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首页> 外文期刊>The Indian Journal of Animal Sciences >Comparative analysis of developmental and molecular correlates of developmental competence of buffalo oocytes derived from small and large follicles
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Comparative analysis of developmental and molecular correlates of developmental competence of buffalo oocytes derived from small and large follicles

机译:小型卵泡源性卵母细胞发育能力的发育和分子相关性的比较分析

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摘要

The present study was conducted to correlate the developmental competence of large follicle (LF, > 6 mm) and small follicle (SF, < 6 mm) derived buffalo oocytes in terms of morphological assessment and molecular characteristics. A pool of culture grade cumulus oocytes complexes (COCs) from both the groups separately were subjected to brilliant cresyl blue (BCB) staining. LF derived oocytes had significantly higher percentage of BCB+ve oocytes and were larger in size and maturation status was also visibly superior. Cleavage and blastocysts rate was also significantly higher in LF group than SF group. Relative mRNA expression analysis revealed that expression of GDF9 was significantly higher in LF group than SF group while expression of BMP15 increased insignificantly. Expression of GREM1, EGFR and PTGS2 was significantly higher in LF group than SF group while expression of HAS2 was insignificantly higher. Similarly, expression of GLUT1, OCT4 and IFN-tau in in vitro produced blastocyts was significantly higher in LF group than SF group. Thus, it can be concluded that LF derived oocytes are larger in size and express higher level of competence markers and resulted in better quality embryos. This information may be further utilized for the enhancement of developmental competence of small follicle derived oocytes.
机译:本研究进行了在形态评估和分子特征方面与大卵泡(LF,> 6mm)和小卵泡(SF,<6mm)衍生的水牛卵母细胞的发育能力相关联。将来自两个组的培养级巨粒卵母细胞池分别分别进行了辉煌的甲酚蓝(BCB)染色。 LF衍生的卵母细胞的BCB + VE卵母细胞百分比明显高,尺寸较大,成熟状态也明显优越。 LF组裂解和胚泡率比SF组在显着高。相对mRNA表达分析显示,LF组的GDF9的表达明显高于SF组,而BMP15的表达不显着增加。 LF组的GREM1,EGFR和PTGS2的表达比SF组显着高,而HAS2的表达不显着。类似地,LF组在体外产生的胚泡中的Glut1,Oct4和IFN-Tau的表达明显高于SF组。因此,可以得出结论,LF衍生的卵母细胞的尺寸较大,表达更高水平的能力标记,并导致更好的胚胎。该信息可以进一步用于增强小卵泡衍生的卵母细胞的发育能力。

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