Dziegielewski Wojciech, Ziolkowski Piotr A
Laboratory of Genome Biology, Institute of Molecular Biology and Biotechnology, Adam Mickiewicz University, Poznan, Poland.
Front Plant Sci. 2021 Aug 20;12:662185. doi: 10.3389/fpls.2021.662185. eCollection 2021.
The complexity of the subcellular processes that take place during meiosis requires a significant remodeling of cellular metabolism and dynamic changes in the organization of chromosomes and the cytoskeleton. Recently, investigations of meiotic transcriptomes have revealed additional noncoding RNA factors (ncRNAs) that directly or indirectly influence the course of meiosis. Plant meiosis is the point at which almost all known noncoding RNA-dependent regulatory pathways meet to influence diverse processes related to cell functioning and division. ncRNAs have been shown to prevent transposon reactivation, create germline-specific DNA methylation patterns, and affect the expression of meiosis-specific genes. They can also influence chromosome-level processes, including the stimulation of chromosome condensation, the definition of centromeric chromatin, and perhaps even the regulation of meiotic recombination. In many cases, our understanding of the mechanisms underlying these processes remains limited. In this review, we will examine how the different functions of each type of ncRNA have been adopted in plants, devoting attention to both well-studied examples and other possible functions about which we can only speculate for now. We will also briefly discuss the most important challenges in the investigation of ncRNAs in plant meiosis.
减数分裂过程中发生的亚细胞过程的复杂性需要细胞代谢进行重大重塑,以及染色体和细胞骨架组织的动态变化。最近,对减数分裂转录组的研究揭示了其他直接或间接影响减数分裂进程的非编码RNA因子(ncRNAs)。植物减数分裂是几乎所有已知的非编码RNA依赖调控途径交汇的点,以影响与细胞功能和分裂相关的各种过程。ncRNAs已被证明可以防止转座子重新激活,创建种系特异性DNA甲基化模式,并影响减数分裂特异性基因的表达。它们还可以影响染色体水平的过程,包括刺激染色体浓缩、着丝粒染色质的定义,甚至可能影响减数分裂重组的调控。在许多情况下,我们对这些过程背后机制的理解仍然有限。在这篇综述中,我们将研究每种类型的ncRNA的不同功能是如何在植物中发挥作用的,既要关注已充分研究的例子,也要关注目前我们只能推测的其他可能功能。我们还将简要讨论植物减数分裂中ncRNAs研究面临的最重要挑战。