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1.
Genet Mol Res ; 14(4): 16966-74, 2015 Dec 15.
Article in English | MEDLINE | ID: mdl-26681043

ABSTRACT

Amplified fragment length polymorphism (AFLP) analysis was used to evaluate DNA polymorphism in Pilosocereus gounellei with the aim of differentiating samples grown in different Brazilian semiarid regions. Seven primer pairs were used to amplify 703 AFLP markers, of which 700 (99.21%) markers were polymorphic. The percentage of polymorphic markers ranged from 95.3% for the primer combination E-AAG/M-CTT to 100% for E-ACC/M-CAT, E-ACC/M-CAA, E-AGC/M-CAG, E-ACT/M-CTA, and E-AGG/M-CTG. The largest number of informative markers (126) was detected using the primer combination E-AAC/M-CTA. Polymorphism of the amplified DNA fragments ranged from 72.55% (in sample from Piauí State) to 82.79% (in samples from Rio Grande Norte State), with an average of 75.39%. Despite the high genetic diversity of AFLP markers in xiquexique, analysis using the STRUCTURE software identified relatively homogeneous clusters of xiquexique from the same location, indicating a differentiation at the molecular level, among the plant samples from different regions of the Caatinga biome. The AFLP methodology identified genetically homogeneous and contrasting plants, as well as plants from different regions with common DNA markers. Seeds from such plants can be used for further propagation of plants for establishment of biodiversity conservation units and restoration of degraded areas of the Caatinga biome.


Subject(s)
Amplified Fragment Length Polymorphism Analysis , Cactaceae/genetics , Ecosystem , Genetic Markers , Genetics, Population , Polymorphism, Genetic , Brazil , Genetic Variation
2.
Genet Mol Res ; 12(2): 1155-67, 2013 Apr 12.
Article in English | MEDLINE | ID: mdl-23661440

ABSTRACT

Genetic diversity and structure were analyzed in 10 accessions belonging to Banco Ativo de Germoplasma de Capsicum located at Federal University of Piauí in northwestern Brazil that receives pepper samples grown in community gardens in various regions and Brazilian states. Selections were made from seeds of C. chinense (4 accessions), C. annuum (5 accessions), and C. baccatum (1 accession). Samples consisting of leaves were collected from 4-10 plants of each accession (a total of 85 plants). Native polyacrylamide gel electrophoresis was used to identify α- and ß-esterase polymorphisms. Polymorphism was clearly detected in 5 loci. Sixteen alleles were found at 5 α/ß-esterase loci of the three Capsicum species. In the C. chinense samples, the highest HO and HE values were 0.3625 and 0.4395, respectively, whereas in C. annuum samples, HO and HE values were 0.2980 and 0.3310, respectively; the estimated HO and HE values in C. chinense samples were higher than those detected in C. annuum samples. A deficit of homozygous individuals was found in C. chinense (FIS = -0.6978) and C. annuum (FIS = 0.7750). Genetic differentiation between C. chinense and C. annuum at these loci was high (FST = 0.1867) indicating that C. chinense and C. annuum are genetically structured species for α/ß- esterase isozymes. The esterase analysis showed high genetic diversity among the C. chinense and C. annuum samples and very high genetic differentiation (FST = 0.6321) among the C. chinense and C. annuum samples and the C. baccatum accession.


Subject(s)
Capsicum/genetics , Esterases/genetics , Polymorphism, Genetic , Alleles , Capsicum/metabolism , Esterases/classification , Esterases/metabolism , Genetic Loci , Genotype , Isoenzymes , Phenotype , Phylogeny
3.
Arq. bras. med. vet. zootec ; 60(6): 1439-1446, dez. 2008. graf, tab
Article in Portuguese | LILACS | ID: lil-506555

ABSTRACT

Seis cães adultos, de raças e sexos variados, com peso de 13,3±3,4kg (média±DP), foram utilizados no estudo. Os animais foram tranqüilizados com acepromazina (0,1mg/kg, IV) e, após 30 minutos, foram aleatoriamente submetidos à anestesia epidural com um dos seguintes tratamentos: lidocaína 2 por cento 0,25ml/kg (controle); neostigmine 0,01mg/kg+lidocaína (NEO); metadona 0,3mg/kg+lidocaína (MET). Todos os animais foram submetidos aos três tratamentos com intervalo mínimo de uma semana. Foram mensuradas as freqüências cardíaca (FC) e respiratória (FR), a pressão arterial sistólica (PAS), o tempo para a perda do reflexo interdigital, a duração e a altura do bloqueio sensitivo, durante um período de 90 minutos. Não houve diferença significativa entre os tratamentos nos valores de FC, PAS e FR, bem como na duração do bloqueio sensitivo e no tempo para a perda do reflexo interdigital. No grupo MET, houve diminuição de FC dos 30 aos 90 minutos em relação ao valor basal. Bloqueio sensitivo mais cranial também foi observado em MET. A associação de neostigmine ou metadona não prolongou o período hábil de anestesia epidural produzido pela lidocaína em cães. A metadona, mas não o neostigmine, parece estender mais cranialmente o bloqueio epidural pela lidocaína.


Six mature mongrel dogs of both genders, weighing 13.3±3.4kg (mean±SD) were used in the present research. Thirty minutes after premedication with intravenous acepromazine (0.1mg/kg, IV), dogs were randomly assigned to receive epidural administration of one of following three treatments: 2 percent lidocaine 0.25ml/kg (control), or neostigmine 0.01mg/kg plus lidocaine (NEO), or methadone 0.3mg/kg plus lidocaine (MET). All dogs received all treatments in a cross-over design with at least one-week interval. Heart rate (HR), respiratory rate (RR), systolic arterial pressure (SAP), time to loss of pedal withdrawal reflex, duration of epidural anesthesia, and cranial spread of epidural anesthesia were evaluated for 90 minutes. No differences among treatments in HR, RR, SAP, duration of anesthesia, and time to loss of pedal withdrawal reflex were found. In MET, HR decreased from 30 to 90 minutes compared to baseline and there was a higher cranial spread of epidural anesthesia than in controls and NEO animals. Neostigmine or methadone did not prolong epidural anesthesia with lidocaine in dogs. Methadone, but not neostigmine, appeared to result in more cranial spread of epidural anesthesia with lidocaine.


Subject(s)
Animals , Male , Female , Dogs , Anesthesia, Epidural/methods , Anesthesia, Epidural/veterinary , Dogs , Lidocaine/administration & dosage , Lidocaine/adverse effects , Methadone/administration & dosage , Methadone/adverse effects , Neostigmine/administration & dosage , Neostigmine/adverse effects , Diagnostic Techniques, Cardiovascular/veterinary
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