Multiple ovulation and embryo transfer in Indian buffaloes (Bubalus bubalis)

1990 ◽  
Vol 33 (1) ◽  
pp. 289 ◽  
Author(s):  
A.K. Misra ◽  
B.V. Joshi ◽  
P.L. Agrawala ◽  
R. Kasiraj ◽  
S. Sivaiah ◽  
...  
Author(s):  
Sumit Singhal ◽  
Shiv Prasad ◽  
Rajesh Verma ◽  
H.P. Gupta ◽  
J.K. Prasad

Background: Limited elite buffalo population need to be propagated at faster rate to sustain the dairy industry in India. Faster propagation could be achieved through embryo transfer technology. Low serum progesterone concentrations during the start of superstimulatory treatment is major factor that hampers the success of multiple ovulation embryo transfer (MOET) in buffaloes. This study evaluated the effect of GnRH pretreatment before superovulatory regimen on progesterone profile, superovulation and correlation of progesterone with superstimulatory parameter in Murrah buffaloes. Methods: Buffaloes (n=27) were superstimulated using 600 mg Folltropin and divided into three groups on basis of pretreatment: Group I and group II were pretreated with GnRH @ 10 µg and 06 µg, respectively while no pretreatment was subjected in group III (control). Progesterone hormone concentration, superovulatory response, ovulation rate, embryo recovery were recorded. Result: Our study revealed that superovulatory response was non-significantly different in all three groups and ranged from 6-8 in terms of number of corpus luteum (CL). Average number of recovered embryos in this study was nearly 2.0. A positive correlation between progesterone concentrations at the initiation of FSH treatment with number of CL and embryo recovery was observed. The study indicated that GnRH pretreatment before superstimulation improve the serum progesterone concentration, superovulatory response and embryo recovery in Murrah buffaloes. 


2007 ◽  
Vol 6 (sup2) ◽  
pp. 652-654 ◽  
Author(s):  
N.A.T. Carvalho ◽  
E.M. Nagasaku ◽  
F.S. Vannucci ◽  
L.M. Toledo ◽  
J.B.P. Carvalho ◽  
...  

1999 ◽  
Vol 52 (1) ◽  
pp. 1-10 ◽  
Author(s):  
A.K. Misra ◽  
M. Mutha Rao ◽  
R. Kasiraj ◽  
N.S. Ranga Reddy ◽  
H.C. Pant

1989 ◽  
Vol 49 (2) ◽  
pp. 163-169 ◽  
Author(s):  
G. Teepker ◽  
C. Smith

ABSTRACTRepeated cloning of bovine embryos by nuclear transfer, producing large clones of monozygous animals, may be possible in the future. Initially, clones could be tested and the best one selected and spread over the commercial population by embryo transfer. Further genetic improvement could be obtained by rebreeding a number of the best clones to produce a new set of clones. However, the testing and selection systems to pick the best clone (for short-term clonal response) and to pick clones with the best breeding values (for long-term genetic response) are different. The objective of this study was to derive a system which achieves both high clonal and high genetic responses. An adult MOET (multiple ovulation and embryo transfer) scheme with 40 breeding males and 40 breeding females per generation (cycle) was used to maintain adequate genetic variation for continued genetic response. For a fixed set of testing facilities and a given family structure initial clonal response is maximized by testing several members per clone. Long-term genetic response is usually greatest when testing one member per clone. Compromises to obtain both high clonal response and high genetic responses were from 95 to 100% efficient.


2012 ◽  
Vol 24 (7) ◽  
pp. 932 ◽  
Author(s):  
Charlène Rico ◽  
Laurence Drouilhet ◽  
Pascal Salvetti ◽  
Rozenn Dalbiès-Tran ◽  
Peggy Jarrier ◽  
...  

High between-animal variability in the number of embryos produced by multiple ovulation and embryo transfer (MOET) and ovum pick-up and in vitro production (OPU–IVP) methods remains a major limit to the development of embryo biotechnologies in cattle. The measurement of anti-Müllerian hormone (AMH) endocrine concentrations in cows can help to predict their follicular and ovulatory responses to gonadotrophin treatment. The present study aimed to provide practical information for a simple prognostic method based on AMH measurement in Holstein cows. Accurate AMH concentrations could be measured with ELISA in blood or plasma. In cows undergoing repeated OPU protocols over 1 year, the AMH concentrations measured in plasma samples collected before each gonadotrophin treatment were found to be highly repeatable and were tightly correlated with follicular responses. From data obtained at both an experimental station and farm settings, it was possible to propose AMH cut-off values to identify low-responding cows. Gonadotrophin-stimulated cows producing fewer than 15 large follicles at oestrus and fewer than 10 embryos in MOET protocols could be discarded efficiently with plasma AMH concentrations below 87 and 74 pg mL–1, respectively. In conclusion, we propose a prognostic method based on a single AMH measurement to improve the results of embryo biotechnologies.


