The lambda integrase (lnt) is believed to bind to several arm and core sites of attP DNA in order to facilitate intasome formation. We have done systematic mutagenic analysis on all 5 arm sites and found that P1 is absolutely required for integration while P2 is not. We also found that all 3 P' arm sites(P'1, P'2, and P'3) are required for efficient integrative recombination. P'1, which is an important binding site for excision, also seems to be crucial for integration when preincubation of attP DNA with Int and IHF is performed before recombination. Preincubation assay revealed that preincubation with Int and IHF improved the efficiency of recombination of wild type attP DNA and demolished recombinations of P'1 mutant attP DNAs.
These studies were carried out to investigate optimal physological conditions for in vitro fertilization (IVF) of mouse ova. The unfertilized ova were obtained by superovulation from ICR mice of 4 to 6 weeks old. Tyrode's 280 solution was used as basal media, and pH and osmolality of basal media were adjusted with the supplementation of sodium bicarbonate and sodium chloride, respectively. The optimal pH, and osmolality of culture media and the optimum period of sperm preincubation were examined in fertilization in vitro of mouse ova and the subsequent culture in vitro of embryos. The pH range of media examined was designed from 6.5 to 7.5 with 0.2 interval and the range of osmolality from 250 to 370 mOsm with 20 interval, and the period of sperm preincubation examined was 30, 60, 120, and 180 minutes. The ova developed to 2-cell embryosafter 26hrs. of incubation with preincubated sperm were evaluated as in vitro fertilized ones. The results obtained were summarized as follows: 1. The percentage of in vitro fertilized ova was highest (64.7%) in media of pH 7.1 and lowest (38.0%) in pH 6.7. No significant difference in % fertilized ova was found from the media of pH 7.1 to 7.5. Compared with the result from pH 7.1 medium, the pollyspermy was increased signifciantly (p<0.05) in the media of pH over 7.5 and below 6.9;, and the % degenerated ova was significantly (p<0.05) increased in the media of pH below 6.9. 2. The percentage of in vitro fertilized ova was highest (69.4%) in media of osmolality 330 mOsm and lowest (47.9%) in osmolality 250 mOsm. No significant difference in % fertilized ova was found from the media of osmolality 310 to 350 mOsm. Compared with the result from osmolality 330 mOsm in medium, the polyspermy aws increased significantly(p<0.05) in the media of osmolality over 350 mosmol and blow 290 mOsm, and the % degenerated ova was significantly (P<0.05) increased in the media of osmolality below 290 mOsm. 3. The percentate of in vitro fertlilized ova was highest (62.7%) in media of period sperm preincubation 180 min. and lowest (40.4%) in sperm preincubation 30 minutes. No significant difference in % fertilized ova was found from the media of sperm preincubation 120 to 180 minutes. Compared with the result from sperm preincubation 180 minutes in medium, the polyspermy was low differ no significantly(P<0.05) in the media of period sperm preincubation, and the % degenerated ova was signifciantly(P<0.05) increased in the media of sperm presincubation below 60 minutes.
These studies were carried out to overcome 2-cell block and in vitro development to blastocysts in vitro fertilization of mouse embryos. The unfertilized ova were obtained by superovulation in ICR mice of 4 to 6 weeks old. Tyrode's 280 solution was used as basal media, and the pH range of media examined was designed from 6.5 to 7.5 with 0.2 interval and the range of osmolality from 250 to 370 mOsm with 20 interval, and the period of sperm preincubation examined was 30, 60, 120, and 180 minutes. The ova developed to 2-cell embryos after 26hrs of incubation with preincubated sperm were evaluatated as in vitro fertilized ones. The results obtained were summarized as follows: 1. The optimal ranges of pH and osmolality of culture media and of sperm preincubation time for in vitro development of in vitro fertilized ova to blastocyst were pH 7.1 to 7.3, 250 to 350 mosmol and 60 to 180 min, respectively. 2. With the media of pH 7.1, 310 mOsm and sperm preincubation period of 120min in another experiment of large sample size, the in vitro fertilized ova was found 66.5% and the in vitro development of in vitro fertilized ova to blastocyst was found 35.8%. From the above results it was concluded that the optimal conditions of pH and osmolality of the media for mouse IVF and embryo culture, and the period of sperm preincubation might be 7.1, 310 mOam and 120min, respectively.
Tsuzuki, Y.;Ino, K.;Kimura, S.;Tanaka, N.M.;Fujihara, N.;Koga, O.
