Autofluorescence imaging of exuviae as a tool for studying slide preparations of micro-arthropods, exemplified by a museum collection of the enigmatic crustacean “y-larvae” (Pancrustacea: Facetotecta)

Research output: Contribution to journalJournal articleResearchpeer-review

Standard

Autofluorescence imaging of exuviae as a tool for studying slide preparations of micro-arthropods, exemplified by a museum collection of the enigmatic crustacean “y-larvae” (Pancrustacea: Facetotecta). / Olesen, Jørgen; Grygier, Mark J.; Herranz, Maria.

In: Zoomorphology, 2024.

Research output: Contribution to journalJournal articleResearchpeer-review

Harvard

Olesen, J, Grygier, MJ & Herranz, M 2024, 'Autofluorescence imaging of exuviae as a tool for studying slide preparations of micro-arthropods, exemplified by a museum collection of the enigmatic crustacean “y-larvae” (Pancrustacea: Facetotecta)', Zoomorphology. https://doi.org/10.1007/s00435-024-00641-y

APA

Olesen, J., Grygier, M. J., & Herranz, M. (2024). Autofluorescence imaging of exuviae as a tool for studying slide preparations of micro-arthropods, exemplified by a museum collection of the enigmatic crustacean “y-larvae” (Pancrustacea: Facetotecta). Zoomorphology. https://doi.org/10.1007/s00435-024-00641-y

Vancouver

Olesen J, Grygier MJ, Herranz M. Autofluorescence imaging of exuviae as a tool for studying slide preparations of micro-arthropods, exemplified by a museum collection of the enigmatic crustacean “y-larvae” (Pancrustacea: Facetotecta). Zoomorphology. 2024. https://doi.org/10.1007/s00435-024-00641-y

Author

Olesen, Jørgen ; Grygier, Mark J. ; Herranz, Maria. / Autofluorescence imaging of exuviae as a tool for studying slide preparations of micro-arthropods, exemplified by a museum collection of the enigmatic crustacean “y-larvae” (Pancrustacea: Facetotecta). In: Zoomorphology. 2024.

Bibtex

@article{ab218b94ec2344ecabe976e040373adb,
title = "Autofluorescence imaging of exuviae as a tool for studying slide preparations of micro-arthropods, exemplified by a museum collection of the enigmatic crustacean “y-larvae” (Pancrustacea: Facetotecta)",
abstract = "In recent years, fluorescence microscopy has revitalized the study of invertebrate comparative morphology. Here we explore the usefulness of combining confocal laser scanning microscopy (CLSM) and cuticular autofluorescence to examine the taxonomically challenging marine planktonic “y-larvae” (Pancrustacea: Facetotecta). To gauge the effectiveness of CLSM with autofluorescence in producing taxonomically useful images, we applied it to seven distinct y-naupliar species or morphospecies that had previously undergone scrutiny by other techniques. The specimens were part of a museum collection of glycerin-jelly slides of exuviae of last-stage y-nauplii, a key instar for studying the taxonomy of y-larvae. For Hansenocaris demodex, the level of detail obtained from a single specimen was comparable to that previously obtained by scanning electron microscopy (SEM). For Hansenocaris aquila, revisiting the original holotype specimen resulted in a dramatic increase in our understanding of the species{\textquoteright} morphology, including taxonomically pivotal information about its spinose labrum and a digitally rotated lateral view. CLSM analyses of the other five specimens, which represented a broad spectrum of y-naupliar morphology, efficiently generated more such information. Novel observations were made concerning putative external rudiments of both the first and second maxillae in late nauplii as well as the extreme dorso-ventral flattening of some naupliar types. CLSM observation of museum slides of naupliar exuviae using cuticular autofluorescence thus shows great promise of becoming an excellent tool for studying the morphology and taxonomy of y-larvae, and we suggest that this technique might also profitably be applied to other forms of larval exuviae.",
keywords = "CLSM, Microscopy, Nauplii, Plankton, Taxonomy, Thecostraca",
author = "J{\o}rgen Olesen and Grygier, {Mark J.} and Maria Herranz",
note = "Publisher Copyright: {\textcopyright} The Author(s) 2024.",
year = "2024",
doi = "10.1007/s00435-024-00641-y",
language = "English",
journal = "Zoomorphologie",
issn = "0340-6725",
publisher = "Springer",

}

RIS

TY - JOUR

T1 - Autofluorescence imaging of exuviae as a tool for studying slide preparations of micro-arthropods, exemplified by a museum collection of the enigmatic crustacean “y-larvae” (Pancrustacea: Facetotecta)

AU - Olesen, Jørgen

AU - Grygier, Mark J.

