Infective larvae of Rhabdiasidae (Nematoda): comparative morphology of seven European species

2014 ◽  
Vol 59 (1) ◽  
Author(s):  
Yuriy Kuzmin ◽  
Kerstin Junker ◽  
Odile Bain

AbstractThe morphology of infective third-stage larvae of Rhabdias bufonis, R. rubrovenosa, R. sphaerocephala, R. fuscovenosa, R. elaphe, Entomelas entomelas and E. dujardini is described. The sheath structure in the studied larvae appeared to be similar to that described in other species of the family Rhabdiasidae, its chequered aspect being caused by a combination of outer longitudinal striations and inner longitudinal as well as transverse ridges. The larvae were similar in general morphology but differed in the presence/absence of anterior apical protuberances (pseudolabia), the shape and ornamentation of the tail tip, and the structure of lateral alae in the caudal region of the body. No relationship between the morphological characters of the larvae of the studied species and their taxonomic position or specificity of adult parasites to a particular host group was observed. Regardless, the larvae of each species can be identified by a combination of morphological peculiarities in the anterior and caudal regions of the body.

2011 ◽  
Vol 20 (1) ◽  
pp. 161-173
Author(s):  
A.P. Kassatkina

Resuming published and own data, a revision of classification of Chaetognatha is presented. The family Sagittidae Claus & Grobben, 1905 is given a rank of subclass, Sagittiones, characterised, in particular, by the presence of two pairs of sac-like gelatinous structures or two pairs of fins. Besides the order Aphragmophora Tokioka, 1965, it contains the new order Biphragmosagittiformes ord. nov., which is a unique group of Chaetognatha with an unusual combination of morphological characters: the transverse muscles present in both the trunk and the tail sections of the body; the seminal vesicles simple, without internal complex compartments; the presence of two pairs of lateral fins. The only family assigned to the new order, Biphragmosagittidae fam. nov., contains two genera. Diagnoses of the two new genera, Biphragmosagitta gen. nov. (type species B. tarasovi sp. nov. and B. angusticephala sp. nov.) and Biphragmofastigata gen. nov. (type species B. fastigata sp. nov.), detailed descriptions and pictures of the three new species are presented.


Zootaxa ◽  
2019 ◽  
Vol 4563 (3) ◽  
pp. 516 ◽  
Author(s):  
RAEHYUK JEONG ◽  
ALEXEI V. TCHESUNOV ◽  
WONCHOEL LEE

A new species of the genus Thalassironus de Man, 1889 was discovered during several surveys of the offshore marine ecosystem in Korea. This new species belonging to the family Ironidae, Thalassironus koreanus sp. nov., shares general morphological traits of the genus such as an optically smooth cuticle, buccal cavity consisting of two parts with three movable teeth and thick cuticularized walls, six rounded lips with ten cephalic setae, slit-like amphid and short conical tail with caudal glands present. The new species is most closely related to T. bohaiensis, first discovered in the Bohai Sea, in terms of body ratio (a, b, c, c’) and general morphology, but differs by its generally longer and larger body structures, cervical setae at the level of the buccal cavity, paired somatic setae distributed along the body, and longer/larger spicule. A description of Thalassironus koreanus sp. nov., diagnosis of the genus, emended pictorial key for the genus and discussion of important characteristics for the genus is provided. 


