Matveevsky Sergey, Tropin Nikolay, Kucheryavyy Aleksandr, Kolomiets Oxana
Vavilov Institute of General Genetics, Russian Academy of Sciences, 119991 Moscow, Russia.
Vologda Branch of the Russian Federal Research Institute of Fisheries and Oceanography, 160012 Vologda, Russia.
Life (Basel). 2023 Feb 11;13(2):501. doi: 10.3390/life13020501.
Transcription is known to be substage-specific in meiotic prophase I. If transcription is reactivated in the mid pachytene stage in mammals when synapsis is completed, then this process is observed in the zygotene stage in insects. The process of transcriptional reactivation has been studied in a small number of different taxa of invertebrates and vertebrates. Here, for the first time, we investigate synapsis and transcription in prophase I in the European river lamprey (Petromyzontiformes, Cyclostomata), which is representative of jawless vertebrates that diverged from the main branch of vertebrates between 535 and 462 million years ago. We found that not all chromosomes complete synapsis in telomeric regions. Rounded structures were detected in chromatin and in some synaptonemal complexes, but their nature could not be determined conclusively. An analysis of RNA polymerase II distribution led to the conclusion that transcriptional reactivation in lamprey prophase I is not associated with the completion of chromosome synapsis. Monomethylated histone H3K4 is localized in meiotic chromatin throughout prophase I, and this pattern has not been previously detected in animals. Thus, the findings made it possible to identify synaptic and epigenetic patterns specific to this group and to expand knowledge about chromatin epigenetics in prophase I.
已知转录在减数分裂前期I中具有亚阶段特异性。如果在哺乳动物的粗线期中期(此时联会已完成)转录重新激活,那么在昆虫的偶线期也会观察到这一过程。转录重新激活过程已在少数不同类群的无脊椎动物和脊椎动物中进行了研究。在此,我们首次研究了欧洲河鳗(圆口纲,七鳃鳗目)减数分裂前期I中的联会和转录,七鳃鳗目是一种无颌脊椎动物的代表,在5.35亿至4.62亿年前从脊椎动物的主要分支中分化出来。我们发现并非所有染色体在端粒区域都完成了联会。在染色质和一些联会复合体中检测到了圆形结构,但其性质无法最终确定。对RNA聚合酶II分布的分析得出结论,七鳃鳗减数分裂前期I中的转录重新激活与染色体联会的完成无关。单甲基化组蛋白H3K4在整个减数分裂前期I的减数分裂染色质中均有定位,这种模式此前在动物中尚未被检测到。因此,这些发现使得识别该类群特有的联会和表观遗传模式成为可能,并扩展了关于减数分裂前期I染色质表观遗传学的知识。