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1.
J Eukaryot Microbiol ; 71(1): e13002, 2024.
Artigo em Inglês | MEDLINE | ID: mdl-37743754

RESUMO

Vampyrellid amoebae are predatory protists, which consume a variety of eukaryotic prey and inhabit freshwater, marine and terrestrial ecosystems. Although they have been known for almost 150 years, much of their diversity lacks an in-depth characterization. To date, environmental sequencing data hint at several uncharacterized lineages, to which no phenotype is associated. Furthermore, there are numerous historically described species without any molecular information. This study reports on two new vampyrellid strains from moorlands, which extract the protoplasts of Closterium species (Zygnematophyceae). Our data on morphology, prey range specificity and feeding strategy reveal that the studied vampyrellids are very similar to the historically described Vampyrella closterii. However, phylogenetic analyses demonstrate that the two strains do not belong to the genus Vampyrella and, instead, form a distinct clade in the family Leptophryidae. Hence, we introduce a new genus of algivorous protoplast extractors, Pseudovampyrella gen. nov., with the species P. closterii (= V. closterii) and P. minor. Our findings indicate that the genetic diversity of morphologically described vampyrellid species might be hugely underrated.


Assuntos
Cercozoários , Ecossistema , Filogenia , Protoplastos , DNA de Protozoário/genética , DNA Ribossômico/genética , Cercozoários/genética
2.
Environ Microbiol ; 25(12): 3630-3638, 2023 Dec.
Artigo em Inglês | MEDLINE | ID: mdl-37853476

RESUMO

DNA metabarcoding on a single organism is a promising approach to clarify the biological interactions (e.g., predator-prey relationships and symbiosis, including parasitism) of difficult-to-culture protists. To evaluate the effectiveness of this method, Radiolaria and Phaeodaria, which are ecologically important protistan groups, were chosen as target taxa. DNA metabarcoding on a single organism focused on the V9 region of the 18S rRNA gene revealed potential symbionts, parasites and food sources of Radiolaria and Phaeodaria. Previously reported hosts and symbionts (parasites) were detected, and newly recognized combinations were also identified. The contained organisms largely differed between Radiolaria and Phaeodaria. In Radiolaria, members of the same order tended to contain similar organisms, and the taxonomic composition of possible symbionts, parasites, and food sources was fixed at the species level. Members of the same phaeodarian family, however, did not contain similar organisms, and body part (i.e., the central capsule or the phaeodium) was the most important factor that divided the taxonomic composition of detected organisms, implying that the selection of appropriate body part is important when trying to ascertain contained organisms, even for unicellular zooplankton. Our results show that DNA metabarcoding on a single organism is effective in revealing the biological interactions of difficult-to-culture protists.


Assuntos
Cercozoários , Código de Barras de DNA Taxonômico , Eucariotos/genética , DNA , Cercozoários/genética , RNA Ribossômico 18S/genética
3.
Appl Environ Microbiol ; 88(22): e0121522, 2022 11 22.
Artigo em Inglês | MEDLINE | ID: mdl-36300943

RESUMO

The large-scale culture of low-cost algal biomass can be significantly affected by microbial grazing on the algae. To minimize the impact, it is necessary to manage the predators. In this study, we describe a new genus and species of vampyrellid amoeba, Kinopus chlorellivorus, which caused the loss of Chlorella sorokiniana in large-scale cultures. We assigned it to the family Leptophryidae (Vampyrellida) based on morphology and small-subunit (SSU) rRNA gene sequence comparisons. Using transmission electron microscopy, we found spherical lucent inclusions, which have not been reported for any leptophryids or other vampyrellids. The gene sequence of SSU rRNA did not match any recognized genera or species and contained four characteristic regions. K. chlorellivorus preys on algae by engulfment. Laboratory feeding experiments confirmed that its grazing rate was as high as 131 Chlorella cells day-1 individual-1. Results of prey-range experiments demonstrated that it could consume other chlorophyte microalgae (e.g., Scenedesmus, Coelastrella, and Haematococcus) but with a strong feeding ability on Chlorella spp., with ingestion rates ranging from 2.67 to 3.15 prey predator-1 h-1 and growth rates of the amoeba ranging from 0.039 to 0.045 h-1. On the basis of its high grazing ability on Chlorella, capacity to form large populations in a short period of time, and capacity to form resistant resting stages, this contaminant has the potential to cause serious problems in large-scale Chlorella culture and should be of concern to operators of algal production facilities. IMPORTANCE The vampyrellids (Vampyrellida, Rhizaria) are a major group of predatory amoebae that have attracted significant attention because of their diversity of feeding strategies. The crucial roles they play in important processes such as suppressing soil disease and controlling aquatic algae, and as microbial contaminants in outdoor large-scale algal cultures, have also received increasing attention. In this study, a new genus and species of algivorous vampyrellid amoeba, Kinopus chlorellivorus, is described as a significant grazer responsible for losses in outdoor industrial Chlorella cultures. We found that the amoeba's detrimental effects on Chlorella cultures may be related to its specific feeding characteristics. This study provides phenotypic and genetic information on a previously unknown vampyrellid, emphasizes the impact of contaminating vampyrellids in commercial microalgal cultures, and will contribute to the development of management strategies for predicting this kind of contaminant in large-scale microalgal cultivation.


