Theileria parva PCR detection kit, Camel, DNA
- Known as:
- Theileria parva PCR test kit quantification reagent, Camel, Desoxyribonucleic acid
- Catalog number:
- VET-CA003-96D
- Product Quantity:
- 48rxs
- Category:
- -
- Supplier:
- Bioinge
- Gene target:
- Theileria parva PCR detection kit Camel DNA
Ask about this productRelated genes to: Theileria parva PCR detection kit, Camel, DNA
- Gene:
- PARVA NIH gene
- Name:
- parvin alpha
- Previous symbol:
- MXRA2
- Synonyms:
- FLJ12254, FLJ10793
- Chromosome:
- 11p15.3
- Locus Type:
- gene with protein product
- Date approved:
- 2001-04-26
- Date modifiied:
- 2018-03-02
Related products to: Theileria parva PCR detection kit, Camel, DNA
Related articles to: Theileria parva PCR detection kit, Camel, DNA
- Species of are soil-borne fungi that are distributed in temperate, sub-tropical and tropical regions of the world. Very little is known regarding the biology of these fungi that are mostly considered as saprobes, but there have also been reports of pathogenicity in some cases. Prior to this study, 46 species of were known based on DNA sequence comparisons and phylogenetic analyses. Only seven of those species have been reported from China, some of which were associated with diseases of woody plants. In this study, soil samples were collected from natural forests and plantations in eight provinces (autonomous regions) of northeastern, central, southeastern, southwestern, and southern regions of China. A total of 914 soil samples were analysed, resulting in 407 isolates. They were identified based on morphological characteristics and phylogenetic analyses of DNA sequence data for the , , , and ITS regions. This resulted in the identification of eight known, and 22 novel species. spp. tended to be widely distributed in forest soils across a wide range of climatic zones. The species diversity in warm areas was higher than in cooler areas. Of the 68 species now recognised and verified based on DNA data, these fungi are known from more than 25 countries, of which 57 species were isolated from soils, 18 from plant tissues, and nine from both soils and plant tissues. Species with wide geographic distributions including putative pathogens such as, and that have been found on multiple plant species, while others are confined to more limited niches. The exceptionally large number of new species found in this study suggests that species have been poorly sampled and that many more are likely to be found in warm and humid environments. Overall, this study provides a foundation for future investigations aimed at clarifying the evolutionary relationships, ecology, and pathology of this interesting and little understood genus. Zhou WW, Dong HB, Zhou HX, Crous PW, Wingfield MJ, Chen SF (2026). Forest soils: A species-rich habitat for . : 548-605. doi: 10.3114/persoonia.2026.56.09. - Source: PubMed
Publication date: 2026/06/10
Zhou W WDong H BZhou H XCrous P WWingfield M JChen S F - Pheidole parva Mayr (1865) is a small ubiquitous ant native to the Indomalayan region where it is considered a pest in healthcare facilities. This tramp ant was first reported outside its native range more than 100 years ago in the Seychelles Islands. Since then, it has been found in other areas of the Old World, where it was likely accidentally introduced via trading ships. In the 2000s, this ant was detected in Japan (2001), the Arabian Peninsula (2009), and recently in the Mediterranean island of Cyprus (2023) and Lebanon (2025). Here, we describe its first occurrence in North America, in the state of Florida where both Nearctic and Neotropical realms meet. Our findings are based on recent Pheidole parva specimens collected throughout the state, curated iNaturalist observations, Antweb data, and DNA barcoding based on the mitochondrial cytochrome oxidase subunit I (COI) gene. Among the 26 P. parva specimens analyzed from Florida, we found three different COI haplotypes. Two of them were also found in other introduced areas; however, one of the haplotypes has only been detected in a native population. The three haplotypes were distributed throughout the state with no clear geographical structure, consistent with multiple introductions and broad establishment of this non-native ant in Florida. - Source: PubMed
Publication date: 2026/07/21
