@ARTICLE{TreeBASE2Ref29398,
author = {Gustavo Henrique Jer?nimo and Carmen Lidia Amorim Pires-Zottarelli},
title = {Diversity and distribution of zoosporic fungi (Blastocladiomycota and Chytridiomycota) in Brazilian reservoirs},
year = {2019},
keywords = {Avachytrium, morphology, molecular phylogeny, sediment, water column },
doi = {},
url = {http://},
pmid = {},
journal = {Sydowia},
volume = {},
number = {},
pages = {},
abstract = {The zoosporic fungi (Blastocladiomycota and Chytridiomycota) represent basal lineages in Fungi kingdom, which have as similarity the production of flagellated and motile spores. The diversity of zoosporic fungi has been underexplored in lentic habitats of the tropical regions. In Brazil, the most part of the studies has been focusing on diversity of these groups in lotic habits, leading a gap in our understanding of the diversity and ecological role of these organisms in these specific environments. The aim of this study was to elucidate the diversity and distribution of these phyla in the water column and sediment samples of three tropical reservoirs, located in Brazilian Atlantic rainforest areas, allying the morphologic and phylogenetic approaches. Samples of different depths of water column (surface, medium depth and bottom) and surface sediment were collected and baited with substrates to allow the fungi development. We calculated the frequency of occurrence and abundance for each taxon during the study. The taxa purified in agar medium were included in phylogenetic reconstructions to corroborate their morphologic identification. In total, we identified 24 taxa (12 at a specific level) and 10 strains were purified and inserted in phylogenies at order level. In general, the zoosporic fungi presented a higher species richness and abundance in sediment. The species Asterophlyctis sarcoptoides, Cladochytrium replicatum, Nowakowskiella crenulata and N. hemisphaerospora were the taxa more frequent and abundant, during the study. The genera Avachytrium is recorded for the first time in Brazil. The zoosporic fungi, are prevalent in freshwater reservoirs and play major roles in regulating the flow of organic carbon and nitrogen, however the diversity of sediment fungi is only beginning to be revealed in recent years. To close this gap, this study presents the more comprehensive dataset on fungal community composition from the sediment of Brazilian reservoirs and emphasizing the importance of understanding the diversity of zoosporic fungi in this compartment. }
}
Taxa for matrix 49840 of Study 24144

Citation title:
"Diversity and distribution of zoosporic fungi (Blastocladiomycota and Chytridiomycota) in Brazilian reservoirs".

Study name:
"Diversity and distribution of zoosporic fungi (Blastocladiomycota and Chytridiomycota) in Brazilian reservoirs".

This study is part of submission 24144
(Status: Published).
Taxa
Return to matrix row view
| ID |
Taxon Label |
NCBI taxid |
uBIO namebankID |
| 3594745 |
Asterophlyctis sarcoptoides GHJ09 |
109870
|
3099199
|
| 3594779 |
Asterophlyctis sarcoptoides JEL186 |
109870
|
3099199
|
| 3594767 |
Asterophlyctis sarcoptoides WJD209 |
109870
|
3099199
|
| 3594777 |
Avachytrium platense ARG050 |
|
|
| 3594744 |
Avachytrium platense ARG123 |
|
|
| 3594746 |
Avachytrium sp1 |
|
|
| 3594774 |
Chytridium lagenaria PL167 |
|
2641180
|
| 3594752 |
Chytridium olla ARG100 |
|
3064041
|
| 3594763 |
Chytriomyces hyalinus ATCC28165 |
4814
|
3168731
|
| 3594751 |
Chytriomyces hyalinus PL148 |
4814
|
3168731
|
| 3594772 |
Chytriomyces hyalinus PLAUS23 |
4814
|
3168731
|
| 3594761 |
Delfinachytrium mesopotamicum ARG113 |
|
|
| 3594783 |
Delfinachytrium mesopotamicum ARG116 |
|
|
| 3594769 |
Delfinachytrium mesopotamicum ARG117 |
|
|
| 3594758 |
Delfinachytrium mesopotamicum JEL755 |
|
|
| 3594770 |
Dendrochytridium crassum JEL353 |
|
|
| 3594754 |
Dendrochytridium crassum JEL354 |
|
|
| 3594778 |
Dinochytrium kinnereticum JEL364 |
|
|
| 3594747 |
Irineochytrium annulatum JEL729 |
|
|
| 3594750 |
Obelidium mucronatum JEL57 |
110081
|
3058010
|
| 3594776 |
Odontochytrium milleri JEL103 |
|
|
| 3594748 |
Phlyctochytrium aureliae KP061 |
|
3172267
|
| 3594766 |
Phlyctochytrium bullatum ARG112 |
|
3151322
|
| 3594768 |
Phlyctochytrium bullatum JEL754 |
|
3151322
|
| 3594755 |
Phlyctochytrium planicorne JEL047 |
261098
|
3059946
|
| 3594765 |
Phlyctochytrium planicorne JEL388 |
261098
|
3059946
|
| 3594780 |
Podochytrium dentatum JEL30 |
109929
|
3230372
|
| 3594725 |
Polychytrium aggregatum CCIBt4017 |
110093
|
2641128
|
| 3594732 |
Polychytrium aggregatum JEL109 |
110093
|
2641128
|
| 3594764 |
Pseudorhizidium endosporangiatum JEL221 |
|
|
| 3594753 |
Pseudorhizidium sp JA028 |
|
|
| 3594757 |
Rhizidium phycophilum KP013 |
|
|
| 3594771 |
Rhizoclosmatium aurantiacum MP067 |
|
3145312
|
| 3594760 |
Rhizoclosmatium globosum ARG043 |
329046
|
3124453
|
| 3594781 |
Rhizoclosmatium globosum WB266C |
329046
|
3124453
|
| 3594756 |
Rhizoclosmatium globosum WM200 1 |
329046
|
3124453
|
| 3594749 |
Siphonaria petersenii JEL102 |
252677
|
3173599
|
| 3594762 |
Siphonaria petersenii WB235B |
252677
|
3173599
|
| 3594782 |
Siphonaria sp1 |
|
|
| 3594775 |
Zopfochytrium polystomum JEL600 |
|
|
| 3594759 |
Zopfochytrium polystomum JEL891 |
|
|
| 3594773 |
Zopfochytrium polystomum WB228 |
|
|