Assuntos
Amoeba , Cercozoários , Chlorella , Microalgas , Rhizaria , Scenedesmus , Cercozoários/genética , Biomassa
4.
J Eukaryot Microbiol ; 69(3): e12905, 2022 05.
Artigo em Inglês | MEDLINE | ID: mdl-35303760

RESUMO

Hermesinum adriaticum is a rare marine and brackish flagellate that is of considerable interest due to its markable and fossilizable siliceous skeleton. Based on this skeleton, Hermesinum was initially considered a microalga of the Dictyochophyceae (Ochrophyta, Stramenopiles). Later on, it was assigned to the Ebriida due to its similarity to Ebria tripartita. The taxonomic assignment of the Ebriida, however, changed several times until it was placed within the Thecofilosea (Cercozoa, Rhizaria), based on genetic data of E. tripartita. We sequenced the 18S marker gene sequence of Hermesinum and confirm the close relationship of Ebria and Hermesinum.


Assuntos
Cercozoários , Rhizaria , Cercozoários/genética , Filogenia , Rhizaria/genética
5.
Protist ; 173(1): 125854, 2022 02.
Artigo em Inglês | MEDLINE | ID: mdl-35091168

RESUMO

The Vampyrellida (Endomyxa, Rhizaria) is a group of free-living, predatory amoebae, which is most closely related to the Phytomyxea (plasmodiophorids and phagomyxids). It encompasses about 50 credibly described species that have a characteristic life history with the regular alternation of trophic amoebae and immobile digestive cysts. All known vampyrellid amoebae are naked and filose, but the different species display a broad morphological variety. Vampyrellids also vary greatly in their feeding habits, and range from generalist predators to specialized 'protoplast feeders' that exclusively feed on the cell contents of eukaryotic prey. They can be found in freshwater, soil and marine habitats, and appear to be globally distributed. Yet, the phenotypic diversity and ecological roles of the Vampyrellida are still poorly explored. Currently, there are eight well-recognized subclades that comprise four families (Vampyrellidae, Leptophryidae, Placopodidae and Sericomyxidae) as well as some lineages without any phenotypic information. Research on vampyrellids is challenging due to their cryptic occurrence in nature, intricate feeding habits that complicate cultivation, and a convoluted taxonomic history. Here, we review available information about cell structure, diversity, ecology, taxonomy and phylogenetics, and provide an up-to-date introduction to the Vampyrellida that may facilitate future research.


Assuntos
Amoeba , Cercozoários , Rhizaria , Cercozoários/genética , Ecossistema , Humanos , Filogenia
6.
Water Res ; 203: 117566, 2021 Sep 15.
Artigo em Inglês | MEDLINE | ID: mdl-34438261

RESUMO

Wastewater is treated by concerted actions of the microbial communities within bioreactors. Although protists (unicellular eukaryotes) are good bioindicators and important players influencing denitrification, nitrification, and flocculation, they are the least known organisms in WWTPs. The few recent environmental surveys of the protistan diversity in WWTPs show that the most abundant protistan sequences in WWTPs belong to Thecofilosea (Rhizaria). We re-investigated previously published environmental sequencing data and gathered strains from seven WWTPs to determine which species dominate WWTPs worldwide. We found that all highly abundant thecofilosean sequences represent a single species - Rhogostoma minus. Considering that Thecofilosea are frequent hosts for Legionellales, i.e. bacteria linked to waterborne diseases, we confirm that Rhogostoma minus functions as a host for Legionellales in WWTPs. Whether the highly abundant Rhogostoma minus also serves as a host for known human pathogenic Legionellales requires further attention.


