Advanced Centre for Molecular Biology and Biotechnology, Rubber Research Institute of India, Rubber Board P O, Kottayam, Kerala, 686009, India.
Planta. 2018 Sep;248(3):579-589. doi: 10.1007/s00425-018-2918-6. Epub 2018 May 24.
Heterografting induced intraclonal epigenetic variations were detected among rubber plants. Interaction between genetically divergent root stock and scion tissues might have triggered these epigenetic changes which may eventually lead to intraclonal variability in rubber. DNA methylation in response to stress may be associated with the alteration in gene transcription leading to morphological changes in plants. Rubber tree is commercially propagated by bud grafting where the scion of a high yielding variety is grafted on to a genetically divergent root stock. Still, significant levels of intraclonal variations exist among them. Epigenetic changes associated with heterografting may be partly responsible for this conundrum. In the present study, an attempt was made to identify the impact of divergent root stock on the epigenome of scion in grafted rubber plants. Heterografts were developed by grafting eye buds from a single polyembryony derived seedling on to genetically divergent root stocks of unknown parentage. The plants were uniformly maintained and their DNA was subjected to MSAP analysis. Polymorphic DNA methylation bands corresponding to CG as well as the plant-specific CHG types of methylation were observed. Cloning of selected polymorphic regions and bisulfite sequencing confirmed the presence of methylation in the promoter and coding region of important genes including an LRR receptor kinase gene. Since divergent root stock is the major factor differentiating the grafted plants, the changes in DNA methylation patterns might have been triggered by the interaction between the two genetically different tissues of stock and scion. The study assumes importance in Hevea, because accumulation and maintenance of epigenetic changes in functional genes and promoters during subsequent cycles of vegetative propagation may contribute towards intraclonal variability eventually leading to altered phenotypes.
橡胶树中存在着种内克隆的表观遗传变异,这种变异是由异砧嫁接引起的。遗传上不同的砧木和接穗组织之间的相互作用可能引发了这些表观遗传变化,最终导致橡胶的种内变异性。对胁迫的 DNA 甲基化可能与基因转录的改变有关,从而导致植物形态的变化。橡胶树是通过芽接商业化繁殖的,即将高产品种的接穗嫁接到遗传上不同的砧木上。然而,它们之间仍然存在着显著的种内变异性。与异砧嫁接相关的表观遗传变化可能是造成这种困惑的部分原因。在本研究中,我们试图确定不同的砧木对嫁接橡胶树接穗的表观基因组的影响。通过将来自单个多胚苗的芽眼嫁接到遗传上不同的未知亲本的砧木上,产生了异砧嫁接。这些植物被均匀地维持着,并对它们的 DNA 进行了 MSAP 分析。观察到与 CG 以及植物特异性 CHG 类型的甲基化相对应的多态性 DNA 甲基化带。对选定的多态性区域进行克隆和亚硫酸氢盐测序证实,重要基因包括一个 LRR 受体激酶基因的启动子和编码区存在甲基化。由于砧木是区分嫁接植物的主要因素,因此 DNA 甲基化模式的变化可能是由砧木和接穗两个遗传上不同的组织之间的相互作用引起的。本研究在橡胶树中具有重要意义,因为在随后的营养繁殖周期中,功能基因和启动子中表观遗传变化的积累和维持可能导致种内变异性,最终导致表型改变。