Department of Plant and Soil Sciences, University of Kentucky, 301A Plant Science Building, 1405 Veterans Road, Lexington, KY 40546-0312, USA.
Plant Sci. 2022 Nov;324:111430. doi: 10.1016/j.plantsci.2022.111430. Epub 2022 Aug 23.
Recent years have seen an explosion of interest in the subject of alternative polyadenylation in plants. Connections between the polyadenylation complex and numerous developmental and stress responses are well-established. However, those that link stimuli with the functioning of the polyadenylation complex are less well understood. To this end, it is imperative to clearly delineate the roles of the polyadenylation complex in both plant growth AND alternative polyadenylation. It is also necessary to understand the ways by which other molecular processes may contribute to alternative polyadenylation. This review discusses these issues, with a focus on instances that reveal mechanisms by which mRNA polyadenylation may be regulated. Insights from from characterizations of mutants affected in the polyadenylation complex are discussed, as are the limitations of such characterizations when it comes to teasing out cause and effect. These limitations encourage explorations to other processes that are beyond the core polyadenylation complex. Two such processes that sculpt the plant transcriptome - transcription termination and the epigenetic control of transposon activity - also contribute to regulated poly(A) site choice. These subjects define "the right places" - molecular mechanisms that contribute to the wide-ranging control of gene expression via mRNA polyadenylation.
近年来,植物中另类多聚腺苷酸化的研究引起了广泛关注。多聚腺苷酸化复合物与许多发育和应激反应之间的联系已经得到很好的证实。然而,那些将刺激与多聚腺苷酸化复合物的功能联系起来的联系还不太清楚。为此,必须明确界定多聚腺苷酸化复合物在植物生长和另类多聚腺苷酸化中的作用。还需要了解其他分子过程如何有助于另类多聚腺苷酸化。本综述讨论了这些问题,重点讨论了揭示 mRNA 多聚腺苷酸化可能受到调控的机制的实例。讨论了多聚腺苷酸化复合物突变体的特征,以及这些特征在揭示因果关系方面的局限性。这些局限性鼓励对核心多聚腺苷酸化复合物之外的其他过程进行探索。两个这样的过程——转录终止和转座子活性的表观遗传控制——也有助于调节多(A)位点的选择。这些主题定义了“正确的地方”——通过 mRNA 多聚腺苷酸化对基因表达进行广泛调控的分子机制。