Assuntos
Cercozoários , Rhizaria , Bactérias , Cercozoários/genética , Eucariotos , Humanos , Águas Residuárias
7.
J Eukaryot Microbiol ; 68(6): e12864, 2021 11.
Artigo em Inglês | MEDLINE | ID: mdl-34152052

RESUMO

The vampyrellids (Vampyrellida, Rhizaria) are naked amoebae of considerable genetic diversity. Three families have been well-defined (Vampyrellidae, Leptophryidae, and Placopodidae), but most vampyrellid lineages detected by environmental sequencing are poorly known or completely uncharacterized. In the brackish sediment of Lake Bras D'Or, Nova Scotia, Canada, we discovered an amoeba with a vampyrellid-like life history that was morphologically dissimilar from previously known vampyrellid taxa. We established a culture of this amoeba, studied its feeding behavior and prey range specificity, and characterized it with molecular phylogenetic methods and light and electron microscopy. The amoeba was a generalist predator (i.e. eukaryotroph), devouring a range of marine microalgae, with a strong affinity for some benthic diatoms and Chroomonas. Interestingly, the amoeba varied its feeding strategy depending on the prey species. Small diatoms were engulfed whole, while larger species were fed on through extraction with an invading pseudopodium. The SSU rRNA gene phylogenies robustly placed the amoeba in the most basal, poorly described lineage ("clade C") of the Vampyrellida. Based on the phylogenetic position and the distinct morphology of the studied amoeba, we here describe it as Sericomyxa perlucida gen. et sp. nov., and establish the new vampyrellid family Sericomyxidae for "clade C."


Assuntos
Amoeba , Cercozoários , Diatomáceas , Rhizaria , Amoeba/genética , Cercozoários/genética , DNA Ribossômico/genética , Humanos , Filogenia
8.
FEMS Microbiol Ecol ; 97(7)2021 06 18.
Artigo em Inglês | MEDLINE | ID: mdl-34117748

RESUMO

Tree canopies are colonized by billions of highly specialized microorganisms that are well adapted to the highly variable microclimatic conditions, caused by diurnal fluctuations and seasonal changes. In this study, we investigated seasonality patterns of protists in the tree canopies of a temperate floodplain forest via high-throughput sequencing with group-specific primers for the phyla Cercozoa and Endomyxa. We observed consistent seasonality, and identified divergent spring and autumn taxa. Tree crowns were characterized by a dominance of bacterivores and omnivores, while eukaryvores gained a distinctly larger share in litter and soil communities on the ground. In the canopy seasonality was largest among communities detected on the foliar surface: In spring, higher variance within alpha diversity of foliar samples indicated greater heterogeneity during initial colonization. However, communities underwent compositional changes during the aging of leaves in autumn, highly reflecting recurring phenological changes during protistan colonization. Surprisingly, endomyxan root pathogens appeared to be exceptionally abundant across tree canopies during autumn, demonstrating a potential role of the canopy surface as a physical filter for air-dispersed propagules. Overall, about 80% of detected OTUs could not be assigned to known species-representing dozens of microeukaryotic taxa whose canopy inhabitants are waiting to be discovered.


Assuntos
Cercozoários , Rhizaria , Cercozoários/genética , Eucariotos , Estações do Ano , Árvores
9.
J Eukaryot Microbiol ; 68(3): e12840, 2021 05.
Artigo em Inglês | MEDLINE | ID: mdl-33448091

RESUMO

A novel genus and species within the order Glissmonadida (Cercozoa, Rhizaria), Saccharomycomorpha psychra n. g., n. sp., is described from lichen in the Ny-Ålesund region (High Arctic) and moss in the Fildes peninsula of King George Island (Maritime Antarctica). Cells were spherical and did not appear to present flagella in organic-rich Potato Dextrose Agar medium where they were able to feed osmotrophically. Molecular phylogenetic analyses based on 18S rRNA gene sequence demonstrated that Saccharomycomorpha psychra belong to "clade T" within the order Glissmonadida (Cercozoa, Rhizaria). All three investigated strains could grow at 4 °C and had an optimum growth temperature of 12 °C, 20 °C, and 20 °C, while a maximum growth temperature of 20 °C, 20 °C, and 25 °C, respectively. In conclusion, we established the phenotypic identity of "clade T," which until now was exclusively detected by environmental sequences, and erect a new family Saccharomycomorphidae for "clade T." Nomenclatural, morphological and ecological aspects of this novel species are discussed.


