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1.
Dev Growth Differ ; 65(9): 565-576, 2023 Dec.
Artigo em Inglês | MEDLINE | ID: mdl-37603030

RESUMO

Temperature sex determination (TSD) in reptiles has been studied to elucidate the mechanisms by which temperature is transformed into a biological signal that determines the sex of the embryo. Temperature is thought to trigger signals that alter gene expression and hormone metabolism, which will determine the development of female or male gonads. In this review, we focus on collecting and discussing important and recent information on the role of maternal steroid hormones in sex determination in oviparous reptiles such as crocodiles, turtles, and lizards that possess TSD. In particular, we focus on maternal androgens and estrogens deposited in the egg yolk and their metabolites that could also influence the sex of offspring. Finally, we suggest guidelines for future research to help clarify the link between maternal steroid hormones and offspring sex.


Assuntos
Lagartos , Tartarugas , Animais , Masculino , Feminino , Estrogênios , Androgênios , Temperatura , Processos de Determinação Sexual , Tartarugas/genética , Esteroides , Diferenciação Sexual
2.
Trop Anim Health Prod ; 53(6): 550, 2021 Nov 20.
Artigo em Inglês | MEDLINE | ID: mdl-34800206

RESUMO

Increasing polyunsaturated or long-chain fatty acids in meat for human consumption improves both nutritional quality and consumer perception. The increase could occur through the addition of rich sources of omega-3 fatty acids (such as flaxseed or flaxseed oil) to the animal diet. The aim of this study was to evaluate the effects of dietary supplement with two presentations of flax (crushed seeds or oil) on the change of FA content in two cuts of caiman meat (tail and neck). We measured fatty profile in two different caiman meat cuts (neck and tail) from 30 animals (total length 96.7 ± 4.9 cm, snout-vent length 47.8 ± 3 cm, weight 4.2 ± 0.6 kg), raised in individual enclosures, fed three a week for 50 days with crushed chicken head and a dry food formulated for these reptiles in a 70/30 ratio (C, n = 10), control diet with 10% crushed flaxseed (FS, n = 10), and control diet with 10% flaxseed oil (FO, n = 10), while the remaining days animals were fed the control diet. Meats from animals fed both enrichment diet (FS and FO) showed an increase of C18:3n-3 and ΣUFA with respect to control diet. Although both enriched diets raised the levels of C18:3n-3, the neck showed higher values than the tail. We observed that the neck is more susceptible than the tail to be improved by FO, which could suggest that it is more beneficial to consume neck meat. In order to be implemented in caiman farms, flaxseed oil is more expensive than seed, but more effective, easier to manage, and is practical for application on caiman farms.


Assuntos
Jacarés e Crocodilos , Linho , Ração Animal/análise , Animais , Dieta/veterinária , Suplementos Nutricionais , Ácidos Graxos , Óleo de Semente do Linho , Carne/análise
3.
Food Chem ; 357: 129755, 2021 Apr 08.
Artigo em Inglês | MEDLINE | ID: mdl-33915468

RESUMO

The leather of Caiman latirostris is highly appreciated in the fashion industry and the meat is valued as an important food but its fat are usually discarded because it has no commercial value. However it is an alternative source of essential fatty acids and could be used for human consumption. The aim was to optimize the oil extraction from Caiman latirostris fat and to carry out the chemical and microbiological characterization for its use as food supplement. The oil obtained by fusion method contains fatty acids with high nutritional quality such as oleic acid (34%), linoleic acid (30%) and α-linolenic acid (2%). The atherogenicity index was 0.29 and the thrombogenicity index 0.47. The presence of mesophilic aerobic bacteria, coliform bacteria, Escherichia coli and Salmonella were not observed, and the oil is stable for 4 months at 25 °C and for at least 8 months in an inert atmosphere at 25 °C.

4.
Interciencia ; 34(6): 428-431, jun. 2009. ilus, tab
Artigo em Inglês | LILACS | ID: lil-630752

RESUMO

The effects of temperature on the growth of Caiman latirostris were investigated in order to evaluate the efficiency of food conversion at 29 and 33°C. Sixty-eight captive raised animals, two months old, taken from four nests, were used. All groups were maintained up to 70 or 72 days in similar environmental treatments except for temperature. Animals maintained at 33°C reached greater body mass (BM) and total length (TL) than those maintained at 29°C. A more efficient nutritional conversion rate was found in animals kept at 33°C. The increase of temperature could improve the amount of energy extracted from food, producing a more efficient FCR.


El efecto de la temperatura sobre el crecimiento de Caiman latirostris fue estudiado a fin de evaluar la eficacia de la conversión alimenticia en cautiverio a 29 y 33°C. Fueron utilizados 68 animales cautivos de dos meses de edad, provenientes de cuatro nidadas. Todos los grupos fueron mantenidos hasta por 70 o 72 días en tratamientos ambientales similares, a excepción de la temperatura. Los animales mantenidos a 33°C alcanzaron mayor peso y longitud total que aquellos mantenidos a 29°C. Una tasa de conversión alimenticia más eficiente fue encontrada en los animales criados a 33°C. El aumento de la temperatura podría mejorar la cantidad de energía extraída del alimento, produciendo un FCR más eficiente.


Para avaliação de um método econômico na criação em cativeiro de Jacaré-de-Papo-Amarelo (Caiman latirostris) estudio-se o consumo de ração, a taxa de conversão e o efeito da temperatura de cria no crescimento da espécie. Para este estudo foram utilizados 68 jacarés de dois meses de idade, nascidos de quatro ninhos coletados na natureza e incubados artificialmente. Durante o experimento os animais foram mantidos a duas temperaturas: 29ºC e 33ºC até 70 ou 72 dias. Como esperado, os animais mantidos a 33ºC mostraram maior taxa de crecimento (comprimento total e peso), e maior consumo de ração que aqueles mantidos a 29ºC. A taxa de conversão de alimento também foi mais efetiva quando a temperatura de cria foi maior. Concluí-se que o aumento da temperatura poderia melhorar a quantidade de energia extraída da ração, produzindo uma taxa de conversão mais eficiente.

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