Molecular determination of kleptoplast origins from the sea slugPlakobranchus ocellatus(Sacoglossa, Gastropoda) reveals cryptic bryopsidalean (Chlorophyta) diversity in the Hawaiian Islands
Autor: | Alison R. Sherwood, Rachael M. Wade |
---|---|
Rok vydání: | 2017 |
Předmět: |
0301 basic medicine
Species complex Chloroplasts Plakobranchus ocellatus Ribulose-Bisphosphate Carboxylase Gastropoda Population Bryopsidales Plant Science Aquatic Science DNA barcoding Hawaii Chloroplast Proteins 03 medical and health sciences Algae Chlorophyta Microalgae Animals DNA Barcoding Taxonomic Symbiosis education education.field_of_study biology Sacoglossa Ecology Algal Proteins Biodiversity biology.organism_classification Sea slug 030104 developmental biology |
Zdroj: | Journal of Phycology. 53:467-475 |
ISSN: | 0022-3646 |
Popis: | The sacoglossan sea slug species complex Plakobranchus ocellatus is a common algivore throughout the tropical Pacific, including the Hawaiian Islands. Plakobranchus ocellatus is kleptoplastic-it sequesters and retains algal chloroplasts-a characteristic that can be exploited to molecularly characterize diminutive bryopsidalean algae that are typically difficult to locate, collect, and identify. Previous DNA barcode analyses of both P. ocellatus and its kleptoplasts have been conducted primarily in the western Pacific and have only minimally sampled the most eastern populations in the Hawaiian Islands. Using two chloroplast markers, rbcL and tufA, kleptoplast samples from an Oahu population of P. ocellatus were amplified and cloned to identify their algal sources. Plakobranchus ocellatus sequester chloroplasts from up to 11 bryopsidalean algal species, all but one being diminutive in thallus size. Notably, eight of the detected algal species were new records to the Hawaiian Islands. A sequestration preference study demonstrated that the O'ahu population of P. ocellatus preferentially sequesters chloroplasts from diminutive, epilithic taxa. Using coxI barcoding of P. ocellatus, we showed the O'ahu population to be part of a clade that includes sequences from the neighboring island Maui, Australia, and the Philippines. The use of P. ocellatus as a novel sampling tool allows the exploration of the green algal community diversity and composition at a fine scale. |
Databáze: | OpenAIRE |
Externí odkaz: | |
Nepřihlášeným uživatelům se plný text nezobrazuje | K zobrazení výsledku je třeba se přihlásit. |