Assuntos
Cercozoários , Rhizaria , Regiões Antárticas , Cercozoários/genética , Ácidos Graxos , Filogenia , RNA Ribossômico 16S , RNA Ribossômico 18S/genética , Análise de Sequência de DNA
10.
J Invertebr Pathol ; 176: 107460, 2020 10.
Artigo em Inglês | MEDLINE | ID: mdl-32891682

RESUMO

During a histopathological survey of Mytilus galloprovincialis in Galicia (NW Spain), microcells were observed infecting several organs of the symbiont copepod Mytilicola intestinalis. Positive results of PCR assay with specific primers for genus Mikrocytos and a clear signal of in situ hybridization with MACKINI-1 digoxigenin- labelled DNA probe (DIG-ISH) indicated a protozoan parasite of Mikrocytos genus. The ultrastructural study revealed intra and extracellular locations, polymorphic nuclei, intracellular round vesicles in the cytoplasm and absence of mitochondria. The present paper reports the characterization of the Mikrocytos sp. infecting M. intestinalis and proposes a novel species in the genus: Mikrocytos mytilicoli n. sp. A sequence of 18S-28S rDNA was obtained with 95.6% maximum identity (query cover 100%) with Mikrocytos mackini. Phylogenetic analysis showed that M. mytilicoli n. sp. and M. mackini share a common ancestor. However, comparison of the ITS1 rDNA region showed low similarity (75.8%) with M. mackini, which, combined with differences in ultrastructural details, host and geographic location, support the designation of a new species. This is the first description of a microcytid parasite of the genus Mikrocytos from a non-bivalve host.


Assuntos
Cercozoários/classificação , Copépodes/parasitologia , Interações Hospedeiro-Parasita , Animais , Cercozoários/citologia , Cercozoários/genética , Cercozoários/ultraestrutura , Copépodes/fisiologia , DNA de Protozoário/análise , DNA Espaçador Ribossômico/análise , Microscopia , Microscopia Eletrônica de Transmissão , Mytilus/fisiologia , Filogenia , RNA Ribossômico 18S/análise , RNA Ribossômico 28S/análise , Espanha , Simbiose
11.
Environ Microbiol ; 22(11): 4620-4632, 2020 11.
Artigo em Inglês | MEDLINE | ID: mdl-32803809

RESUMO

The soils of the McMurdo Dry Valleys (MDV) of Antarctica are established models for understanding fundamental processes in soil ecosystem functioning (e.g. ecological tipping points, community structuring and nutrient cycling) because the extreme physical environment drastically reduces biodiversity and ecological complexity. Understanding the functioning of MDV soils requires in-depth knowledge of the diversity of MDV soil species. Protists, which contribute significantly to soil ecosystem functioning worldwide, remain poorly characterized in the MDV. To better assess the diversity of MDV protists, we performed shotgun metagenomics on 18 sites representing a variety of landscape features and edaphic variables. Our results show MDV soil protists are diverse at both the genus (155 of 281 eukaryote genera) and family (120) levels, but comprise only 6% of eukaryotic reads. Protists are structured by moisture, total N and distance from the local coast and possess limited richness in arid (< 5% moisture) and at high elevation sites, known drivers of communities in the MDV. High relative diversity and broad distribution of protists in our study promotes these organisms as key members of MDV soil microbiomes and the MDV as a useful system for understanding the contribution of soil protists to the structure of soil microbiomes.


Assuntos
Eucariotos/classificação , Eucariotos/isolamento & purificação , Microbiota/genética , Regiões Antárticas , Biodiversidade , Cercozoários/classificação , Cercozoários/genética , Cercozoários/isolamento & purificação , Clorófitas/classificação , Clorófitas/genética , Cilióforos/classificação , Cilióforos/genética , Cilióforos/isolamento & purificação , Ecossistema , Eucariotos/genética , Metagenômica , Solo/química , Solo/parasitologia , Microbiologia do Solo , Estramenópilas/classificação , Estramenópilas/genética , Estramenópilas/isolamento & purificação
12.
Protist ; 171(2): 125718, 2020 04.
Artigo em Inglês | MEDLINE | ID: mdl-32114354

RESUMO

Rigid and persistent shells of microeukaryotes are widely used as bioindicators in ecological and paleontological studies. Drawing conclusions on ecological or evolutionary patterns depends strongly on the right taxonomic assignment of the observed species, however confusion is common. Especially in filose shelled amoebae it is often unclear whether species belong to the Imbricatea or Thecofilosea when only morphological data are collected. Molecular surveys shed light on their evolutionary relationship; based on these we propose a hypothesis how to differentiate doubtful species even light microscopically.


