Revision of Corynosoma australe Johnston, 1937 (Acanthocephala: Polymorphidae) from a North American population using novel SEM images, Energy Dispersive X-ray Analysis, and molecular analysis

Author:

Amin O. M.1,Chaudhary A.2,Singh H. S.23,Kuzmina T.45

Affiliation:

1. 1 Institute of Parasitic Diseases , 11445 E. Via Linda 2-419 , Scottsdale , Arizona , USA

2. 2 Molecular Taxonomy Laboratory , Department of Zoology , Chaudhary Charan Singh University , Meerut ( U.P. ), , India

3. 3 Vice Chancellor , Maa Shakumbhari University , Saharanpur ( Uttar Pradesh ), , India

4. 4 I. I. Schmalhausen Institute of Zoology NAS of Ukraine , Bogdan Khmelnytsky str., 15 , Kyiv , , Ukraine

5. 5 Institute of Parasitology, Slovak Academy of Sciences , Košice , Slovak Republic

Abstract

Summary We describe a population of the acanthocephalan Corynosoma australe Johnston, 1937 (Polymorphidae) from a California sea lion Zalophus californianus (Lesson, 1828) in California using novel scanning electron microscopy (SEM) images, Energy Dispersive x-ray analysis (EDXA), and molecular analysis for the first time. The taxonomic history of C. australe is replete with accounts using only line drawings some of which proved erroneous. The distribution of ventral spines on the female trunk has been the primary distinction between C. australe and Corynosoma obtuscens Lincicome, 1943, its junior synonym; being continuous in the latter but discontinuous posteriorly in the former species. The distribution of ventral spines is invariably discontinuous in males. Our redescription and SEM images help to resolve this issue further validating the synonymy. Morphological variability has been documented between our California population and others from various host species in California, South Australia, South Shetlands, and the Argentinian coast. Our SEM images document features not previously detectable in line drawings, erroneously reported or missed in previous accounts. The EDXA spectra show high levels of calcium and phosphorous and low levels of sulfur characteristic of C. australe. EDXA for other species of Corynosoma Lühe, 1904 provide support for the diagnostic distinction of C. australe. EDXA spectra were shown to be species specific and have diagnostic value in the taxonomy of the Acanthocephala. Our molecular analysis used amplification of 18S of ribosomal DNA and cytochrome c oxidase 1 (Cox1) gene. Phylogenetic analyses for Cox1 gene revealed a close relationship between Corynosoma hannae Zdzitowiecki, 1984 and C. australe. The phylogenetic trees confirmed that the isolates belonged to C. australe. The haplotype network inferred by Cox1 with C. australe sequences revealed that haplotypes clearly separated from each other and formed clusters related to samples from the Northern Hemisphere (the USA and Mexico), and the second from the Southern Hemisphere (Argentina, Brazil and Peru).

Publisher

Walter de Gruyter GmbH

Subject

Animal Science and Zoology,Parasitology

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