Morphology and Phylogeny of Two New Pleurostomatid Ciliates, Epiphyllum shenzhenense n. sp. and Loxophyllum spirellum n. sp. (Protozoa, Ciliophora) from A Mangrove Wetland, South China

The morphology, infraciliature, and small subunit (SSU) rRNA gene sequences of two new pleurostomatid ciliates, Epiphyllum shenzhenense n. sp. and Loxophyllum spirellum n. sp., isolated from a mangrove wetland near Shenzhen, South China, were investigated. Epiphyllum shenzhenense n. sp. is morpholog...

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Published inThe Journal of eukaryotic microbiology Vol. 57; no. 5; pp. 421 - 428
Main Authors PAN, HONGBO, GAO, FENG, LI, JIQIU, LIN, XIAOFENG, AL-FARRAJ, SALEH A, AL-RASHEID, KHALED A.S
Format Journal Article
LanguageEnglish
Published Malden, USA Malden, USA : Blackwell Publishing Inc 01.09.2010
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Abstract The morphology, infraciliature, and small subunit (SSU) rRNA gene sequences of two new pleurostomatid ciliates, Epiphyllum shenzhenense n. sp. and Loxophyllum spirellum n. sp., isolated from a mangrove wetland near Shenzhen, South China, were investigated. Epiphyllum shenzhenense n. sp. is morphologically characterized by leaf-shaped cell about 150 x 35 μm in vivo, usually with four contractile vacuoles, 20-29 right kineties and 10-26 left kineties, ca. four macronuclear nodules, and two types of extrusomes (i.e. short spindle-shaped and long bar-shaped). As a new species, L. spirellum n. sp. is distinguished from its congeners by its posterior dorsal margin twisted onto the left side, the distribution of extrusomes (evenly arranged along the oral slit, the posterior end, and clustered to 7-13 warts on dorsal margin), the subterminally positioned contractile vacuole, the number of kineties (8-10 on right side, 4-5 on left side), and its genetic distance from congeners. Phylogenetic trees based on the SSU rRNA gene sequence for both organisms were constructed, which indicate that Epiphyllum is a distinct genus and occupies a basal position in the Pleurostomatida clade; L. spirellum n. sp. falls well into the Loxophyllum clade, which has a close relationship with Litonotus and Spiroloxophyllum.
AbstractList The morphology, infraciliature, and small subunit (SSU) rRNA gene sequences of two new pleurostomatid ciliates, Epiphyllum shenzhenense n. sp. and Loxophyllum spirellum n. sp., isolated from a mangrove wetland near Shenzhen, South China, were investigated. Epiphyllum shenzhenense n. sp. is morphologically characterized by leaf-shaped cell about 150 x 35 km in vivo, usually with four contractile vacuoles, 20-29 right kineties and 10-26 left kineties, ca. four macronuclear nodules, and two types of extrusomes (i.e. short spindle-shaped and long bar-shaped). As a new species, L. spirellum n. sp. is distinguished from its congeners by its posterior dorsal margin twisted onto the left side, the distribution of extrusomes (evenly arranged along the oral slit, the posterior end, and clustered to 7-13 warts on dorsal margin), the subterminally positioned contractile vacuole, the number of kineties (8-10 on right side, 4-5 on left side), and its genetic distance from congeners. Phylogenetic trees based on the SSU rRNA gene sequence for both organisms were constructed, which indicate that Epiphyllum is a distinct genus and occupies a basal position in the Pleurostomatida clade; L. spirellum n. sp. falls well into the Loxophyllum clade, which has a close relationship with Litonotus and Spiroloxophyllum.
The morphology, infraciliature, and small subunit (SSU) rRNA gene sequences of two new pleurostomatid ciliates, Epiphyllum shenzhenense n. sp. and Loxophyllum spirellum n. sp., isolated from a mangrove wetland near Shenzhen, South China, were investigated. Epiphyllum shenzhenense n. sp. is morphologically characterized by leaf‐shaped cell about 150 × 35 μm in vivo, usually with four contractile vacuoles, 20–29 right kineties and 10–26 left kineties, ca. four macronuclear nodules, and two types of extrusomes (i.e. short spindle‐shaped and long bar‐shaped). As a new species, L. spirellum n. sp. is distinguished from its congeners by its posterior dorsal margin twisted onto the left side, the distribution of extrusomes (evenly arranged along the oral slit, the posterior end, and clustered to 7–13 warts on dorsal margin), the subterminally positioned contractile vacuole, the number of kineties (8–10 on right side, 4–5 on left side), and its genetic distance from congeners. Phylogenetic trees based on the SSU rRNA gene sequence for both organisms were constructed, which indicate that Epiphyllum is a distinct genus and occupies a basal position in the Pleurostomatida clade; L. spirellum n. sp. falls well into the Loxophyllum clade, which has a close relationship with Litonotus and Spiroloxophyllum.