Assuntos
Cercozoários/classificação , Cercozoários/citologia , Animais , Cercozoários/genética , Filogenia , Pigmentação/fisiologia , Especificidade da Espécie
13.
Proc Natl Acad Sci U S A ; 117(10): 5364-5375, 2020 03 10.
Artigo em Inglês | MEDLINE | ID: mdl-32094181

RESUMO

Nucleomorphs are relic endosymbiont nuclei so far found only in two algal groups, cryptophytes and chlorarachniophytes, which have been studied to model the evolutionary process of integrating an endosymbiont alga into a host-governed plastid (organellogenesis). However, past studies suggest that DNA transfer from the endosymbiont to host nuclei had already ceased in both cryptophytes and chlorarachniophytes, implying that the organellogenesis at the genetic level has been completed in the two systems. Moreover, we have yet to pinpoint the closest free-living relative of the endosymbiotic alga engulfed by the ancestral chlorarachniophyte or cryptophyte, making it difficult to infer how organellogenesis altered the endosymbiont genome. To counter the above issues, we need novel nucleomorph-bearing algae, in which endosymbiont-to-host DNA transfer is on-going and for which endosymbiont/plastid origins can be inferred at a fine taxonomic scale. Here, we report two previously undescribed dinoflagellates, strains MGD and TGD, with green algal endosymbionts enclosing plastids as well as relic nuclei (nucleomorphs). We provide evidence for the presence of DNA in the two nucleomorphs and the transfer of endosymbiont genes to the host (dinoflagellate) genomes. Furthermore, DNA transfer between the host and endosymbiont nuclei was found to be in progress in both the MGD and TGD systems. Phylogenetic analyses successfully resolved the origins of the endosymbionts at the genus level. With the combined evidence, we conclude that the host-endosymbiont integration in MGD/TGD is less advanced than that in cryptophytes/chrorarachniophytes, and propose the two dinoflagellates as models for elucidating organellogenesis.


Assuntos
Cercozoários/ultraestrutura , Criptófitas/ultraestrutura , Dinoflagelados/ultraestrutura , Evolução Molecular , Genomas de Plastídeos , Plastídeos/fisiologia , Simbiose , Núcleo Celular/genética , Núcleo Celular/fisiologia , Cercozoários/classificação , Cercozoários/genética , Clorófitas/classificação , Clorófitas/fisiologia , Clorófitas/ultraestrutura , Criptófitas/classificação , Criptófitas/genética , Dinoflagelados/classificação , Dinoflagelados/genética , Modelos Biológicos , Filogenia , Plastídeos/genética
14.
Protist ; 171(1): 125701, 2020 02.
Artigo em Inglês | MEDLINE | ID: mdl-31955058

RESUMO

The testate amoeba Leptogromia operculata was described by Valkanov in 1970 from marine waters. We re-discovered this species in brackish water along the North Sea in the Netherlands. Based on detailed comparison of morphology and SSU rDNA phylogeny we conclude that this species represents a sister clade to the Euglyphida (Imbricatea, Cercozoa). We further describe a similar species Trivalvularis immunda gen. nov., sp. nov. from freshwater in France and the Netherlands on basis of morphological data. Trivalvularis and Leptogromia share a unique oral apparatus with three valves that can close the aperture of the shell. Due to this unique morphological character and the phylogenetic analysis of L. operculata we place both species in a new family Trivalvulariidae in the new order Trivalvulariida.