Ascunce Marina SBooher Douglas BStoll Aaron CSan Juan AirlanLee AgnesPorter Sanford D - Despite doubts that have lasted for centuries, the carnivorous marsh pitcher plants of the genus Heliamphora can secrete their own hydrolytic digestive enzymes similar to those of other genera of carnivorous plants. The marsh pitcher plant (Heliamphora sp.) is a genus of carnivorous plant in which the production of endogenous enzymes for prey digestion is still dubious. In this study, we tried to elucidate the ability of prey digestion by the plant's own hydrolytic enzymes in H. parva, H. neblinae, and the hybrid H. heterodoxa × minor. Three Heliamphora taxa were fed on fruit flies, and pitcher fluids were analyzed using liquid chromatography-electrospray ionization-tandem mass spectrometry (LC-ESI-MS/MS), Western blots, and enzyme activity measurements for the presence of endogenous hydrolytic enzymes. Production of the enzymes in pitchers through ontogeny was also investigated. Asian pitcher plant Nepenthes truncata was used as a reference carnivorous plant. All investigated taxa produced plant-derived hydrolytic enzymes similar to those found in other carnivorous plant genera. The most important are aspartic protease, subtilisin-like protease, type III chitinase, β-1,3-glucanase, purple acid phosphatase, and GDSL esterase/lipase. Although some variability exists among studied taxa, in general, the activity of phosphatase and proteolytic enzymes was low and increased over time, irrespective of feeding status. Immunoblotting of aspartic protease showed that the abundance of the enzyme in pitcher fluid can accumulate developmentally without any prey stimuli. The microbial and prey-derived proteins were almost exclusively detected in fed samples. In conclusion, our study suggests that the species of the genus Heliamphora can be considered as holocarnivorous plants with the ability to produce their own endogenous hydrolytic enzymes, which, however, does not rule out the contribution of microbial digestion in their natural habitat. Moreover, their own digestive potential can be strongly diminished in nature due to the absence of a protective lid and high rainfall in some parts of the year, diluting the pitcher fluids. - Source: PubMed
Publication date: 2026/07/17
Pavlovič AndrejKalmusová TerezaChamrád IvoLenobel René - Topmouth gudgeon Pseudorasbora parva is a small invasive cyprinid fish widely distributed across Eurasia, including Türkiye. Although extensive, the available cytogenetic data from Asian populations is confined to standard karyotyping. Here we present the first molecular cytogenetic characterization of P. parva by analyzing the population from the Sakarya spring (Eskişehir Province, Türkiye). The aim was to examine the chromosomal organization and distribution of selected repetitive DNA sequences and this way to provide novel insights into karyotype evolution within Gobionidae and evaluate the utility of cytogenetic markers for freshwater management of this invasive species. To that end, we combined conventional karyotyping, C-banding, fluorescent and silver-nitrate staining with fluorescence in situ hybridization (FISH) using probes for tandemly repeated genes for ribosomal RNA (18S and 5S rDNA), small nuclear RNA (U1 and U2 snDNA), and telomeric (TTAGGG) sequences. Analyzed individuals (N = 10) showed a diploid chromosome number of 2n = 50 with the karyotype being composed of 18 metacentric, 26 submetacentric, and 6 subtelocentric chromosomes (FN = 94), and with constitutive heterochromatin confined to pericentromeric regions. Silver staining as well as Chromomycin A and 18S rDNA FISH probe revealed invariably a single pair of major 45S rDNA cluster on the short arms of the subtelocentric pair 23, with notable size heteromorphism between the homologs. 5S rDNA occupied (peri)centromeric regions of the submetacentric pair 10 and short arms of the subtelocentric pair 25, whereas the U1 and U2 snDNA clusters were co-localized on the short arms of subtelocentric pair 24. The telomeric probe marked chromosomal ends only. The Turkish P. parva population exhibits a conserved karyotype but the heterochromatin and repetitive DNA patterns allow to infer its closer relationship to European lineages. These findings provide new insights into Gobionidae genome organization and the chromosomal evolution and reveal the possible utility of cytogenetics in monitoring the dispersal of populations of invasive freshwater fishes. - Source: PubMed
Publication date: 2026/07/09
Arslan AtillaArslan EmineÖzçay Ekşi BüşraAlpaslan ZaferSember Alexandr - A new species, , in the sea cucumber family Holothuriidae, plus two new holothuroid records from the Pakistan coastal waters are here described. The new species differs from all known species of in possessing a cucumariid-type of calcareous ring accompanied by slender, straight, terminally forked rods in the body wall, unlike the thick, usually well-branched rods of other species of the genus, setting it apart from all known congenerics. Of the two additional records one is another holothuriid herein attributed to the Indo-West Pacific species () Semper, 1868. It is suspected to be a juvenile of this species in possessing, in addition to the perforated rods and plates in the body wall, well-formed tables, suspected to be a juvenile character, as pertains in its consubgenerics (S.) Krauss (in Lampert, 1885) and . (.) Ludwig, 1883. The third species is a thyonid, Thandar, 2017, belonging to the family Thyonidae ( Smirnov 2012), originally described from Kerala, India. - Source: PubMed
Publication date: 2026/01/21
Ahmed QuratulanThandar Ahmed SAli Qadeer MohammadShaikh Iqra