What’s Inside the Hole? A Review of European Dendrolimnetic Moth Flies (Diptera: Psychodidae: Psychodinae)
Abstract
:1. Introduction
2. Material and methods
2.1. Geographic Scope
2.2. Literature Records
2.3. Sampling
2.4. Study of the Collected Material and Terminology
2.5. Genetics
3. Results
Taxon | Tree Species | Reference |
---|---|---|
Clogmia albipunctata (Williston, 1893) | Oak (Quercus sp.), not specified | [35,36] |
Clytocerus xylophilus Vaillant, 1983 | Lime tree (Tilia sp.) | [37] |
Lepiseodina tristis (Meigen, 1830) | Ash (Fraxinus sp.), beech (Fagus sp.), birch (Betula sp.), cherry (Prunus sp.), elm (Ulmus sp.), maple (Acer sp.), oak (Quercus sp.), mulberry (Morus sp.), lime (Tilia sp.), not specified, ** Populus nigra L. | [13,22,25,36,38] |
Lepiseodina rothschildi (Eaton, 1912) | Maple (Acer sp.), oak (Quercus sp.), not specified | [9,13,38] |
Lepiseodina latipennis (Sarà, 1953) | ** Maple tree (Acer sp.), ** Oak (Quercus sp.) | |
Pneumia canescens (Meigen, 1804) | Not specified | [18,25] |
Pneumia trivialis (Eaton, 1893) | Not specified | [22,25] |
Psychoda alternata Say, 1824 | Not specified | [23] |
Psychoda cinerea Banks, 1894 | Apple (Malus sp.), oak (Quercus sp.), ** Hornbeam (Carpinus or Ostrya sp.) | [25] |
Psychoda minuta Banks, 1894 | Maple (Acer sp.), oak (Quercus sp.) | [25] |
Telmatoscopus advena (Eaton, 1893) | Ash (Fraxinus sp.), birch (Betula sp.), elm (Ulmus sp.), oak (Quercus sp.), sycamore (Platanus sp.) | [13,22,25,38] |
Telmatoscopus thuringicus Beran, Doczkal, Pfister & Wagner, 2010 | Not specified (assumption of development) | [5] |
Telmatoscopus laurencei Freeman, 1953 | Lime tree (Tilia sp.) | [39] |
3.1. Key to the Males of European Psychodinae Genera Found in Dendrotelmata
- 1.
- Antenna with at least flagellomeres 2–10 nodiform, divided into a basal nod and a distal neck (Figure 1B,D)…3
- -
- Antenna with flagellomeres cylindrical or fusiform (Figure 1A,C)…2
- 2.
- Cornicula (everted sac-shaped structures on the back surface of the head (presumed scent organs); also known as patagia) usually present; antennal scape more than three times longer than pedicel; flagellomere 1 with a distal brush of wavy setae (Figure 1C)…Clytocerus Eaton, 1904
- -
- Cornicula always absent; antennal scape less than three times the length of pedicel; flagellomere 1 without a distal brush of wavy setae (Figure 1A)…Pneumia Enderlein, 1935
- 3.
- Ascoids with anterior and posterior branches (ascoids Y-shaped) (Figure 1D); hypopods of males with only one apical tenaculum…Psychoda Latreille, 1797
- -
- Ascoids with a single curved branch or carrying only anterior branches (ascoids digitiform and not Y-shaped) (Figure 1B); hypopods of males with four or more apical tenacula…4
- 4.
- -
- 5.
- -
3.2. Systematic Assessment
- 1.
- Gonostyli longer than gonocoxites…2
- -
- Gonostyli about half the length of gonocoxites (Figure 3A)… L. rothschildi
- 2.
- Hypandrium narrow, with a small medial projection on basal margin (Figure 7A); alveoli in gonocoxites restricted in two or three irregular rows in the apical margin (Figure 9A and Figure 10B); gonostyli with alveoli on the base (Figure 9A and Figure 10B); two parameres strongly sclerotized (Figure 7C)… L. tristis
- -
- 1.
- The scape/pedicel proportion is 2:1 in Kvirosheinoscopus (1:1 in Sciria); however, even while the proportion of scape/pedicel length proposed by Ježek [84] is 2:1 in T. ussuricus, this is not the case for T. bartai where it is 1:1.
