Cutosea
{{Short description|Class of amoebae}}
{{Automatic taxobox
| display_parents = 4
| grandparent_authority = Cavalier-Smith, 2016
| parent_authority = Cavalier-Smith, 2016
| taxon = Squamocutida
| authority = Cavalier-Smith, 2016
| subdivision_ranks = Families
| subdivision = *Squamamoebidae
| diversity = 4 species
}}
Cutosea ({{etymology|lat|cutis|skin}}) is a small group of marine amoeboid protists proposed in 2016. It is a monotypic class of Amoebozoa containing the order Squamocutida ({{etymology|lat|squama|scale||cutis|skin}}). Cutosean organisms are characterized by a cell coat of microscales separated from the cell membrane. Four genera, Armaparvus, Idionectes, Sapocribrum and Squamamoeba, belong to this group, distributed in three families.
Characteristics
The cells of cutosean amoebae are surrounded by a continuous thin, somewhat flexible envelope, unique in structure because it is not attached to the cytoplasmic membrane. Below this envelope, they present oval microscales surrounded by a dense matrix. The small scales are not visible under a light microscope. The envelope is penetrated by one or many small pores, which allow subpseudopodia to occasionally protrude from the cell membrane, for a very slow locomotion. Locomoting cells are flattened, oval or round in shape. All of their cells lack cilia or centrosomes, except for the uniciliate swarm cells of the amoeboflagellate Idionectes.{{Cite journal|vauthors=Hess S, Eme L, Roger AJ, Simpson A|date=2019-06-10|title=A natural toroidal microswimmer with a rotary eukaryotic flagellum|url=https://link.springer.com/article/10.1038/s41564-019-0478-6|journal=Nature Microbiology|volume=4|issue=10|pages=1620–1626|doi=10.1038/s41564-019-0478-6|issn=2058-5276|pmid=31182800|url-access=subscription}}
Taxonomy
= History =
Cutosea is a clade discovered through a 2016 phylogenetic study by Thomas Cavalier-Smith and his coauthors, published in the journal Molecular Phylogenetics and Evolution. It is described as a class-level rank, monotypic as it contains only one order Squamamoebida. Additionally, it is grouped under the monotypic superclass Cutosa. In traditional rank-based classifications, it is grouped within the paraphyletic Lobosa, a subphylum of Amoebozoa that also contains Tubulinea and Discosea. Cutosean amoebae present a structurally unique cellular envelope, their distinguishing feature. Their names derive from the Latin cutis, meaning 'skin', and squama, meaning 'scale', referencing this envelope.
The Cutosea clade is supported by posterior molecular and morphological studies, and has been accepted as of 2019 by the International Society of Protistologists, which revises the modern cladistic classification of eukaryotes. The first genera to be grouped within Cutosea were Sapocribrum and Squamamoeba, discovered in 2015 and 2013 respectively, and placed in separate families Sapocribridae and Squamamoebidae. A third genus was discovered later in 2018, Armaparvus, which was added to Squamamoebidae. The fourth genus, Idionectes was discovered by Sebastian Hess and Alastair G. B. Simpson in 2019.{{Cite journal |last1=Hess |first1=Sebastian |last2=Eme |first2=Laura |last3=Roger |first3=Andrew J. |last4=Simpson |first4=Alastair G. B. |date=2019-06-10 |title=A natural toroidal microswimmer with a rotary eukaryotic flagellum |url=https://link.springer.com/article/10.1038/s41564-019-0478-6 |journal=Nature Microbiology |volume=4 |issue=10 |pages=1620–1626 |doi=10.1038/s41564-019-0478-6 |issn=2058-5276 |pmid=31182800|url-access=subscription }}{{Cite journal |date=2019-06-12 |title=Tiny flying saucers are actually odd new microbes |journal=Nature |language=en |volume=570 |issue=7761 |pages=279 |bibcode=2019Natur.570R.279. |doi=10.1038/d41586-019-01827-x |issn=0028-0836|doi-access=free }}
= Classification =
Cutosea contains a total of four species, distributed in four monotypic genera:
- Family Idionectidae {{Au|Hess & Simpson, 2019}}
- Idionectes {{Au|Hess & Simpson, 2019}}
- Idionectes vortex {{Au|Hess & Simpson, 2019}}
- Family Sapocribridae {{au|Cavalier-Smith, 2016}}
- Sapocribrum {{au|Lahr, Grant, Molestina & Anderson, 2015}}{{cite journal|first1=Daniel J. G.|last1=Lahr|first2=Jessica|last2=Grant|first3=Robert|last3=Molestina|first4=Laura A.|last4=Katz|first5=O. Roger|last5=Anderson|title=Sapocribrum chincoteaguense n. gen. n. sp.: A Small, Scale-bearing Amoebozoan with Flabellinid Affinities|journal=The Journal of Eukaryotic Microbiology|date=2015 |volume=62|issue=4 |pages=444–453|doi=10.1111/jeu.12199|pmid=25515047 |pmc=4469638}}
- Sapocribrum chincoteaguense {{au|Lahr, Grant, Molestina & Anderson, 2015}}
- Family Squamamoebidae {{au|Cavalier-Smith, 2016}}
- Armaparvus {{au|Schuler & Brown, 2018}}
- Armaparvus languidus {{au|Schuler & Brown, 2018}}
- Squamamoeba {{au|Kudryavtsev & Pawlowski, 2013}}{{cite journal|last1=Kudryavtsev|first1=Alexander|first2=Jan|last2=Pawlowski|title=Squamamoeba japonica n. g. n sp. (Amoebozoa): a deep-sea amoeba from the Sea of Japan with a novel cell coat structure|journal=Protist|volume=164|issue=1|date=2013|pages=13–23|doi=10.1016/j.protis.2012.07.003 |pmid=22964370 }}
- Squamamoeba japonica {{au|Kudryavtsev & Pawlowski, 2013}}
Evolution
Cutosea is a fully supported clade within Amoebozoa. It is the sister group to Conosa, which contains all the non-lobose amoebozoans: Variosea, Archamoebea and Eumycetozoa. Together, Cutosea and Conosa are the two members of the larger clade Evosea. The following cladogram is based on a 2022 phylogenetic analysis:
{{clade|style=font-size:90%;|label1=Amorphea|1={{clade|label1=Amoebozoa|1={{clade|barbegin1=blue|1=Tubulinea 50px|2={{clade|bar1=blue|1=Discosea 50px|label2=Evosea|2={{clade|barend1=blue|label1=Cutosea|1={{clade|1=Squamamoebidae|2=Sapocribridae}}|label2=Conosa|2={{clade|1={{clade|1=Archamoebae 50px|2=Eumycetozoa 50px}}|2=Variosea 50px}}}}}}}}|2=Obazoa 50px}}|grouplabel1={{clade labels|label1=Lobosa|top1=20%}}}}
References
{{reflist|refs=
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External links
- [https://eukmap.unieuk.net/taxonomy/105 Cutosea] at UniEuk Taxonomy App.
{{Eukaryota}}
{{Taxonbar|from1=Q27043396|from2=Q29560321}}
Category:Taxa described in 2016