Assuntos
Cercozoários/classificação , Cercozoários/genética , DNA de Protozoário/genética , DNA Ribossômico/genética , Filogenia , Países Baixos , Águas Salinas , Especificidade da Espécie
15.
Mol Ecol Resour ; 20(2): 398-403, 2020 Mar.
Artigo em Inglês | MEDLINE | ID: mdl-31677344

RESUMO

We have compiled a database of functional traits for two widespread and ecologically important groups of protists, Cercozoa and Endomyxa (Rhizaria). The functional traits of microorganisms are crucially important for interpreting results from environmental sequencing surveys. Linking morphological and ecological traits to environmental factors is common practice in studies involving micro- and macroorganisms, but is rarely applied to protists. Our database provides functional and ecologically significant traits linked to morphology, nutrition, locomotion and habitats. We discuss how the use of functional traits may help to unveil underlying ecosystem processes. This database is intended as a common reference for the molecular ecology community and will boost the understanding of ecosystem functions, especially those driven by biological interactions.


Assuntos
Rhizaria/genética , Cercozoários/classificação , Cercozoários/genética , DNA Ambiental/genética , Bases de Dados Genéticas , Ecossistema , Fenótipo , Filogenia , Rhizaria/classificação , Análise de Sequência de DNA
16.
Microb Ecol ; 79(3): 631-643, 2020 Apr.
Artigo em Inglês | MEDLINE | ID: mdl-31664477

RESUMO

Marine phytomyxids represent often overlooked obligate biotrophic parasites colonizing diatoms, brown algae, and seagrasses. An illustrative example of their enigmatic nature is the phytomyxid infecting the seagrass Halophila stipulacea (a well-known Lessepsian migrant from the Indo-Pacific to the Mediterranean Sea). In the Mediterranean, the occurrence of this phytomyxid was first described in 1995 in the Strait of Messina (southern Italy) and the second time in 2017 in the Aegean coast of Turkey. Here we investigated, using scuba diving, stereomicroscopy, light and scanning electron microscopy, and molecular methods, whether the symbiosis is still present in southern Italy, its distribution in this region and its relation to the previous reports. From the total of 16 localities investigated, the symbiosis has only been found at one site. A seasonal pattern was observed with exceptionally high abundance (> 40% of the leaf petioles colonized) in September 2017, absence of the symbiosis in May/June 2018, and then again high infection rates (~ 30%) in September 2018. In terms of anatomy and morphology as well as resting spore dimensions and arrangement, the symbiosis seems to be identical to the preceding observations in the Mediterranean. According to the phylogenetic analyses of the 18S rRNA gene, the phytomyxid represents the first characterized member of the environmental clade "TAGIRI-5". Our results provide new clues about its on-site ecology (incl. possible dispersal mechanisms), hint that it is rare but established in the Mediterranean, and encourage further research into its distribution, ecophysiology, and taxonomy.


Assuntos
Cercozoários/fisiologia , Hydrocharitaceae/parasitologia , Folhas de Planta/parasitologia , Simbiose , Cercozoários/classificação , Cercozoários/genética , Espécies Introduzidas , Itália , Mar Mediterrâneo , Filogenia , RNA de Protozoário/análise , RNA Ribossômico 18S/análise
17.
J Eukaryot Microbiol ; 67(2): 245-251, 2020 03.
Artigo em Inglês | MEDLINE | ID: mdl-31808200

RESUMO

Thecofilosea is a class in Cercozoa (Rhizaria) comprising mainly freshwater-inhabiting algivores. Recently, numerous isolates of thecofilosean amoebae have been cultured and were characterized by an integrated morphological and molecular approach. As attempts to establish a culture of Lecythium mutabilis repeatedly failed, it was not yet investigated by molecular means. We isolated single cells of L. mutabilis directly from their habitat and successfully sequenced the V4 region of their SSU rDNA. Phylogenetic analyses showed that L. mutabilis is not directly related to the genus Lecythium and instead branches within the Fiscullidae (Tectofilosida, Thecofilosea). Accordingly, we transfer the species L. mutabilis to a novel genus Omnivora gen. nov.