- 2.
- The ascoids are very long, thin and coiled in Krivosheinoscopus (large, flat, leaf or hood-shaped in Sciria). This character is contradicted by Telmatoscopus laurencei [38], which has digitiform ascoids and coiled, and these character states are polymorphic in Vaillantodes Wagner, 2001 and Panimerus Eaton, 1913. Intermediary forms also occur in some genera of Telmatoscopoids. Due to widespread polymorphism of this character we do not consider this a reliable genus-level character unless supported by other, independent lines of evidence.
- 3.
- The first palpal segment very short and keg-shaped in Krivosheinoscopus (long and cylindrical in Sciria). This character is variable inside the genus Telmatoscopus (e.g., long in Telmatosocpus advena and shorter in Telmatoscopus thuringicus Beran, Doczkal, Pfister & Wagner, 2010), therefore it is here considered as intrageneric variability, and thus not a diagnostic character.
- 4.
- The position of the radial and medial forks of wing venation, at the same distance in Krivosheinoscopus (medial fork distad to radial fork in Sciria). This is another character presenting as variable within the genus Telmatoscopus (e.g., medial fork distal in T. advena, medial fork basal in T. thuringicus, forks at the same level in Telmatoscopus bartai).
- 5.
- Two pairs of protuberances in the aedeagal complex in Krivosheinoscopus (one pair in Sciria). According to the homologization of [83], the absence of protruding parameres in Telmatoscopus are not due to absence of parameres, they are present as transverse sclerites within the aedeagal–parameral complex. The difference between T. advena, T. bartai and T. ussuricus in the parameres is a question of degree of development rather than a clear-cut presence/absence question, and intermediate cases occur in Nearctic species (e.g., T. patibulus Quate).
- 6.
- The hypoproct has a terminal projection, long and narrow in Krivosheinoscopus (without a terminal projection, triangular in Sciria). This character is contradicted by Telmatoscopus bartai comb. nov. where the hypoproct is triangular, and not thin and elongated.
- 1.
- More than 30 tenacula; tenacula not restricted to the apical portion of hypopods, scattered in all the hypopods length (as in [5] (Figure 10))…T. thuringicus
- -
- Less than 30 tenacula; tenacula restricted to the apical portion of hypopods and not scattered in the hypopods length…2
- 2.
- -
- Ascoids narrow, never broader than 1/3 of the width of the basal node of flagellomere carrying them; parameres coiled or out curved (Figure 13C)…3
- 3.
- Parameres coiled with strong incurvation after the coil and apical tips hook-out curved (as in [38] (Figure 2D)); hypopods with less than 20 tenacula…T. laurencei
- -
- Parameres not coiled and out curved (Figure 13C); hypopods with more than 20 tenacula…T. bartai
4. Discussion
5. Conclusions
Supplementary Materials
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Acknowledgments
Conflicts of Interest
References
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Jaume-Schinkel, S.; Morelli, A.; Kvifte, G.M.; Mengual, X. What’s Inside the Hole? A Review of European Dendrolimnetic Moth Flies (Diptera: Psychodidae: Psychodinae). Diversity 2022, 14, 532. https://doi.org/10.3390/d14070532
Jaume-Schinkel S, Morelli A, Kvifte GM, Mengual X. What’s Inside the Hole? A Review of European Dendrolimnetic Moth Flies (Diptera: Psychodidae: Psychodinae). Diversity. 2022; 14(7):532. https://doi.org/10.3390/d14070532
Chicago/Turabian StyleJaume-Schinkel, Santiago, Alessio Morelli, Gunnar Mikalsen Kvifte, and Ximo Mengual. 2022. "What’s Inside the Hole? A Review of European Dendrolimnetic Moth Flies (Diptera: Psychodidae: Psychodinae)" Diversity 14, no. 7: 532. https://doi.org/10.3390/d14070532
APA StyleJaume-Schinkel, S., Morelli, A., Kvifte, G. M., & Mengual, X. (2022). What’s Inside the Hole? A Review of European Dendrolimnetic Moth Flies (Diptera: Psychodidae: Psychodinae). Diversity, 14(7), 532. https://doi.org/10.3390/d14070532