Reinholdt Laura Garvey, Gutierrez Gabriel M, Krider Hallie M
The Jackson Laboratory, Bar Harbor, ME 04609, USA.
Chromosoma. 2002 Sep;111(3):139-46. doi: 10.1007/s00412-002-0204-6. Epub 2002 Jul 31.
The gypsy moth, Lymantria dispar, produces two structurally and genetically distinct types of spermatozoa. The eupyrene spermatozoa are genetically haploid and structurally typical. The apyrene spermatozoa are anucleate and structurally different from eupyrene spermatozoa. To understand further the events contributing to meiotic chromosome missegregation in apyrene spermatocytes, we examined the progression of meiosis in these cells with respect to their eupyrene counterparts. Chromosomal bouquet formation and fusion of nucleolar organizing regions are disrupted in apyrene nuclei. In addition, the chromatin of apyrene nuclei is prematurely and extremely condensed compared with that of eupyrene nuclei. An antibody to the conserved synaptonemal complex protein 3 (SCP3) labeled eupyrene pachytene chromosomes, but not apyrene pachytene chromosomes. In addition, apyrene meiotic spindles are missing a subset of microtubules, which likely include kinetochore microtubules. Because the condensation behavior of meiotic chromatin in apyrene spermatocytes deviates from that of eupyrene spermatocytes, we examined the appearance and distribution of the phosphorylated form of histone H3, but no significant differences in histone H3 phosphorylation were found between apyrene and eupyrene spermatocytes. We argue that because a pachytene checkpoint is not initiated in apyrene spermatocytes, this system may provide a way to understand better the underlying biochemical connections between pairing, recombination, synapsis, kinetochore assembly and segregation of chromosomes during meiosis in a higher eukaryote.
舞毒蛾(Lymantria dispar)产生两种结构和基因上截然不同的精子类型。有核精子在基因上是单倍体,结构上典型。无核精子无细胞核,结构上与有核精子不同。为了进一步了解导致无核精母细胞减数分裂染色体错配的事件,我们研究了这些细胞减数分裂相对于有核精母细胞的进程。无核细胞核中染色体花束的形成和核仁组织区的融合受到破坏。此外,与有核细胞核相比,无核细胞核的染色质过早且极度浓缩。一种针对保守的联会复合体蛋白3(SCP3)的抗体标记了有核粗线期染色体,但未标记无核粗线期染色体。此外,无核减数分裂纺锤体缺少一部分微管,其中可能包括动粒微管。由于无核精母细胞减数分裂染色质的凝聚行为与有核精母细胞不同,我们检查了组蛋白H3磷酸化形式的外观和分布,但在无核和有核精母细胞之间未发现组蛋白H3磷酸化有显著差异。我们认为,由于无核精母细胞中未启动粗线期检查点,该系统可能提供一种更好地理解高等真核生物减数分裂过程中配对、重组、联会、动粒组装和染色体分离之间潜在生化联系的方法。