The morphology, infraciliature, and small subunit (SSU) rRNA gene sequences of two new pleurostomatid ciliates, Epiphyllum shenzhenense n. sp. and Loxophyllum spirellum n. sp., isolated from a mangrove wetland near Shenzhen, South China, were investigated. Epiphyllum shenzhenense n. sp. is morphologically characterized by leaf‐shaped cell about 150 × 35 μm in vivo, usually with four contractile vacuoles, 20–29 right kineties and 10–26 left kineties, ca. four macronuclear nodules, and two types of extrusomes (i.e. short spindle‐shaped and long bar‐shaped). As a new species, L. spirellum n. sp. is distinguished from its congeners by its posterior dorsal margin twisted onto the left side, the distribution of extrusomes (evenly arranged along the oral slit, the posterior end, and clustered to 7–13 warts on dorsal margin), the subterminally positioned contractile vacuole, the number of kineties (8–10 on right side, 4–5 on left side), and its genetic distance from congeners. Phylogenetic trees based on the SSU rRNA gene sequence for both organisms were constructed, which indicate that Epiphyllum is a distinct genus and occupies a basal position in the Pleurostomatida clade; L. spirellum n. sp. falls well into the Loxophyllum clade, which has a close relationship with Litonotus and Spiroloxophyllum .
The morphology, infraciliature, and small subunit (SSU) rRNA gene sequences of two new pleurostomatid ciliates, Epiphyllum shenzhenense n. sp. and Loxophyllum spirellum n. sp., isolated from a mangrove wetland near Shenzhen, South China, were investigated. Epiphyllum shenzhenense n. sp. is morphologically characterized by leaf-shaped cell about 150 x 35 microm in vivo, usually with four contractile vacuoles, 20-29 right kineties and 10-26 left kineties, ca. four macronuclear nodules, and two types of extrusomes (i.e. short spindle-shaped and long bar-shaped). As a new species, L. spirellum n. sp. is distinguished from its congeners by its posterior dorsal margin twisted onto the left side, the distribution of extrusomes (evenly arranged along the oral slit, the posterior end, and clustered to 7-13 warts on dorsal margin), the subterminally positioned contractile vacuole, the number of kineties (8-10 on right side, 4-5 on left side), and its genetic distance from congeners. Phylogenetic trees based on the SSU rRNA gene sequence for both organisms were constructed, which indicate that Epiphyllum is a distinct genus and occupies a basal position in the Pleurostomatida clade; L. spirellum n. sp. falls well into the Loxophyllum clade, which has a close relationship with Litonotus and Spiroloxophyllum.
The morphology, infraciliature, and small subunit (SSU) rRNA gene sequences of two new pleurostomatid ciliates, Epiphyllum shenzhenense n. sp. and Loxophyllum spirellum n. sp., isolated from a mangrove wetland near Shenzhen, South China, were investigated. Epiphyllum shenzhenense n. sp. is morphologically characterized by leaf-shaped cell about 150 x 35 μm in vivo, usually with four contractile vacuoles, 20-29 right kineties and 10-26 left kineties, ca. four macronuclear nodules, and two types of extrusomes (i.e. short spindle-shaped and long bar-shaped). As a new species, L. spirellum n. sp. is distinguished from its congeners by its posterior dorsal margin twisted onto the left side, the distribution of extrusomes (evenly arranged along the oral slit, the posterior end, and clustered to 7-13 warts on dorsal margin), the subterminally positioned contractile vacuole, the number of kineties (8-10 on right side, 4-5 on left side), and its genetic distance from congeners. Phylogenetic trees based on the SSU rRNA gene sequence for both organisms were constructed, which indicate that Epiphyllum is a distinct genus and occupies a basal position in the Pleurostomatida clade; L. spirellum n. sp. falls well into the Loxophyllum clade, which has a close relationship with Litonotus and Spiroloxophyllum.
Author AL-RASHEID, KHALED A.S
LIN, XIAOFENG
PAN, HONGBO
LI, JIQIU
GAO, FENG
AL-FARRAJ, SALEH A
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Issue 5
Keywords Protozoa
Taxonomy
Ciliophora
Diagnosis (taxonomy)
Phylogeny
SSU rRNA gene sequence
Infraciliature
Pleurostomatida
Epiphyllum shenzhenense
Gene
Mangrove
Ribosomal RNA
Morphology
Ciliata
New species
Loxophyllum spirellum
Wetland
Language English
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Snippet The morphology, infraciliature, and small subunit (SSU) rRNA gene sequences of two new pleurostomatid ciliates, Epiphyllum shenzhenense n. sp. and Loxophyllum...
The morphology, infraciliature, and small subunit (SSU) rRNA gene sequences of two new pleurostomatid ciliates, Epiphyllum shenzhenense n. sp. and Loxophyllum...
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SubjectTerms Animal and plant ecology
Animal, plant and microbial ecology
Biological and medical sciences
Brackish water ecosystems
China
Ciliophora
Ciliophora - classification
Ciliophora - cytology
Ciliophora - genetics
Ciliophora - isolation & purification
DNA, Protozoan - genetics
DNA, Ribosomal - genetics
Epiphyllum
Epiphyllum shenzhenense
Fresh Water - parasitology
Fundamental and applied biological sciences. Psychology
infraciliature
Litonotus
Loxophyllum
Loxophyllum spirellum
Molecular Sequence Data
new species
Phylogeny
Pleurostomatida
Protozoa
SSU rRNA gene sequence
Synecology
Wetlands
Title Morphology and Phylogeny of Two New Pleurostomatid Ciliates, Epiphyllum shenzhenense n. sp. and Loxophyllum spirellum n. sp. (Protozoa, Ciliophora) from A Mangrove Wetland, South China
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https://onlinelibrary.wiley.com/doi/abs/10.1111%2Fj.1550-7408.2010.00492.x
https://www.ncbi.nlm.nih.gov/pubmed/20735517
https://search.proquest.com/docview/748993399
https://search.proquest.com/docview/755140625
Volume 57
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