AU - Herranz, Maria

N1 - Publisher Copyright: © The Author(s) 2024.

PY - 2024

Y1 - 2024

N2 - In recent years, fluorescence microscopy has revitalized the study of invertebrate comparative morphology. Here we explore the usefulness of combining confocal laser scanning microscopy (CLSM) and cuticular autofluorescence to examine the taxonomically challenging marine planktonic “y-larvae” (Pancrustacea: Facetotecta). To gauge the effectiveness of CLSM with autofluorescence in producing taxonomically useful images, we applied it to seven distinct y-naupliar species or morphospecies that had previously undergone scrutiny by other techniques. The specimens were part of a museum collection of glycerin-jelly slides of exuviae of last-stage y-nauplii, a key instar for studying the taxonomy of y-larvae. For Hansenocaris demodex, the level of detail obtained from a single specimen was comparable to that previously obtained by scanning electron microscopy (SEM). For Hansenocaris aquila, revisiting the original holotype specimen resulted in a dramatic increase in our understanding of the species’ morphology, including taxonomically pivotal information about its spinose labrum and a digitally rotated lateral view. CLSM analyses of the other five specimens, which represented a broad spectrum of y-naupliar morphology, efficiently generated more such information. Novel observations were made concerning putative external rudiments of both the first and second maxillae in late nauplii as well as the extreme dorso-ventral flattening of some naupliar types. CLSM observation of museum slides of naupliar exuviae using cuticular autofluorescence thus shows great promise of becoming an excellent tool for studying the morphology and taxonomy of y-larvae, and we suggest that this technique might also profitably be applied to other forms of larval exuviae.

AB - In recent years, fluorescence microscopy has revitalized the study of invertebrate comparative morphology. Here we explore the usefulness of combining confocal laser scanning microscopy (CLSM) and cuticular autofluorescence to examine the taxonomically challenging marine planktonic “y-larvae” (Pancrustacea: Facetotecta). To gauge the effectiveness of CLSM with autofluorescence in producing taxonomically useful images, we applied it to seven distinct y-naupliar species or morphospecies that had previously undergone scrutiny by other techniques. The specimens were part of a museum collection of glycerin-jelly slides of exuviae of last-stage y-nauplii, a key instar for studying the taxonomy of y-larvae. For Hansenocaris demodex, the level of detail obtained from a single specimen was comparable to that previously obtained by scanning electron microscopy (SEM). For Hansenocaris aquila, revisiting the original holotype specimen resulted in a dramatic increase in our understanding of the species’ morphology, including taxonomically pivotal information about its spinose labrum and a digitally rotated lateral view. CLSM analyses of the other five specimens, which represented a broad spectrum of y-naupliar morphology, efficiently generated more such information. Novel observations were made concerning putative external rudiments of both the first and second maxillae in late nauplii as well as the extreme dorso-ventral flattening of some naupliar types. CLSM observation of museum slides of naupliar exuviae using cuticular autofluorescence thus shows great promise of becoming an excellent tool for studying the morphology and taxonomy of y-larvae, and we suggest that this technique might also profitably be applied to other forms of larval exuviae.

KW - CLSM

KW - Microscopy

KW - Nauplii

KW - Plankton

KW - Taxonomy

KW - Thecostraca

U2 - 10.1007/s00435-024-00641-y

DO - 10.1007/s00435-024-00641-y

M3 - Journal article

AN - SCOPUS:85185698665

JO - Zoomorphologie

JF - Zoomorphologie

SN - 0340-6725

ER -

ID: 384251713