherto overlooked seagrass root mycobiont remains obscure, but its presence across the NW Mediterranean Sea and apparent root intracellular lifestyle indicate an intriguing symbiotic relationship with the dominant Mediterranean seagrass. Our microscopic observations suggest that it may form the DSE association recently described in P. oceanica roots.
机译:据报道,海草是一小类被淹没的海洋大型植物,缺乏菌根,即大多数陆生植物用于吸收养分的根真菌共生菌。另一方面,几位作者在海草的叶子,枝条,根茎和根中检测到了真菌内生菌,最近在地中海海草Posidonia oceanica的根中描述了一种解剖上和形态上独特的深色分隔的内生植物(DSE)关联。然而,人们对海草菌丝体的全球多样性知之甚少,目前尚不清楚哪种真菌在大洋假单胞菌根中形成DSE协会。我们从DSE协会的存在中分离并确定了地中海西北部11个地区的大洋疫霉根真菌,并将我们的结果与最新文献进行了比较。杀真菌剂群落的多样性较低(仅3个物种),由单一但未报告的海洋真菌物种(约占177个分离株的90%)占主导,并且缺乏常见的陆生和淡水根类真菌。我们的系统发育分析表明,主要物种代表最近描述的茄科(Piasporales,Ascomycota)中的一个新的单型谱系,可能代表了一个新属。它的大多数检查菌落是由占据宿主皮下的细胞内微核菌发展而来,类似于陆生DSE真菌的微菌核。迄今为止,这种被忽视的海草根真菌菌素的生物学意义仍然不清楚,但是它在西北地中海地区的存在和明显的根细胞内生活方式表明与占优势的地中海海草有着令人着迷的共生关系。我们的显微镜观察表明,它可能形成了最近在海洋假单胞菌根中描述的DSE关联。

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