Asian-Australasian Journal of Animal Sciences
/
v.4
no.2
/
pp.151-156
/
1991
Bovine in vitro fertilization experiment was carried out using ovary-derived follicular oocytes and frozen-thawed spermatozoa to determine the optimal preincubation time of spermatozoa and the insemination time for successful in vitro fertilization rate. The possibility of parthenogenetic cell division of unfertilized oocytes during culture without spermatozoa was also examined. There was no significant (p>0.05) difference in percent ratio of embryos developed to blastocyst stage between 0 and 3 h preincubation times of spermatozoa, showing a tendency to have higher percentage for 0 h of preincubation time. The 6 h insemination time seemed to be better for producing higher percentage of ova cleavage compared with those of 1 and 3 h treatments. Approximately 10% of unfertilized oocytes divided into 2 to 4-cell stage, and some of them cleaved to 5 up to 8-cells. The results obtained from this study suggested that 0 h of sperm preincubation time and 6 h of insemination time would be suitable for producing better in vitro fertilization rate of bovine oocytes. It is also likely that unfertilized bovine oocytes probably cleave to some cell stages with irregular divisions of the cells. On the one hand, considerable variation was also found in spermatozoa function among individual bulls.
This study was conducted to investigate the effects of preincubation time, concentration and exposure time of sperm on in vitro fertilization of porcine follicular oocytes rnatured in in vitro. The results obtained are as follows ; 1. Effect of preincuhation time for porcine sperm capacitation on in vitro fertilization in medium with heparin was investigated. Normal fertilization rate was highest in 15 min(26.4%). However, there were no significant differences among preincuhation times of 5~90 min, 2. Normal fertilization rates of sperm concentrations were 17.0~26.5%, and normal fertilization rate from l$\times$ l05cell /ml concentration was also higher than those of other sperm concentration. 3. Normal fertilization rates of sperm exposure time of 4, 8, 12, 16 and 20 hours were 6.1, 20.8, 27.8, 25.0 and 26.7%, respectively. Normal fertilization rate from sperm exposure time of 12 hours was also higher than that of other sperm exposure times.
The effect of preincubation on in vitro maturation and fertility were investigated using preovulatory oocytes with and without cumulus cells obtained from superovulated ouot-bred ICR mice. Oocytes were recovered from fully grown folicle at 10 hr after hCG administration. A part of oocytes recovered were treated with the solution of 0.1% hyaluronidase to remove cumulus cells. Both intact and treated oocytes were then incubated for 0 to 6hr in mT6 medium containing 0.3% BSA. After incubation for various times, a part of oocytes were subjected to the investigation of nuclear maturation and the remaining oocytes were used fro the induction of in vitro fertilization by adding them into medium containing capacitated mice epididymal spermatozoa. Above all, the percentage of preovulatory oocytes at the stage of metaphase II after preincubation for 0, 2, 4 and 6hr was 15.8, 36.4, 47.5 and 66.7%, respectively, suggesting the in vitro maturation of oocytes during their incubation. On the other hand, fertilizatin rate of oocytes preincubated for 0, 2, 4 and 6hr with and without cumulus cells were 41.0, 58.7, 68.7 and 75.6%, and 50.0, 45.1, 37.8 and 39.2%, respectively. No significant differences in fertilization rate between preovulatory oocytes preincubated for 6hr with cumulus cells and naturally ovulated were observed. These results suggest that cumulus cells take very important role in maturtion of oocytes in vitro. The precentage of preovulatory oocytes developed to 2-cell stage in vitro fertilization following preincubation for 0 to 6hr with and without cumulus cells ranged from 48.5 to 82.4% and 36.9 to 56.1%, respectively. Also, the rates of oocytes developed to blastocyst in vitro fertilization after preincubation for 0 to 6hr with and without cumulus cells were 28.1, 39.3, 42.5 and 44.0% and 12.5, 32.6, 24.4 and 15.5%, respectively. From these results, it could be said that fertility of preovulatory oocytes with cumulus cells could be improved to the level of that of naturally ovulated oocytes by adquate preincubation in vitro. Cumulus cells may, therefore, affect in vitro maturation, fertilization and following development of oocytes by influencing zona hardening.
The influence of ascorbic acid (Asc) and ferrous sulfate (Fe$^{2+}$) on capacitation, acrosome reaction and fertility in vitro was investigated in boar frozen-thawed spermatozoa with or without preincubation. The addition of 0-1.0 mM Fe$^{2+}$ to sperm suspensions during preincubation increase acrosome reaction (P<0.05) and oocyte penetration. These increase are also associated with addition of 0~0.5 mM Asc, but the penetration rates were higher in those without than with sperm preincubation. The addition of 0.1 mM Asc than 0.5 mM in medium with Fe$^{2+}$ were significantly (P<0.05) higher on acrosome reaction at 2 h after sperm preincubation. No significant differences, however, were observed in penetration rates among the concentrations of Asc. On the other hand, when preincubation medium containing the Asc was supplemented with 0.1mM Fe$^{2+}$, the percentage of spermatozoa acrosome-reacted were significantly (P<0.05) higher than in medium wothout Fe$^{2+}$, on the contrary, the penetration rate was significantly (P<0.05) low during in-vitro fertilization. These findings indicate some apparent effects of Fe$^{2+}$ or Asc addition on acrosome reaction and the fertilizing potential by sperm preincubation.
