PubMed HealthSearch

SEARCH · PubMed Health

Results for “Polylepis”

Explore indexed PubMed citations for clinical trials, systematic reviews and public health research. Read source abstracts and follow each citation to its original PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

9 recordsLinked to original sources

Snake venom toxins. The amino acid sequence of toxin Vi2, a homologue of pancreatic trypsin inhibitor, from Dendroaspis polylepis polylepis (black mamba) venom.

The amino acid sequence of venom component Vi2, a protein of low toxicity from Dendroaspis polylepis polylepis venom was determined by automatic sequence analysis in combination with sequence studies on tryptic peptides. This protein, the most retarded fraction of this venom on a cation-exchange resin, is a homologue of bovine pancreatic trypsin inhibitor consisting of a single chain of 57 amino acid residues containing six half-cystine residues. The active site lysyl residue of bovine trypsin inhibitor is conserved in Vi2 although large differences are found in the rest of the molecule.

Amino Acid Sequence

Snake venom toxins. Purification and properties of low-molecular-weight polypeptides of Dendroaspis polylepis polylepis (black mamba) venom.

Twelve low-molecular-weight proteins, of which eleven have subcutaneous LD50 values of less than 40 mug/g mouse, were purified from Dendroaspis polylepis polylepis venom. Ion-exchange chromatography on Amberlite CG-50 and ion-exchange chromatography on carboxymethyl-cellulose and/or phosphocellulose was used for the purification. The amino-terminal sequences of these proteins were determined and used to indicate that five groups of low-molecular-weight polypeptides are to be found in black mamba venom. Proteins from two of these groups which have low toxicity individually, when used together show synergism, in that their toxicity in combination is greater than the sum of their individual toxicities.

Amino Acid Sequence

Snake venom toxins. The amino-acid sequence of a short-neurotoxin homologue from Dendroaspis polylepis polylepis (black mamba) venom.

The third most abundant component of black mamba venom, named FS2, was sequenced with the aid of sequenator studies and peptides derived by tryptic and chymotryptic digestion. Cyanogen bromide digests provided extra information to support the proposed structure. This protein is a homologue of the short neurotoxins of snake venom, but is much less toxic. Its structure is quite different from both neurotoxins and the other mamba proteins, called angusticeps types (neurotoxin homologues). Comparison of the known angusticeps-type toxins from mamba venom with mamba neurotoxins and each other leads to proposals that these proteins of low toxicity are inventions of the group of mambas and that three different, as yet unknown, functions will be associated with the three subgroups that are discernable.

Amino Acid Sequence

Snake venoms. The amino-acid sequence of trypsin inhibitor E of Dendroaspis polylepis polylepis (Black Mamba) venom.

Trypsin inhibitor E from black mamba venom comprises 59 amino acid residues in a single polypeptide chain, cross-linked by three intrachain disulphide bridges. The complete primary structure of inhibitor E was elucidated. The sequence is homologous with trypsin inhibitors from different sources. Unique among this homologous series of proteinase inhibitors, inhibitor E has an affinity for transition metal ions, exemplified here by Cu2 and Co2+.

Amino Acid Sequence

Genome-wide SNP data support species boundaries in sympatric Polylepis Ruiz & Pav. (Rosaceae) species from Bolivia and Ecuador.

Species delimitation in the South American genus Polylepis is notoriously challenging due to high morphological similarity and phenotypic plasticity, likely driven by hybridization and gene flow. Previous phylogenetic studies suggested that genetic structure aligns more strongly with geography than with taxonomy, questioning existing species concepts and hampering conservation efforts. We used double-digest RAD sequencing (ddRADseq) to generate genome-wide SNP data for 11 Polylepis species sampled across multiple localities in Bolivia and Ecuador. Population genetic analyses, phylogenetic inference, and network approaches were combined to assess whether genetic structure aligns more closely with taxonomy or geography. Morphologically defined species formed largely cohesive genetic lineages across regions, with species identity explaining substantially more genetic variation than locality. While localized admixture and reticulation were detected among closely related taxa, widespread species showed strong genetic cohesion and clear separation from congeners. Our results indicate that the sampled Polylepis species from Bolivia and Ecuador maintain distinct genetic identities despite localized signals consistent with gene flow. This genome-wide support for current taxonomy highlights Polylepis as a valuable model for studying speciation under gene flow and indicates that multiple geographic sampling will be essential in reconstructing a robust phylogeny of the genus, with important implications for conservation planning in Andean montane forests.

Bolivia

Preliminary study of the intense sympathetic discharge induced centrally after lateral ventricular administration of whole venom of Dendroaspis polylepis.

Lateral ventricular administration of 100 microgram of Dendroaspis polylepis venom is cats consistently produced a marked rise in arterial blood pressure, heart rate dilatation of pupils and piloerection. This intense central sympathetic discharge occurred after a latent period of 11.7 +/- 0.72 min. Bilateral adrenelectomy abolished the sympathetic discharge showing that central release of catecholamines from the adrenal medulla may play an important role in elicting the cardiovascular response.

Adrenalectomy

[Occurrence of Salmonella in healthy snakes and snake cadavers- isolation of a new Salmonella species belonging to the sub-genus IV (S. IV 18:Z36, Z38:-) (AUTHOR'S TRANSL)].

Forty-seven isolation attempts performed with 20 fecal samples of exotic snakes yielded 27 Salmonella species belonging to the sub-genus I-IV. The majority of isolates (78.7%), however, was identified as sub-genus III (Arizona). The snakes under study were hold captured for less than one year (one part) or for longer than one year. Bacteriological investigations of the 7 snakes studied, repeated 7 to 21 months thereafter, revealed uniformly other Salmonella species in comparison to those found at primary examination. Necropsy investigations were performed with materials from 3 snakes. One Salmonella species (Arizona) was isolated from the colon of one snake presenting with massive necrotic enteritis. The results with blood, bile and other colon sections were negative. Several Salmonella species were found in the colon of two other snakes presenting with infiltrative and necrotic changes in the organs, but without any pathologic finding in the intestinal tract. A new Salmonella species belonging to the sub-genus IV (S. IV 18:Z36, Z38:-) was recovered from fecal sample of a Black Mamba (Dendroaspis polylepis) and another Cascabel snake (Crotalus durissus terrificus).

Animals