Soriano Joaquim, Belmonte-Tebar Angela, de la Casa-Esperon Elena
Centro Regional de Investigaciones Biomédicas (CRIB), Universidad de Castilla-La Mancha, Albacete, Spain.
Biology of Cell Growth, Differentiation and Activation Group, Department of Inorganic and Organic Chemistry and Biochemistry, School of Pharmacy, Universidad de Castilla-La Mancha, Albacete, Spain.
Front Cell Dev Biol. 2023 Jan 19;11:1005145. doi: 10.3389/fcell.2023.1005145. eCollection 2023.
During the formation of ova and sperm, homologous chromosomes get physically attached through the synaptonemal complex and exchange DNA at crossover sites by a process known as meiotic recombination. Chromosomes that do not recombine or have anomalous crossover distributions often separate poorly during the subsequent cell division and end up in abnormal numbers in ova or sperm, which can lead to miscarriage or developmental defects. Crossover numbers and distribution along the synaptonemal complex can be visualized by immunofluorescent microscopy. However, manual analysis of large numbers of cells is very time-consuming and a major bottleneck for recombination studies. Some image analysis tools have been created to overcome this situation, but they are not readily available, do not provide synaptonemal complex data, or do not tackle common experimental difficulties, such as overlapping chromosomes. To overcome these limitations, we have created and validated an open-source ImageJ macro routine that facilitates and speeds up the crossover and synaptonemal complex analyses in mouse chromosome spreads, as well as in other vertebrate species. It is free, easy to use and fulfills the recommendations for enhancing rigor and reproducibility in biomedical studies.
在卵子和精子形成过程中,同源染色体通过联会复合体进行物理连接,并通过一种称为减数分裂重组的过程在交叉位点交换DNA。未发生重组或交叉分布异常的染色体在随后的细胞分裂过程中往往分离不佳,最终在卵子或精子中数量异常,这可能导致流产或发育缺陷。沿着联会复合体的交叉数量和分布可以通过免疫荧光显微镜观察到。然而,对大量细胞进行手动分析非常耗时,是重组研究的一个主要瓶颈。已经创建了一些图像分析工具来克服这种情况,但它们不易获得,不提供联会复合体数据,或者无法解决常见的实验难题,如染色体重叠。为了克服这些限制,我们创建并验证了一个开源的ImageJ宏程序,该程序有助于并加速对小鼠染色体铺片以及其他脊椎动物物种中的交叉和联会复合体分析。它免费、易于使用,并符合提高生物医学研究严谨性和可重复性的建议。