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Supplementary material 1 from: Ulmer JM, Mikó I, Deans AR, Krogmann L (2021) The Waterston's evaporatorium of Ceraphronidae (Ceraphronoidea, Hymenoptera): A morphological barcode to a cryptic taxon. Journal of Hymenoptera Research 85: 29-56. https://doi.org/10.3897/jhr.85.67165
Data matrix for phylogenetic analysis
Figure 9 from: Ulmer JM, Mikó I, Deans AR, Krogmann L (2021) The Waterston's evaporatorium of Ceraphronidae (Ceraphronoidea, Hymenoptera): A morphological barcode to a cryptic taxon. Journal of Hymenoptera Research 85: 29-56. https://doi.org/10.3897/jhr.85.67165
Figure 9 Variation of Waterston's evaporatorium between two major species complexes of Aphanogmus (brightfield) AAphanogmus fumipennisBAphanogmus fasciipennis. Character 13 = Tergal apodeme orientation. Character 17 = cell size in relation to setal base.
Figure 8 from: Ulmer JM, Mikó I, Deans AR, Krogmann L (2021) The Waterston's evaporatorium of Ceraphronidae (Ceraphronoidea, Hymenoptera): A morphological barcode to a cryptic taxon. Journal of Hymenoptera Research 85: 29-56. https://doi.org/10.3897/jhr.85.67165
Figure 8 Acrotergal calyx within genera of Ceraphron Group (brightfield) ACeraphron (Pristomicrops) sp. BPteroceraphron mirabilipennisCCyoceraphron striatopleuralis. Genera within the Ceraphron group which have the acrotergal calyx and bulla (bul) well separated. The evaporatorium extends up the lateral walls of the bulla in P. mirabilipennis (chr. 5)
Figure 7 from: Ulmer JM, Mikó I, Deans AR, Krogmann L (2021) The Waterston's evaporatorium of Ceraphronidae (Ceraphronoidea, Hymenoptera): A morphological barcode to a cryptic taxon. Journal of Hymenoptera Research 85: 29-56. https://doi.org/10.3897/jhr.85.67165
Figure 7 Variation of campaniform sensilla within the Aphanogmus Group (brightfield) AElysoceraphron hungaricusBSynarsis sp. Presence of a complete proximomedial lamella (pml) (character 16) in E. hungaricus and partial pml in Synarsis. Elysoceraphron contains both inner marginal sclerotization and transverse sclerotization of the tergal apodeme. Both abnormal states of campaniform sensilla (character 10) are shown, Synarsis having two sets of cs, whereas they are entirely absent in Elysoceraphron.
Figure 6 from: Ulmer JM, Mikó I, Deans AR, Krogmann L (2021) The Waterston's evaporatorium of Ceraphronidae (Ceraphronoidea, Hymenoptera): A morphological barcode to a cryptic taxon. Journal of Hymenoptera Research 85: 29-56. https://doi.org/10.3897/jhr.85.67165
Figure 6 Principle differences between Waterston's evaporatorium in the Ceraphron Group and Aphanogmus Group (brightfield) ACeraphron sp. BAphanogmus sp.
Figure 5 from: Ulmer JM, Mikó I, Deans AR, Krogmann L (2021) The Waterston's evaporatorium of Ceraphronidae (Ceraphronoidea, Hymenoptera): A morphological barcode to a cryptic taxon. Journal of Hymenoptera Research 85: 29-56. https://doi.org/10.3897/jhr.85.67165
Figure 5 Dorsal vessel termination in Ceraphronoidea (CLSM) A dorsal vessel termination of Conostigmus sp. B dorsal vessel and abdominal pulsatory organ of Ceraphron sp. C abdominal pulsatory organ and evaporatorium in Aphanogmus sp.
Figure 4 from: Ulmer JM, Mikó I, Deans AR, Krogmann L (2021) The Waterston's evaporatorium of Ceraphronidae (Ceraphronoidea, Hymenoptera): A morphological barcode to a cryptic taxon. Journal of Hymenoptera Research 85: 29-56. https://doi.org/10.3897/jhr.85.67165
Figure 4 Tergite 5 and 6 of Ceraphron (SEM). The evaporatorium is visible ventrally as a plate corresponding to the bulla concavity or reticulate evaporatorium cell matrix. Ditr inserting lateral to ite on T6. Litr of T6 extending towards T7.