1963 ◽  
Vol 11 (1) ◽  
pp. 21 ◽  
Author(s):  
LAS Johnson ◽  
BG Briggs

The sources of evidence bearing on the evolution of the Proteaceae are outlined. New cytological data are presented for Embothrium (South American), Beauprea (New Caledonian), and 15 Australian genera which are mostly tropical or subtropical and with morphological characters considered primitive. Beauprea, Buckinghamia, Opisthiolepis, Embothrium, Oreocallis, and Strangea have 2n = 22 and this number is also confirmed for Stenocarpus and Lomatia. Hollandaea, Darlingia, Cardwellia, Carnarvonia, Helicia, Hicksbeachia, Gevuina, Musgravea, and Austromuellera have 2n = 28. In all these cases the chromosomes are comparable in size with those previously described in Grevillea and other genera. Placospermum has 2n = 14 and its chromosomes are many times larger, comparable with those which have been reported in Persoonia. The palaeobotanical evidence is discussed, but does not throw much light on the detailed phylogeny or on the origin of the family, although it suggests that Proteaceae were well developed in the Upper Cretaceous period. From comparative morphology and cytology, together with considerations of distribution, ecology, and other factors, the characters of the ancestral "Proto-Proteaceae" are postulated and an evolutionary scheme of probable relationships of subfamilies, tribes, and genera is put forward, but formal taxonomic rearrangement is deferred for a later publication. Morphological features of the ovule and seed and of floral orientation are discussed. The characters and probable evolutionary trends within each individual group are dealt with in detail and form the basis of a number of proposed rearrangements in the taxonomic system. Placospermum is considered to combine many primitive morphological and cytological features, and it is excluded from both the subfamilies Proteoideae and Grevilleoideae, being thought to represent an early offshoot before the differentiation of those groups. The Proteoideae are probably polyphyletic but the Grevilleoideae represent a more close-knit assemblage. Within the subfamilies certain groups consist of clearly allied genera and appear to be monophyletic. These constitute the majority of the formally recognized tribes, viz. Proteeae (here including Synaphea and Conospermum), Grevilleeae (here restricted to Finschia, Grevillea, and Hakea), Musgraveeae (Musgravea, Austromuellera), and Banksieae. The tribe Embothrieae, here restricted to those genera of the Grevilleoideae with n = 11, shows considerable morphological diversity but is accepted for the present. It is shown that Strangea should be removed from the Grevilleeae and placed in the Embothrieae near Stenocarpus, with which it shares distinctive seed and inflorescence characters. Some isolated genera, viz. Orites (Grevilleoideae) and in particular Franklandia (Proteoideae), show marked specialization in many features and may be given tribal status. The other two tribes recognized, Persoonieae (in the Proteoideae) and Macadamieae (in the Grevilleoideae), consist of genera which, although advanced in certain respects, preserve numerous primitive features. Each of these tribes comprises a number of groups and individual genera which appear to be the result of evolutionary lines that have been independent from a very early stage. The African genus Brabeium, formerly placed in Persoonieae, is shown to be related to Macadamia. There remain certain genera, viz. Dilobeia (Proteoideae) and also Hollandaea, Knightia, Darlingia, Cardwellia, and Carnarvonia (Grevilleoideae), for which no formal grouping is at present suggested. The frequent independence of trends of specialization in individual characters is stressed, and the relationship of zygomorphy and other floral and inflorescence specializations to pollination by higher insects and birds is discussed. The primitive condition of the inflorescence is considered to have been essentially racemose, not a thyrse as recently suggested. Racemose inflorescences are found in many Proteoideae but the apparent raceme in Grevilleoideae is thought to be a reduced panicle.The phytogeography of the family is briefly discussed. There is evidence indicating a tropical origin, and therefore suggestions of southern connections between Australia and Africa are discounted, though they may have occurred between Australia and South America. Stress is placed on the need for an understanding of evolution within the family as a prerequisite to the development of theories on its position among the Angiosperms and on its historical phytogeography.


Parasitology ◽  
1939 ◽  
Vol 31 (1) ◽  
pp. 78-120 ◽  
Author(s):  
Madan Lal Bhatia

The paper deals with the biology, morphology and anatomy of seven species of syrphid larvae viz. Syrphus luniger Meig., S. balteatus De Greer, S. ribesii Linne, Catabomba pyrastri Linne, Sphaerophoria flavicauda Zett., Sph. scripta Linne, and Platychirus scutatus Meig.The habitat, mode of progression, aphidophagous habits and characteristic coloration are described for each species.It is shown that the larvae of all the above species, like larvae of other cyclorrhaphous Diptera, definitely pass through three stages separated by two moults. The mode of dehiscence of the puparium is described briefly.Each of the species, except Catabomba pyrastri, has three generations in the breeding season which lasts from May to October. Platychirus scutatus hibernates only in the larval stage, but the other species may be found in both the larval and pupal stages during the winter.The larvae of all the above species, except Syrphus balteatus, are commonly parasitized by ichneumonid larvae.The morphology of the egg, the three larval stages and the puparium of S. luniger is described in detail.The characters common to the third stage larvae of all the species dealt with are summarized and short descriptions of the third stage larvae and puparia of the individual species are given. The general appearance of the living larvae and details of the buccopharyngeal armature, spiracles and puparia of each of the species is represented in figures.In connexion with the pupae a number of new structures are described and it is suggested that some of them are concerned with the formation of the characteristic shape of the puparium and with the dehiscence of the puparium.Internal pupal spiracles are present in all the species dealt with, but external pupal spiracles are present only in Platychirus scutatus.The anatomy of P. scutatus is described and figured, an account being given of all the structures except the musculature of the body wall. Study of the anatomy affords evidence as to the carnivorous mode of life of the larvae and also indicates that the larvae have evolved from aquatic forms.The comparative morphology of the Syrphinae is discussed with respect to the relationship of the Syrphinae to other Aschiza and to the cyclorrhaphous Diptera.


