Nuntianus Miranda & Skevington & Marshall 2020, gen. nov.
Notice bibliographique
Résumé
Genus Nuntianus Miranda gen. nov. Figs 23–47, 75, 86–87, 96–97 rn:lsid:zoobank.org:act: BDB84EA7-970F-439A-AF85-E5E0B2AE9BC7 Type species: Baccha lepida Macquart, 1842 Baccha lepidus species group, in part. Hull (1949a) Ocyptamus lepidus species group. Thompson (1981); Miranda et al. (2016); Mengual et al. (2018) Description. Head. Face very narrow to narrow (between 1/4 and less than a 1/3 of head width) and usually pale; tubercle usually weak and medially positioned, slightly concave dorsally and ventrally (Fig. 87). Antennal insertions confluent. Frons very narrow (~1/4 of head width) to normal (~ 1/3 of head width), white microtrichia usually homogeneously distributed but sparse on a median longitudinal area and absent dorsal to lunule. Female ocellar triangle adjacent to or ~1 ocellus-width from lateral eye margin (Fig. 86). Vertex either homogeneously covered by dull white microtrichia, or with sparse white microtrichia, or without microtrichia and shiny. Dorsal occiput with one row of pile (Figs 86, 87). Thorax. Scutum usually pale laterally from postpronotum to post-alar callus, and usually without distinct anterior row of pile (Figs 23–37). Scutellum usually entirely pale. Anterior anepisternum pilose (except bare on N. croceus and the species group N. hyalipennis). Katatergite usually with short microtrichia that gives the sclerite a ‘velvet’ appearance. Metaepisternum pilose or bare. Metasternum bare. Upper calypter margin bare or with pile shorter than pile on the ventral calypter margin. Metafemur with normal pile. Wing. Alula usually narrow (as wide as c cell). Wing either hyaline or entirely light yellow to light brown. Vein M1 sometimes straight (Fig. 44). Abdomen. Abdomen and terga colour pattern variable. Terminalia. Female tergum 7 only *lightly sclerotized (Fig. 47, except in the N. hyalipennis species group); tergum 8 variable. Male surstylus usually with homogeneously distributed setulae or setae; *subepandrial sclerite ‘crescent’ shaped (Figs 45 and 46) and usually with pair of apical projecting lobes between bases of surstyli; hypandrium usually oval and quite robust apically, with ventral pilosity sub-apically or apically; postgonite with sub-apical acute dorsal extremity and with either a rounded or acute ventral extremity; basiphallus teardropshaped, distiphallus membranous with dorsal sclerotized triangular region (Figs 92, 96, 97). Included species (63): N. abata (Curran, 1938) comb. nov. [2, 4, type lost], N. aeolus (Hull, 1943a) comb. nov. [1b], N. anona (Hull, 1943e) comb. nov. [1b], N. arabella (Hull, 1947a) comb. nov. [2], N. banksi (Hull, 1941a) comb. nov. [1b], N. cecrops (Hull, 1958) comb. nov. [1a], N. chapadensis (Curran, 1930a) comb. nov. [1b], N. confusus (Goot, 1964) comb. nov. [4, type lost], N. crocatus (Austen, 1893) comb. nov. [1b], N. croceus (Austen, 1893) comb. nov. [2], N. cubanus (Hull, 1943a) comb. nov. [1b], N. cultratus (Austen, 1893) comb. nov. [1a (synonym, Baccha currani Hull), 2, 3, 4], N. cymbellina (Hull, 1944) comb. nov. [1b], N. debasa (Curran, 1941) comb. nov. [1b], N. delicatissimus (Hull, 1943b) comb. nov. [1b], N. dryope (Hull, 1958) comb. nov. [1a], N. fervidus (Austen, 1893) comb. nov. [2], N. filii (Doesburg, 1966) comb. nov. [1b, 4], N. flavens (Austen, 1893) comb. nov. [1b], N. geijskesi (Doesburg, 1966) comb. nov. [1b, 4], N. gilvus (Austen, 1893) comb. nov. [2], N. halcyone (Hull, 1949b) comb. nov. [1a], N. hippolite (Hull, 1957) comb. nov. [1a], N. hyalipennis (Curran, 1930b) comb. nov. [1b], N. inornatus (Walker, 1836) comb. nov. [1b], N. io (Hull, 1944) comb. nov. [1b], N. iona (Curran, 1941) comb. nov. [1b], N. lepidus (Macquart, 1842) comb. nov. [1b, 4], N. lucretia (Hull, 1949c) comb. nov. [1a], N. luctuosus (Bigot, 1884) comb. nov. [1a (synonym, Baccha papilio Hull), 4, type lost], N. micropyga (Curran, 1941) comb. nov. [1b], N. minimus (Hull, 1943b) comb. nov. [1b], N. murinus (Curran, 1930a) comb. nov. [1b], N. myiophagus (Thompson in Mengual et al., 2018) comb. nov. [1a], N. neoparvicornis (Telford, 1973) comb. nov. [2, 4], N. neptunus (Hull, 1943d) comb. nov. [1b], N. neuralis (Curran, 1934) comb. nov. [1b], N. niobe (Hull, 1943c) comb. nov. [1b], N. nora (Curran, 1941) comb. nov. [1b], N. obliquus (Curran, 1941) comb. nov. [1b], N. octomaculatus (Thompson in Thompson et al., 1976) comb. nov. [1a], N. oriel (Hull, 1942a) comb. nov. [1b], N. panamensis (Curran, 1930c) comb. nov. [1b], N. peri (Hull, 1943a) comb. nov. [1b], N. philippianus (Enderlein, 1938) comb. nov. [2, type lost?], N. prenes (Curran, 1930a) comb. nov. [1b], N. prudens (Curran, 1934) comb. nov. [1b], N. pullus (Sack, 1921) comb. nov. [1a (synonym, Baccha sepia Hull), 1b (synonym, Baccha danaida Hull and Baccha violacea Hull)], N. punctifrons (Williston, 1891) comb. nov. [1b], N. pyxia (Hull, 1943a) comb. nov. [1b], N. saffrona (Hull, 1943c) comb. nov. [1b], N. spatulatus (Giglio-Tos, 1892) comb. nov. [2], N. vanessa (Hull, 1949a) comb. nov. [1a], N. variegatus (Macquart, 1842) comb. nov. [1b], N. verona (Curran, 1941) comb. nov. [1b], N. victoria (Hull, 1941b) comb. nov. [1a], N. vierecki (Curran, 1930a) comb. nov. [1b], N. xanthopterus (Wiedemann, 1830) comb. nov. [2], N. xantippe (Hull, 1949a) comb. nov. [1a], N. zenillia (Curran, 1941) comb. nov. [1b], N. zita (Curran, 1941) comb. nov. [1b], N. zobeide (Hull, 1943e) comb. nov. [1b], N. zoroaster (Hull, 1943a) comb. nov. [1b]. Etymology. The name is a reference to the Latin word for ‘messenger’ or ‘message’ since there are still more information/messages to be discovered inside the genus. The name is to be treated as masculine. Comments. This is the former Ocyptamus lepidus species group. Most common species can be recognized by the abdominal pattern of dark apical extensions (one medial and a sub-lateral pair) into a mostly pale background (Figs 23 and 43); this pattern is what earlier authors called the yellow ‘inverted V-shaped’ markings (Figs 30 and 32). Other species have abdominal patterns that seem to be variations of the common one (Figs 24, 27, 28, 33, 34 and 42). Species of Nuntianus can be readily distinguished from the superficially similar Hybobathus Enderlein, 1938 by the absence of the contrasting ocellar triangle present in the latter (see Fig. 78 in Mengual et al. 2018). Besides the abdominal pattern, the genus can also be quickly separated from other taxa by the often entirely light yellow to brown wings. Despite the variability in superficial color characters, the monophyly of Nuntianus is strongly supported in the combined molecular analysis of Miranda et al. (2016). One of the possible unique synapomorphies, so far not present in any other lineage, for the genus lies on the condition of the female tergum 7: most closely related lineages have a distinct tergum 7, but in Nuntianus it is almost wholly membranous with weakly sclerotized basal areas (Fig. 47). Larval predatory habits seem quite diverse in this genus. Besides the predation of aphids as seen in N. cubanus (but see below) (Mengual et al. 2018), there are records of N. luctuosus as aquatic predators in bromeliads (Rotheray et al. 2000) and records of N. myiophagus as a predator of adult insects (Ureña & Hanson 2010). Nuntianus variegatus (Fig. 75) was previously allocated in the Ocyptamus melanorrhinus species group (Mengual et al. 2018), but type images indicate that it belongs to Nuntianus due to its similarity to N. zita. Nuntianus is the largest of the taxa recently removed from the old ‘ Ocyptamus’ assemblage, and includes subgroups yet to be properly defined. One such group is the N. hyalipennis species group (N. hyalipennis, N. neuralis, N. obliquus and N. panamensis), once thought to be related to Calostigma Shannon, 1927 (Thompson 1981) but strongly supported as part of Nuntianus by molecular characters (Miranda et al. 2016). These small flies differ from most congeners in having a straight, or nearly so, vein M1 [see comments in Miranda et al. (2016: 172)]; the N. hyalipennis species group can be further distinguished from Calostigma by the scutum with 3 long and white microtrichose stripes (the lateral pair wider