Figure 3 from: Ulmer JM, Mikó I, Deans AR, Krogmann L (2021) The Waterston's evaporatorium of Ceraphronidae (Ceraphronoidea, Hymenoptera): A morphological barcode to a cryptic taxon. Journal of Hymenoptera Research 85: 29-56. https://doi.org/10.3897/jhr.85.67165
Figure 3 WE glands and sculpture of evaporatorium in Ceraphronidae (SEM) A ventral side T5 of Aphanogmus sp. showing median-ventral concavity corresponding to position of Waterston's organ on T6. B glandular subunits of the Waterston's organ extending into abdominal body cavity from ventral side of T6 and evaporatorium C evaporatorium and bulla of AphanogmusD evaporatorium topography in Ceraphron, a reticulate matrix of empty cells. Mvc = median ventral concavity of T5 eg = evaporatorium glandules ev = evaporatorium at cx = acrotergal calyx bu = bulla; at = acrotergite.
Figure 14 from: Ulmer JM, Mikó I, Deans AR, Krogmann L (2021) The Waterston's evaporatorium of Ceraphronidae (Ceraphronoidea, Hymenoptera): A morphological barcode to a cryptic taxon. Journal of Hymenoptera Research 85: 29-56. https://doi.org/10.3897/jhr.85.67165
Figure 14 Morphological barcoding (brightfield). Matching male and female Ceraphron (Allomicrops) based on WE.
Figure 11 from: Ulmer JM, Mikó I, Deans AR, Krogmann L (2021) The Waterston's evaporatorium of Ceraphronidae (Ceraphronoidea, Hymenoptera): A morphological barcode to a cryptic taxon. Journal of Hymenoptera Research 85: 29-56. https://doi.org/10.3897/jhr.85.67165
Figure 11 Phylogenetic relationships within Ceraphronoidea inferred by morphological characters from the Waterston's evaporatorium. Strict consensus tree with bootstrap support values higher than 50. Tree length = 136.
Figure 2 from: Ulmer JM, Mikó I, Deans AR, Krogmann L (2021) The Waterston's evaporatorium of Ceraphronidae (Ceraphronoidea, Hymenoptera): A morphological barcode to a cryptic taxon. Journal of Hymenoptera Research 85: 29-56. https://doi.org/10.3897/jhr.85.67165
Figure 2 Skeletomusculature of Ceraphronoidea metasoma (CLSM) A dorsal view of metasoma of Conostigmus sp. showing termination of dorsal vessel into caudal chamber and tergal muscles B dorsal view of metasoma of Ceraphron sp. showing tergal muscles and termination of dorsal vessel into abdominal pulsatory organ anterior to Waterston's evaporatorium. Ditr = dorsal intertergal retractor muscles; ite = intertergal extensor muscles; litr = lateral intertergal retractor muscles; os = ostia; cc = caudal chamber; dv = dorsal vessel; apo = abdominal pulsatory organ; ev = evaporatorium.
Figure 13 from: Ulmer JM, Mikó I, Deans AR, Krogmann L (2021) The Waterston's evaporatorium of Ceraphronidae (Ceraphronoidea, Hymenoptera): A morphological barcode to a cryptic taxon. Journal of Hymenoptera Research 85: 29-56. https://doi.org/10.3897/jhr.85.67165
Figure 13 Intraspecific variation of WE within a single morphospecies of Ceraphron (brightfield). Morphospecies based on male genitalia (inlays).
Figure 10 from: Ulmer JM, Mikó I, Deans AR, Krogmann L (2021) The Waterston's evaporatorium of Ceraphronidae (Ceraphronoidea, Hymenoptera): A morphological barcode to a cryptic taxon. Journal of Hymenoptera Research 85: 29-56. https://doi.org/10.3897/jhr.85.67165
Figure 10 Variation in submedial patches within subgenera of Ceraphron (brightfield) ACeraphron (Allomicrops) sp. BCeraphron Eulagynodes sp. CMasner lubomirus. Characters states associated with the presence of smp (character 8). Lighter medial melanization of the evaporatorium found in some species of Ceraphron Allomicrops (chr. 15). The three states of character 9 can be seen, medially separated in C. Allomicrops; and medially continuous, in C. Eulagynodes and M. lubomirus.
