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Any full-dimensional abs initio probable electricity along with dipole moment surfaces for (NH3)2.
The description of this new species is given below.Within Dalyelliidae Graff, 1905, Gieysztoria Ruebush Hayes, 1939 is the most widely distributed and speciose genus, members of which live in marine, brackish, or freshwater habitats (Van Steenkiste et al., 2012). Gieysztoria is composed by ~97 free-living species (Tyler et al. 2016), and species identification is mainly made on the male copulatory system, which has an armed penis (stylet) with different configurations of spines (Noreña et al., 2016). LY303366 The stylet configuration of Gieysztoria species is traditionally split into two groups Aequales (spines of similar shape and size) and Inaequales (spines of different shape and size) (Luther, 1955). In the neotropics, specimens of Gieysztoria belong to both the Aequales and Inaequales group and are well represented (Damborenea et al., 2005; Noreña et al., 2003). According to Braccini et al. (2016, 2017), there are 16 species of Gieysztoria in Brazil, mainly distributed in the southern region. South Brazil harbours a mosaic of wetlands that are considered hot spots of biodiversity, including the Taim Ecological Station (ESEC Taim) protected area that was designated as a Ramsar site (Ramsar, 2017). In the present study, Gieysztoria falx Brusa, Damborenea Noreña, 2003 is registered in the ESEC Taim, located in Rio Grande do Sul. It represents the first record of G. falx in Brazil. Illustrations and comments on stylet configuration are given.The recent collection of Palaemonid shrimps from Agatti Island, Lakshadweep, Arabian Sea, have provided further additions to the Indian marine fauna. In the manuscript, a new species, Periclimenella agattii sp. nov. is described and illustrated. The new species is morphologically most similar to P. spinifera among other congeners, but it strongly differs from that species by having upper the antennular flagellum with 14-16 segments, short free ramus with 12-13 segments, lower antennal flagellum thin and bearing 35-37 segments; 4 minute lateral spines on basal segment of 3rd maxilliped; male palmcarpus ratio of second pereopod higher than in female, propodus of 3rd pereopod with 7-8 ventral spines and hepatic spine with groove. Genetic analysis using the mitochondrial COI and 16S rRNA genes sequences proved that, the new species is significantly distinct from the closed related species.We here describe a new species, Lamellisphecia minwangi Arita Kallies sp. nov., from Nanling, Guangdong, southern China. Furthermore, we provide new records of Lemellisphecia Kallies Arita, 2004 species from south-east Asia, with L. champaensis Kallies Arita, 2004 recorded for Laos and L. haematinea Kallies Arita, 2004 recorded for Myanmar for the first time.A new species of Ophthalmoblysis Scoble, 1995 from Mexico is described and illustrated O. ibarrai Garzón-Orduña, sp.n. The species is known only from Los Tuxtlas (Veracruz, Mexico), and is distinguished by the shape and pattern of the hindwing eyespot. Unlike the eyespot of other species in Ophthalmoblysis, that of O. ibarrai has a smaller and not fully circular inner black disc. In addition, O. ibarrai can be distinguished from a similar, undescribed species from Costa Rica by the presence of a sclerotized extension at the tip of the male valva and by the shape of the cornutus in the vesica. Ophthalmoblysis ibarrai represents the northernmost member of the genus.The ultimate stadium of Misagria parana Kirby, 1889 is described and illustrated for the first time based on reared material. The larva was hitherto unknown for the genus. Based on M. parana, M. divergens Westfall, 1992 and M. cf. calverti a larval generic diagnosis is given. Larva of the genus Misagria Kirby, 1889 is briefly compared to the strongly similar larvae of the Neotropical genera Cannaphila Kirby, 1889, and Dasythemis Karsch, 1889. Larvae of Misagria can be separated from those of Dasythemis by the number of palpal setae (seven in Misagria vs four in Dasythemis) and by the shape of ventral tarsal setae (trifid setae present in Misagria), and from those of Cannaphila by the number of palpal setae (seven vs five or six) and the chaetotaxy of middorsal abdominal segments (segments three to nine with a diffuse clump of long setae in Misagria vs no diffuse clump in Cannaphila).A new mealybug species, Phenacoccus poae sp. n. (Hemiptera Coccomorpha Pseudococcidae) and a new felt scale species, Rhizococcus asperulae sp. n. (Hemiptera Coccomorpha Acanthococcidae) are described and illustrated based on adult females; both were collected from Iran, Markazi province, Arak, Haftad-Gholleh Protected Area. A new country record of Rhizococcus istresianus Goux, 1989 (Hemiptera Coccomorpha Acanthococcidae) from Kermanshah province, Eslamabad -e Gharb, Ghallajeh Protected Area, is illustrated and some of its morphological variations are discussed. Identification keys to the Iranian species of Phenacoccus and Rhizococcus are provided.A new mite species, Trachygamasus karuni sp. nov. is described from buffalo, sheep and horse manure at several locations north of Ahvaz city, Khuzestan, Iran. A key to 14 world species of Trachygamasus with described adults is also provided.Microperla qinlinga Chen, 2019 was recently described, but details of the aedeagus were not included in the original description. In this paper, the male aedeagus and nymph of M. qinlinga are described for the first time. Additional information concerning the genus Microperla Chu, 1928 is discussed.A new species of the genus Colias Fabricius from the Arequipa region of Peru, C. misti Kir'yanov sp. nov., stat. nov., is established by raising it from the subspecies rank, C. lesbia misti Kir'yanov 2017. This taxonomic act is justified after detailed comparison of C. misti with representatives of phenotypically similar other South American Colias, including the subspecies of C. lesbia. The newly presented taxa are diagnosed by adult morphology, bionomics, and male genitalia. The diagnosis of a new subspecies Colias misti ccota Kir'yanov ssp. nov., discovered in the World's deepest canyon Cotahuasi (Peru), is based on different and stable characters in phenotypes, genitalia, and bionomics of C. misti ccota and C. misti misti. Both subspecies of C. misti are endemic to the Western slopes of the Andes. It is also demonstrated that the shape of the male aedeagus is diagnostic for a reliable identification of the South American Colias.
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