1970 ◽  
Vol 48 (4) ◽  
pp. 771-773 ◽  
Author(s):  
Jack R. Sutherland ◽  
T. G. Dunn ◽  
N. Bruce F. Cousens

Several morphometric and morphological characteristics were evaluated to determine their usefulness in identifying the life stages of Xiphinema bakeri. The stages can be identified by length of the body, onchiostylet, and replacement stylet of larvae. These values increase lineally from first-stage larva to adult, and fall into five groups corresponding to the nematodes' four larval stages and adult. Each stage has a specific tail-tip shape, which gradually changes from subacute in the first and second stages to subdigitate in adults. At lower magnifications, the body length and the tail shape, used in combination, are best for identification. First-stage larvae also have the replacement stylet overlapping the stylet extension, distinguishing them from the second stage. Frequently the immature vagina of fourth-stage larvae appears as a clear area in the body; this helps to separate them from the third stage.


Nematology ◽  
2002 ◽  
Vol 4 (4) ◽  
pp. 489-504 ◽  
Author(s):  
Byron Adams ◽  
Jean-François Silvain ◽  
Orville Marti

AbstractEctoparasitic nematodes (Acugutturus, Vampyronema and Noctuidonema) of the family Acugutturidae from 13 species of Lepidoptera (moths) and one species of Blattodea (cockroaches) were collected, measured and analysed by discriminant analysis in order to identify conspecifics and to determine which morphological characters were useful in defining differences between nematodes on different host species. The position of the excretory pore posterior to the metacorpus clearly differentiates Acugutturus parasiticus from Noctuidonema and Vampyronema. Two populations of A. parasiticus on Periplaneta americana from the West Indian islands of St Lucia and Guadeloupe are conspecific. Nematodes resembling Vampyronema, collected from two genera of Sphingidae in Guadeloupe are characterised by extremely long stylets, equal to ca 37% of the body length, and may represent a new genus. Noctuidonema from four species of Spodoptera (Noctuidae) are conspecific. However, a somewhat different Noctuidonema from the noctuid Pseudaletia unipuncta may represent a new species, based primarily on its shorter stylet length. Simple spicule structure, a smaller V percentage, and a shorter stylet in Vampyronema are characters that best define its differences from Noctuidonema. Nematodes on the noctuids Anicla infecta and Eulepidotis addens probably represent two new species of Vampyronema. There was no clear differentiation between nematodes on the noctuids Mocis disseverans, M. latipes, Agrapha oxygramma and Orthodes crenulata, and they are all probably conspecific with V.dibolia. Thus far, Noctuidonema has been found only on the trifine noctuids Spodoptera and Pseudaletia, whereas Vampyronema has been found on both trifine and quadrifine noctuids. We found evidence for sequential evolution, but not co-evolution, between these ectoparasitic nematodes and their lepidopteran hosts.


Author(s):  
Francisco Brusa ◽  
Cristina Damborenea

We describe a new genus anda newspecies of Polycladida,Namyhplana henriettae(Platyhelminthes, Euplanidae), which lives associated with the tubes of the bivalveBankia martensiin the fjords of the South Pacific Ocean in Chile. This species is characterized by a ribbon-like body, light brown colour, anterior region devoid of pigment, few eyes, no tentacles, pharynx in the anterior region of the body with few folds, independent gonopores anterior to the medial body line, seminal vesicle strongly muscularized, digitiform penian papilla oriented posteroanteriorly, a curled vagina, and a large Lang's vesicle ventral to the intestine. A phylogenetic analysis of the Euplanidae, based on morphological characters, is presented. With the dataset used, the family Euplanidae does not seem to be a monophyletic group. The new species is closely related toTaenioplana teredini(also discussed here) which presents life-habit characteristics that are similar to those of the new species.