than the median stripe) (similar to Fig. 27), yellow scutellum (Fig. 43), brownish yellow and almost completely microtrichose wings, and the abdominal terga mainly pale and with apical dark stripes (Fig. 43). Other possible subgroups of Nuntianus comprise the species with wide parallel-sided (Fig. 23) to oval (Fig. 25) abdomens (N. cultratus, N. fervidus, N. geijskesi, N. gilvus, N. iona, N. lepidus, N. luctuosus, N. myiophagus, N. neoparvicornis, N. neptunus, N. peri, N. pullus, and N. prudens), species with petiolate (Fig. 30) abdomens (N. abata, N. aeolus, N. anona, N. arabella, N. banksi, N. cecrops, N. chapadensis, N. crocatus, N. croceus, N. cubanus, N. debasa, N. filii, N. flavens, N. halcyone, N. hippolite, N. io, N. lucretia, N. murinus, N. niobe, N.octomaculatus, N.oriel, N. prenes, N. punctifrons, N. pyxia, N. saffrona, N. spatulatus, N. vanessa, N. variegatus, N. verona, N. victoria, N. vierecki, N. zita, and N. zobeide), and species with relatively slender (Fig. 37), rather than petiolate, abdomens (N. confusus, N. cymbellina, N. delicatissimus, N. dryope, N. micropyga, N. minimus, N. nora, N. zenillia, and N. zoroaster). A few species are of uncertain grouping due to insufficient information on the shape of the abdomen, because the literature is inadequate, the type is not available for examination, or type is greatly damaged (N. inornatus, N. philippianus, N. xantippe, and N. xanthopterus). Nuntianus lepidus was chosen as the type species for the genus based on the long history of the ‘ lepidus species group’. Nuntianus cubanus (Fig. 41), the only Nuntianus species that occurs in the Nearctic region (Florida, USA), seems to be distinct from the rest of the genus.A neighbour-joining analysis using the COI gene (analysis not shown here) places specimens of this species in a separate cluster far fr
Récupéré en direct depuis OpenAlex et désinversé. Les résumés ne sont pas conservés dans cette base de données : les index inversés représentent 8,6 Go des 9,3 Go de texte de la base, et le serveur dispose de 13 Go libres.
Comment cette classification a été obtenuedéplier
Prédiction machine sur la base complète
Imitation des enseignantsNi prévalence calibrée, ni vérité terrain. Validation humaine à venir. Le volet Gemma est une étiquette directe du modèle pour chaque travail de la base, lue sur la notice réduite au titre. Le volet Codex est un classifieur appris des 10 348 étiquettes directes de Codex et calibré sur les taux pondérés de l'échantillon; les champs sans appui suffisant ne portent aucun appel Codex. Le mode candidate est l'union des deux volets; le consensus est leur intersection. Ces sorties portent le statut machine_predicted_unvalidated et ne sont pas des étiquettes humaines.
Scores du classifieur distillé par catégorie (deux têtes)
| Catégorie | Codex | Gemma |
|---|---|---|
| Métarecherche | 0,000 | 0,001 |
| Méta-épidémiologie (sens strict) | 0,001 | 0,000 |
| Méta-épidémiologie (sens large) | 0,000 | 0,000 |
| Bibliométrie | 0,002 | 0,001 |
| Études des sciences et des technologies | 0,002 | 0,001 |
| Communication savante | 0,001 | 0,001 |
| Science ouverte | 0,001 | 0,001 |
| Intégrité de la recherche | 0,001 | 0,001 |
| Charge utile insuffisante (le modèle a refusé de juger) | 0,018 | 0,008 |
Scores machine (provisoires)
Les deux têtes enseignantes du modèle étudiant, lues sur ce travail. Un score ordonne la base pour la relecture; il n'affirme jamais une catégorie, et le statut de validation accompagne chaque rangée tel quel.
Scores de référence d'un modèle non mature (critères de maturité non atteints, 7 itérations). Un score ordonne; il n'affirme jamais une catégorie.
score_only:v0-immature-baseline · tel quel depuis la passe de notation : score_only signifie que le nombre peut ordonner les travaux, et qu'aucune étiquette de catégorie n'en découleClassification
machine, non validéePrédiction automatique; un appel candidat d’une seule source (Gemma direct ou Codex distillé), pas un consensus.
Le détail, modèle par modèle et score par score, se trouve en fin de page sous « Comment cette classification a été obtenue ».