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A high-throughput method for unbiased quantitation and categorization of nuclear morphology

机译:高通量方法用于核形态的无偏定量和分类

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摘要

The physical arrangement of chromatin in the nucleus is cell type and species-specific, a fact particularly evident in sperm, in which most of the cytoplasm has been lost. Analysis of the characteristic falciform (“hook shaped”) sperm in mice is important in studies of sperm development, hybrid sterility, infertility, and toxicology. However, quantification of sperm shape differences typically relies on subjective manual assessment, rendering comparisons within and between samples difficult.We have developed an analysis program for morphometric analysis of asymmetric nuclei and characterized the sperm of mice from a range of inbred, outbred, and wild-derived mouse strains. We find that laboratory strains have elevated sperm shape variability both within and between samples in comparison to wild-derived inbred strains, and that sperm shape in F1 offspring from a cross between CBA and C57Bl6J strains is subtly affected by the direction of the cross. We further show that hierarchical clustering can discriminate distinct sperm shapes with greater efficiency and reproducibility than even experienced manual assessors, and is useful both to distinguish between samples and also to identify different morphological classes within a single sample.Our approach allows for the analysis of nuclear shape with unprecedented precision and scale and will be widely applicable to different species and different areas of biology.
机译:染色质在细胞核中的物理排列是细胞类型和物种特异性的,这一事实在精子中尤为明显,在精子中,大部分细胞质已经丢失。小鼠特征性畸形(“钩形”)精子的分析在精子发育,杂种不育,不育和毒理学研究中很重要。然而,精子形状差异的量化通常依赖于主观的手动评估,使样品内部和样品之间的比较变得困难。我们开发了一种用于非对称核形态计量分析的分析程序,并从近交,近交和野生的范围内对小鼠的精子进行了表征小鼠品系。我们发现,与野生自交系相比,实验室菌株在样品内和样品之间的精子形状变异性均升高,并且来自CBA和C57B16J菌株之间杂交的F1子代的精子形状受到杂交方向的影响。我们进一步证明,与甚至经验丰富的人工评估者相比,分层聚类可以更高的效率和可重复性来区分不同的精子形状,不仅有助于区分样本,还可以识别单个样本中的不同形态类别。形状具有前所未有的精度和规模,将广泛应用于不同物种和不同领域的生物学。

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