Assuntos
Cercozoários/classificação , Cercozoários/citologia , Cercozoários/genética , DNA de Protozoário/análise , DNA Ribossômico/análise , Filogenia
18.
J Invertebr Pathol ; 163: 86-93, 2019 05.
Artigo em Inglês | MEDLINE | ID: mdl-30905857

RESUMO

Paramyxean parasites in the genus Marteilia deteriorate digestive tissues of the host organisms, resulting in mortality of oysters, cockles, and mussels. Most reports of infection by Marteilia spp. are from Europe, while a new species of Marteilia was identified recently in Japan. Here, we report a previously unidentified species in the genus Marteilia from digestive diverticula of Manila clam Ruditapes philippinarum from the south coast of Korea. Prevalence of the parasite was low, 0.5-3.3% in the study sites. We characterized this species using light and transmission electron microscopy (TEM), and analyzed the 18S rDNA sequence. Light microscopy revealed the sporulation process from uninucleated stage to spore in the epithelial tissues of the digestive gland. TEM revealed that the parasites produced four secondary cells containing four tri-cellular spores. An electron-dense haplosporosome-like structure and striated inclusions were evident in the spore and the primary cells, respectively, while refringent granules were rarely observed in the secondary cells. Phylogenetic analyses of the 18S rDNA sequence placed this isolate in the genus Marteilia, although it is not identical to other known species in the genus. Based on morphological and molecular characters, we describe this species as Marteilia tapetis sp. nov., the second Marteilia species reported parasitizing Manila clams in Asian waters.


Assuntos
Bivalves/parasitologia , Cercozoários , Animais , Cercozoários/classificação , Cercozoários/genética , Cercozoários/isolamento & purificação , Cercozoários/ultraestrutura , DNA de Protozoário , Sistema Digestório/microbiologia , Filogenia , Infecções por Protozoários/diagnóstico , Infecções por Protozoários/parasitologia , RNA Ribossômico 18S/genética
19.
FEMS Microbiol Ecol ; 95(4)2019 04 01.
Artigo em Inglês | MEDLINE | ID: mdl-30915436

RESUMO

Protists are the most important predators of soil microbes like bacteria and fungi and are highly diverse in terrestrial ecosystems. However, the structure of protistan communities throughout the soil profile is still poorly explored. Here, we used Illumina sequencing to track differences in the relative abundance and diversity of Cercozoa, a major group of protists, at two depths; 10-30 cm (topsoil) and 60-75 cm (subsoil) in an agricultural field in Germany. At the two depths, we also distinguished among three soil compartments: rhizosphere, drilosphere (earthworm burrows) and bulk soil. With increasing depth, we found an overall decline in richness, but we were able to detect subsoil specific phylotypes and contrasting relative abundance patterns between topsoil and subsoil for different clades. We also found that the compartment effect disappeared in the subsoil when compared to the topsoil. More studies are now needed to describe and isolate these possibly subsoil specific phylotypes and better understand their ecology and function.


Assuntos
Cercozoários/isolamento & purificação , Ecossistema , Microbiota , Solo/parasitologia , Agricultura , Biodiversidade , Cercozoários/classificação , Cercozoários/genética , Alemanha , Microbiota/genética , Rizosfera , Solo/química
20.
Genome Biol Evol ; 11(3): 678-687, 2019 03 01.
Artigo em Inglês | MEDLINE | ID: mdl-30715330

RESUMO

The nuclear pore complex (NPC) is a large macromolecular assembly situated within the pores of the nuclear envelope. Through interactions between its subcomplexes and import proteins, the NPC mediates the transport of molecules into and out of the nucleus and facilitates dynamic chromatin regulation and gene expression. Accordingly, the NPC constitutes a highly integrated nuclear component that is ubiquitous and conserved among eukaryotes. Potential exceptions to this are nucleomorphs: Highly reduced, relict nuclei that were derived from green and red algae following their endosymbiotic integration into two lineages, the chlorarachniophytes and the cryptophyceans. A previous investigation failed to identify NPC genes in nucleomorph genomes suggesting that these genes have either been relocated to the host nucleus or lost. Here, we sought to investigate the composition of the NPC in nucleomorphs by using genomic and transcriptomic data to identify and phylogenetically classify NPC proteins in nucleomorph-containing algae. Although we found NPC proteins in all examined lineages, most of those found in chlorarachniophytes and cryptophyceans were single copy, host-related proteins that lacked signal peptides. Two exceptions were Nup98 and Rae1, which had clear nucleomorph-derived homologs. However, these proteins alone are likely insufficient to structure a canonical NPC and previous reports revealed that Nup98 and Rae1 have other nuclear functions. Ultimately, these data indicate that nucleomorphs represent eukaryotic nuclei without a canonical NPC, raising fundamental questions about their structure and function.


Assuntos
Cercozoários/genética , Criptófitas/genética , Complexo de Proteínas Formadoras de Poros Nucleares/genética , Poro Nuclear , Simbiose
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