2017 ◽  
Vol 149 ◽  
pp. 11-15 ◽  
Author(s):  
Begum Fatema Zohara ◽  
Azizunnesa ◽  
Md. Faruk Islam ◽  
Md. Golam Shahi Alam ◽  
Farida Yeasmin Bari

1996 ◽  
Vol 5 (5) ◽  
pp. 491-501 ◽  
Author(s):  
Esa A. Mäntysaari ◽  
Terhi Thuneberg-Selonen ◽  
Kaija Hyppänen ◽  
Jarmo Juga

In 1990 the organizations responsible for Finnish dairy breeding established an open nucleus multiple ovulation and embryo transfer (MOET) breeding program called ASMO. The aim was, besides to test effectiveness of MOET, to improve the protein to fat ratio in milk produced by Finnish Ayrshires but without sacrificing the progress in protein yield. The relative weights of traits were such that equal importance was assigned to protein % and protein yield. Negative weight was assigned to fat % to ensure it remained unaltered. The MOET work continued until 1994 after which the performance of selected animals has been monitored. During the five years the scheme operated, 276 cows were flushed for embryos, and 2751 embryos were recovered, of which 1810 were transferable. More than 1600 embryos were transferred to recipients, and 813 calves were born. Eighty bull calves were sold for the artificial insemination test scheme. In December 1995 the first 125 ET daughters were evaluated with the national animal model program. Their mean estimated breeding values (EBVs) were +0.13 for protein % and -0.18 for fat % compared with the genetic base of progeny tested sires born in 1986-1988, and the protein yield EBVs were 12 kg above the genetic base. Despite the efficiency of selection, the program was discontinued in 1994. Due to the difficulty of maintaining sufficient control over donor animals, there were fewer than expected embryos per flush and also too few flushes per donor.


2015 ◽  
Vol 27 (1) ◽  
pp. 264
Author(s):  
B. Lahoz ◽  
J. L. Alabart ◽  
M. J. Cocero ◽  
D. Monniaux ◽  
S. Fabre ◽  
...  

The performance of MOET (multiple-ovulation embryo transfer) programs in sheep is limited, mainly due to variable ovarian responses to FSH superovulation treatments. In several mammalian species, anti-Müllerian hormone (AMH) has been demonstrated to be a good predictor of the ovarian follicle population able to respond to gonadotropins. Therefore, we aimed to evaluate its usefulness in ovine MOET programs. With this goal, two MOET trials involving 24 adult ewes in total were performed. Each ewe received a fluorogestone acetate sponge (Sincropart 30 mg, CEVA Animal Health SA, Barcelona, Spain) which was replaced by a new one after 6 days (T–4). Four days later (T0), the first FSH injection (Folltropin-V, Minitub Ibérica SL, Tarragona, Spain) of a superovulation treatment consisting in 280 IU of FSH administered in 8 decreasing doses was applied. Blood samples were taken at T–4 and T0 using lithium heparin tubes for AMH measurement. Ewes were inseminated 51 h after sponge removal. Eight days after sponge removal, ovulation rate was recorded and embryo recovery was carried out under general anaesthesia. After morphological evaluation, 2 embryos were transferred to each recipient previously synchronized. The plasma concentrations of AMH were determined using the AMH equine ELISA kit (AnshLab, Webster, TX, USA). The sensibility of the assay was 27.8 pg mL–1, and the intra-assay coefficient of variation was 4.8%. Relationships between the AMH concentration of each animal and the number of corpora lutea (CL), embryo recovered and lambs born per donor ewe were tested using the Pearson correlation coefficient. Normality of the variables was assessed by Kolmogorov–Smirnov test. The plasma AMH concentrations at T–4 were highly correlated with those at T0 (r = 0.95; P < 0.01), so both sampling times could be used indistinctly. The plasma AMH concentration at T0 was highly variable between animals, ranging from 0 to 309.1 pg mL–1 (mean ± s.e.m.: 98.4 ± 18.4 pg mL–1). Similarly, the number of CL ranged from 2 to 29 (12.2 ± 1.5), recovered embryos from 0 to 17 (7.6 ± 1.2), and lambs born per donor and session from 0 to 13 (4.5 ± 0.9). The AMH concentration at the beginning of the FSH treatment (T0) was highly correlated with the total number of CL (r = 0.70; P < 0.01), but significance was not attained for AMH with the other variables. The number of CL was also correlated with the number of recovered embryos (r = 0.69; P < 0.01) and lambs born (r = 0.58; P < 0.01). In conclusion, AMH concentrations measured in blood plasma before the FSH treatment could be used to predict the number of CL per donor ewe, and so to improve the efficiency of MOET programs. Further studies are necessary to assess the individual repeatability of a given ewe from session to session as well as the relationship of AMH with other embryo-related variables.


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