2020 ◽  
Vol 96 (2) ◽  
pp. 637-637
Author(s):  
Karla D. A. Soares ◽  
Marcelo R. de Carvalho

The genus Scyliorhinus is part of the family Scyliorhinidae, the most diverse family of sharks and of the subfamily Scyliorhininae along with Cephaloscyllium and Poroderma. This study reviews the phylogenetic relationships of species of Scyliorhinus in the subfamily Scyliorhininae. Specimens of all Scyliorhinus species were examined as well as specimens of four of the 18 species of Cephaloscyllium, two species of Poroderma, representatives of almost all other catshark (scyliorhinid) genera and one proscylliid (Proscyllium habereri). A detailed morphological study, including external and internal morphology, morphometry and meristic data, was performed. From this study, a total of 84 morphological characters were compiled into a data matrix. Parsimony analysis was employed to generate hypotheses of phylogenetic relationships using the TNT 1.1. Proscyllium habereri was used to root the cladogram. The phylogenetic analysis, based on implied weighting (k = 3; 300 replications and 100 trees saved per replication), resulted in three equally most parsimonious cladograms with 233 steps, with a CI of 0.37 and an RI of 0.69. The monophyly of the subfamily Scyliorhininae is supported as well as of the genus Scyliorhinus, which is proposed to be the sister group of Cephaloscyllium. The phylogenetic relationships amongst Scyliorhinus species are presented for the frst time.


Nematology ◽  
2018 ◽  
Vol 20 (8) ◽  
pp. 781-794 ◽  
Author(s):  
Phougeishangbam Rolish Singh ◽  
Alliance Nyiragatare ◽  
Toon Janssen ◽  
Marjolein Couvreur ◽  
Wilfrida Decraemer ◽  
...  

Summary Pratylenchus rwandae n. sp., a root-lesion nematode associated with maize (Zea mays) from Rwanda, is described. This new species is characterised by females of medium to large size (469-600 μm) having an offset lip region with three annuli, stylet of 13-14.6 μm long with prominent rounded or anteriorly concave knobs, short to long pharyngeal gland overlap of 10.9-34.7 μm long, variable number of lateral lines (4-14) in different regions of the body, lateral field consisting of smooth bands, oval to slightly rounded spermatheca, vulva located at 75-80% of the total body length, post-vulval uterine sac (PUS) 20.3-26.5 μm long, tail subcylindrical to conoid with variation in tail tip shape from rounded to truncate or indented with generally smooth tip, and male unknown. The results of the phylogenetic analyses based on sequences of the D2-D3 expansion regions of 28S, partial 18S and ITS of rDNA and COI of mitochondrial DNA indicate that P. rwandae n. sp. is a species within the Penetrans group and appears as a sister species to a group comprising P. convallariae, P. dunensis, P. fallax, P. oleae, P. penetrans, P. pinguicaudatus, and three other unidentified species. A comparison of important morphological characters of the closely related Pratylenchus spp. is provided.


1963 ◽  
Vol 41 (7) ◽  
pp. 1179-1183 ◽  
Author(s):  
Joseph E. Alicata

Third-stage larvae of the rat lungworm, Angiostrongylus cantonensis, can be differentiated from those of the cat lungworm, Anafilaroides rostratus, on the basis of shorter body length, shorter esophagus, and in some cases on the position of the genital primordium. In A. cantonensis the length of the body is 460 to 510 μ and the length of the esophagus, including the buccal cavity, is 171 to 198 μ. The genital primordium is 120 to 135 μ from the anal opening. In A. rostratus the length of the body is 545 to 655 μ, and that of the esophagus is 218 to 246 μ. The genital primordium is 37 to 153 μ from the anal opening. The infective larvae of A. rostratus do not migrate to the central nervous system as do those of A. cantonensis. The larvae of A. rostratus have been found to re-encyst in the liver of rats and mice which serve as paratenic hosts.


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