Figure 1 from: Ulmer JM, Mikó I, Deans AR, Krogmann L (2021) The Waterston's evaporatorium of Ceraphronidae (Ceraphronoidea, Hymenoptera): A morphological barcode to a cryptic taxon. Journal of Hymenoptera Research 85: 29-56. https://doi.org/10.3897/jhr.85.67165
Figure 1 Morphological Terminology and overview of Waterston's evaporatorium (WE) and surrounding tergites in Ceraphron (brightfield) A metasoma in dorsal view, with WE visible on Mt6 B metasomal tergum 6 (T6) and Waterston's evaporatorium C metasomal tergum 5 and 6 ta = tergal apodeme ev = evaporatorium at cx = acrotergal calyx ite = intertergal extensor muscle sr ta = sclerotized ridge of tergal apodeme smp = submedial patches dcc = distal crenulate carina cs = campaniform sensilla csr = caudal setal row. Character abbreviations are provided in Appendix 1.
Figure 12 from: Ulmer JM, Mikó I, Deans AR, Krogmann L (2021) The Waterston's evaporatorium of Ceraphronidae (Ceraphronoidea, Hymenoptera): A morphological barcode to a cryptic taxon. Journal of Hymenoptera Research 85: 29-56. https://doi.org/10.3897/jhr.85.67165
Figure 12 Species level variation of WE within morphospecies of Ceraphron (brightfield). Morphospecies based on male genitalia (inlays). Four distinct smp patterns and evaporatorium's.
FIGURES 12–15. Lasioseius foliatisetus n in A new species of Lasioseius (Acari: Blattisociidae) from Brazil with morphological and DNA barcode data
FIGURES 12–15. Lasioseius foliatisetus n. sp., adult female. Legs I-IV, dorsal view.
Figure 1 from: Ainsworth A, Cannon P, Dentinger B (2013) DNA barcoding and morphological studies reveal two new species of waxcap mushrooms (Hygrophoraceae) in Britain. MycoKeys 7: 45-62. https://doi.org/10.3897/mycokeys.7.5860
Figure 1 - Maximum likelihood phylogram using full and partial nuclear ribosomal internal transcribed spacers (ITS) sequences. Numbers above branches are nonparametric bootstrap values. Tree is arbitrarily rooted at the midpoint. Two well-supported terminal clades representing the new species Gliophorus reginae and Gliophorus europerplexus are superimposed over light grey boxes. Species names for specimens from which sequences were derived are followed by fungarium or INSD accession number, and geographic location. Notations (H) and (P) indicate specimens used were holotypes or paratypes, respectively.
Figure 4 from: Ainsworth A, Cannon P, Dentinger B (2013) DNA barcoding and morphological studies reveal two new species of waxcap mushrooms (Hygrophoraceae) in Britain. MycoKeys 7: 45-62. https://doi.org/10.3897/mycokeys.7.5860
Figure 4 - Basidiomata of Gliophorus europerplexus, scale bars represent 10 mm. Photographs A–D by D.J. Harries taken in situ at, or of collectionsfrom, the type locality, and E by B.T.M.D. A, B K(M)181245* C, D K(M)181246* holotype E K(M)181241*.
Figure 6 from: Ainsworth A, Cannon P, Dentinger B (2013) DNA barcoding and morphological studies reveal two new species of waxcap mushrooms (Hygrophoraceae) in Britain. MycoKeys 7: 45-62. https://doi.org/10.3897/mycokeys.7.5860
Figure 6 - Distribution of Gliophorus reginae (●) and Gliophorus europerplexus (▲) in Britain based on sequenced collections and plotted using SimpleMappr (Shorthouse 2010).
Figure 3 from: Ainsworth A, Cannon P, Dentinger B (2013) DNA barcoding and morphological studies reveal two new species of waxcap mushrooms (Hygrophoraceae) in Britain. MycoKeys 7: 45-62. https://doi.org/10.3897/mycokeys.7.5860
Figure 3 - Microscopic characters of Gliophorus reginae collected from the type locality, B–G mounted in Congo Red, scale bars represent 10 µm. A Spores from water mount of spore print K(M)181127* B Subregular lamellar trama from squash mount K(M)181129* C Pileipellis hyphae showing medallion clamp connections K(M)181127* D–F Basidial developmental series K(M)181129* G Basidium K(M)181127*.
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