This study was conducted to examine the effect of several saccharides on the induction of capacitation and acrosome reaction (AR) and to examine the effects of mono and polysaccharides on the penetration activity of boar spermatozoa. Spermatozoa were inseminated in medium with fucose, galactose and mannose as monosaccharide, and fucoicIan. galactan and marman as polysaccharide. The penetration rates were significantly (p<0.05) lower in medium with galactose (40.6%), mannose (38.1%), fucose (41.6%) and fucoidan (36.6%) compared with control (56.7%). The rates of AR were increased (40.7 to 59.8%) by the preincubation periods prolonged from 0 to 4 hr (p<0.05). Similar tendencies were observed in AR when spermatozoa were treated with monosaccharides, but not significantly differ among the groups treated with different time of preincubation with some exception of galactose. When spermatozoa were treated with polysaccharides, the rates of AR were significantly (p<0.05) increased by preincubation time prolonged from 0 to 4 hr with an exception of fucoidan. In conclusion, the present study suggests that penetration rate of spermatozoa is higher in presence of polysaccharides than monosaccharides. Also, it may resume that the comparing to control, the all saccharides (L-fucose, D-galactose, D-mannose, fucoidan. galactan and mannan)-treated groups slightly increase the AR pattern as preincubation time prolonged.
This study was conducted to define the effect of addition of lysolecithin (LC) and 20% v/v rabbit serum to sperm preincubation medium on the induction of acrosome reaction (AR) an fertilizing ability in vitro of LG-added sperm. Ejaculated rabbit sperm from New Zealand White buck was washed once by centrifugation, then preincubated for 2 or 4 hrs in a chemically defined medium (DM), DM plus 20% rabbit serum or BSA-free DM plus 20% rabbit serum at 37$^{\circ}C$ water bath or CO2 incubator. At the end of preincubation LC was added to the preincubated sperm, which was stained at 0.5 to 4 hr later and examined for AR and sperm motility. For in vitro fertilization, gametes were coincubated in DM up to 24 hrs and thereafter fertilized embryos were incubated in BSM -II up to 48 hrs. Addition of LC to 4-hr preincubated sperm was more effective for the AR and sperm motility than that to 2-hr preincubated sperm and optimal concentration of LC for AR was about 80${\mu}$g/ml. A significant increase in AR occured from 20 to 30 min. after addition of 80 to 100${\mu}$g/ml in 4-hr preincubated sperm. BSA-free DM plus 20% rabbit serum showed a higher AR and sperm motility than those of DM plus 20% rabbit serum in LC-added sperm after 4-hr preincubation. The incidence of AR after 4-hr preincubation and at 30 min after 60${\mu}$g/ml LC addition varied greatly among individual bucks. Sixty ${\mu}$g/ml LC-added sperm showed a slight high cleavage rate over control levels, but 100${\mu}$g/ml LC-added sperm showed lower cleavage rate rather than 60${\mu}$g/ml LC. It is concluded that optimal concentration of LC for high AR induction and sperm motility in 4-hr preincubated sperm was about 80${\mu}$g/ml, but 60${\mu}$g/ml level was more useful for in vitro fertilization.
Park, C.K.;Nam, H.S.;Lee, J.H.;Kim, I.C.;Cheong, H.T.;Yang, B.K.;Kim, C.I.
Korean Journal of Animal Reproduction
/
v.24
no.3
/
pp.255-262
/
2000
The aim of this work was to study the effects of ascorbic acid (Asc) and/or ferrous sulfate (Fe$^{2+}$) and spernatozoa preincubation on the in vitro fertilization in porcine. Porcine follicular oocytes matured in culture were inseminated with frozen-thawed boar spermatozoa preincubated for 0, 1, 2, 3, 4 and 5h. The penetration rates (37~51%) were not significantly different between durations of spermatozoa preincubation in medium with 0.1 mM Asc. The addition of 1.0 mM Fe$^{2+}$ during spermatozoa preincubation were not significantly affecting the penetration rates (41~56%). When spermatozoa were preincubated with Asc and Fe$^{2+}$, the penetration rates had a tendency to increase with time of spermatozoa preincubation, and were significantly (P<0.05) higher in spermatozoa preincubated with that than without Asc and Fe$^{2+}$ for 5 h. On the other hand, when spermatozoa were preincubated in fertilization medium without Asc and/or Fe$^{2+}$, the penetration rates were significantly (P<0.05) higher in medium with Fe$^{2+}$ than with Asc or Asc and Fe$^{2+}$ for in vitro fertilization. The rate of polyspermy in penetrated oocytes in medium with Asc and Fe$^{2+}$ decreased with the period of spermatozoa preincubation. Despite different culture conditions for spermatozoa preincubation, no differences were observed in polyspermy rates in the presence of Asc and/or Fe$^{2+}$ These results indicate the advantage of preincubating spermatozoa with Asc and Fe$^{2+}$ and an addition of Fe$^{2+}$ during in vitro fertilization with spermatozoa preincubated maintain penetration potential without increased polyspermy rates on in vitro fertilization in porcine oocytes.on in porcine oocytes.
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