Instituto de Tecnologia Química e Biológica-Universidade Nova de Lisboa, Oeiras, Portugal.
J Exp Bot. 2011 Jul;62(11):3713-25. doi: 10.1093/jxb/err155. Epub 2011 May 26.
Epigenetic mechanisms are highly dynamic events that modulate gene expression. As more accurate and powerful tools for epigenetic analysis become available for application in a broader range of plant species, analysis of the epigenetic landscape of plant cell cultures may turn out to be crucial for understanding variant phenotypes. In vitro plant cell and tissue culture methodologies are important for many ongoing plant propagation and breeding programmes as well as for cutting-edge research in several plant model species. Although it has long been known that in vitro conditions induce variation at several levels, most studies using such conditions rely on the assumption that in vitro cultured plant cells/tissues mostly conform genotypically and phenotypically. However, when large-scale clonal propagation is the aim, there has been a concern in confirming true-to-typeness using molecular markers for evaluating stability. While in most reports genetic variation has been found to occur at relatively modest frequencies, variation in DNA methylation patterns seems to be much more frequent and in some cases it has been directly implicated in phenotypic variation. Recent advances in the field of epigenetics have uncovered highly dynamic mechanisms of chromatin remodelling occurring during cell dedifferentiation and differentiation processes on which in vitro adventitious plant regeneration systems are based. Here, an overview of recent findings related to developmental switches occurring during in vitro culture is presented. Additionally, an update on the detection of epigenetic variation in plant cell cultures will be provided and discussed in the light of recent progress in the plant epigenetics field.
表观遗传机制是高度动态的事件,可调节基因表达。随着更精确和强大的表观遗传分析工具可应用于更广泛的植物物种,对植物细胞培养物的表观遗传景观进行分析可能对于理解变体表型至关重要。体外植物细胞和组织培养方法对于许多正在进行的植物繁殖和育种计划以及几种植物模式物种的前沿研究非常重要。尽管人们早就知道体外条件会在多个层面上诱导变异,但使用这些条件的大多数研究都基于这样的假设,即体外培养的植物细胞/组织在基因型和表型上大多一致。然而,当大规模无性繁殖是目的时,人们一直关注使用分子标记物评估稳定性来确认真正的类型。虽然在大多数报告中发现遗传变异发生的频率相对较低,但 DNA 甲基化模式的变异似乎更为频繁,在某些情况下,它直接与表型变异有关。表观遗传学领域的最新进展揭示了在体外不定植物再生系统所基于的细胞去分化和分化过程中发生的染色质重塑的高度动态机制。在这里,介绍了与体外培养过程中发生的发育开关相关的最新发现概述。此外,还将提供植物细胞培养中表观遗传变异的最新检测,并根据植物表观遗传学领域的最新进展进行讨论。