Departament de Biologia Marina i Oceanografia, Institut de Ciències del Mar (CSIC), Barcelona, Catalonia, Spain.
Environ Microbiol. 2022 Dec;24(12):5951-5965. doi: 10.1111/1462-2920.16182. Epub 2022 Sep 19.
The interactions of parasitic fungi with their phytoplankton hosts in the marine environment are mostly unknown. In this study, we evaluated the diversity of Chytridiomycota in phytoplankton communities dominated by dinoflagellates at several coastal locations in the NW Mediterranean Sea and demonstrated the most prominent interactions of these parasites with their hosts. The protist community in seawater differed from that in sediment, with the latter characterized by a greater heterogeneity of putative hosts, such as dinoflagellates and diatoms, as well as a chytrid community more diverse in its composition and with a higher relative abundance. Chytrids accounted for 77 amplicon sequence variants, of which 70 were found exclusively among different blooming host species. The relative abundance of chytrids was highest in samples dominated by the dinoflagellate genera Ostreopsis and Alexandrium, clearly indicating the presence of specific chytrid communities. The establishment of parasitoid-host co-cultures of chytrids and dinoflagellates allowed the morphological identification and molecular characterization of three species of Chytridiomycota, including Dinomyces arenysensis, as one of the most abundant environmental sequences, and the discovery of two other species not yet described.
海洋环境中寄生真菌与其浮游植物宿主的相互作用大多未知。在这项研究中,我们评估了西北地中海几个沿海地区以甲藻为主的浮游植物群落中壶菌门的多样性,并证明了这些寄生虫与其宿主之间最显著的相互作用。海水中的原生生物群落与沉积物中的群落不同,后者具有更多样化的潜在宿主,如甲藻和硅藻,以及组成和相对丰度更高的壶菌群落。壶菌门共有 77 个扩增子序列变异体,其中 70 种仅存在于不同的优势宿主物种中。在以甲藻属浮游生物 Ostreopsis 和 Alexandrium 为主的样本中,壶菌的相对丰度最高,这清楚地表明存在特定的壶菌群落。壶菌和甲藻的寄生性共生培养物的建立,允许对三种壶菌门物种进行形态鉴定和分子特征描述,包括 Dinomyces arenysensis,它是最丰富的环境序列之一,还发现了另外两种尚未描述的物种。