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1.
Mycologia ; 114(4): 798-811, 2022.
Article in English | MEDLINE | ID: mdl-35695815

ABSTRACT

A new species of the genus Diachea (order Physarales, Myxomycetes, Amoebozoa) is described from Peru. Relevant details on spore germination, as well as morphological and phylogenetic data, are provided. At first glance, the new species shares some morphological similarities with both D. leucopodia, type of the genus, and D. koazei, but it strikingly differs from all other species of its genus by combining a short dark stalk, with a reticulate columella, and clustered spores. Moreover, it seems to be the only species of Diachea exclusively associated with Polylepis tropical forests at elevations above 3500 m. Apart from a comprehensive morphological study of 31 specimens, we here provide phylogenetic evidence to confirm the inclusion of this species in the genus Diachea. Specifically, our phylogenetic analyses of the nuclear 18S rDNA (18S), mitochondrial 17S rDNA (17S), and elongation factor-1 alpha (EF-1α) genes show that the new species is related to D. leucopodia and D. bulbillosa. The remarkably different morphological characters distinguishing the new Diachea from all other species of its genus, along with its particular ecological preferences and geographic distribution, indicate that it is a distinct entity deserving recognition as an independent species.


Subject(s)
Myxomycetes , DNA, Ribosomal/genetics , Forests , Myxomycetes/genetics , Peru , Phylogeny
2.
Eur J Protistol ; 76: 125727, 2020 Oct.
Article in English | MEDLINE | ID: mdl-32755801

ABSTRACT

Amoeboid protists are extremely abundant and diverse in natural systems where they often play outstanding ecological roles. They can be found in almost all major eukaryotic divisions, and genomic approaches are bringing major changes in our perception of their deep evolutionary relationships. At fine taxonomic levels, the generalization of barcoding is revealing a considerable and unsuspected specific diversity that can be appreciated with careful morphometric analyses based on light and electron microscopic observations. We provide examples on the difficulties and advances in amoeboid protists systematics in a selection of groups that were presented at the VIIIth ECOP/ISOP meeting in Rome, 2019. We conclude that, in all studied groups, important taxonomical rearrangements will certainly take place in the next few years, and systematics must be adapted to incorporate these changes. Notably, nomenclature should be flexible enough to integrate many new high level taxa, and a unified policy must be adopted to species description and to the establishment of types.


Subject(s)
Amoebozoa/classification , Classification , Biodiversity , Research/trends , Terminology as Topic
3.
Eur J Protistol ; 63: 13-25, 2018 Apr.
Article in English | MEDLINE | ID: mdl-29360042

ABSTRACT

A new plasmodiocarpic and sporocarpic species of myxomycete in the genus Physarum is described and illustrated. This new species appeared on decayed leaves and remains of succulent plants (Agave, Opuntia, Yucca) growing in arid zones. It differs from all other species in the genus in having polyhedral spores linked in chains like a string of beads, a unique feature within all known myxomycetes. Apart from detailed morphological data, partial sequences of both the small-subunit ribosomal RNA and elongation factor 1-alpha genes, generated from four isolates collected in two distant regions, i.e., Mexico and Canary Islands, are also provided in this study. Combined evidence supports the identity of the specimens under study as a new species.


Subject(s)
Physarum/cytology , Physarum/genetics , Spores, Protozoan/cytology , Agave/parasitology , Genes, Protozoan/genetics , Mexico , Opuntia/parasitology , Physarum/classification , Spain , Species Specificity , Yucca/parasitology
4.
Mycologia ; 107(1): 157-68, 2015.
Article in English | MEDLINE | ID: mdl-25232071

ABSTRACT

A new species of Didymium (Myxomycetes), D. xerophilum, is described, and some details of its life cycle are provided. The new species was collected during studies of arid areas of Argentina and Peru. It can be distinguished by the persistent funnel-shaped invagination of the peridium, the top of which appears as a deep umbilicus in closed sporothecae, and the calcareous hypothallus shared among several sporocarps. This combination of characters, with a circumscissile dehiscence of the sporotheca and a cream stalk packed with rhombic lime crystals, is unknown in other described species. Morphology was examined with scanning electron microscopy and light microscopy, and micrographs of relevant details are included here. Phylogenetic analysis with 18S rDNA sequences of different species of Didymium supports the distinct identity of this new species. Some collections of this myxomycete were made at up to 4600 m, an altitude almost unknown for this group of microorganisms.


Subject(s)
Myxomycetes/classification , Myxomycetes/isolation & purification , Altitude , Argentina , Molecular Sequence Data , Myxomycetes/genetics , Myxomycetes/growth & development , Peru , Phylogeny , Spores, Protozoan/classification , Spores, Protozoan/enzymology , Spores, Protozoan/genetics , Spores, Protozoan/isolation & purification
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