Zhang Qingzhu, Li Yanqiang, Xu Tao, Srivastava Ashish Kumar, Wang Dong, Zeng Liang, Yang Lan, He Li, Zhang Heng, Zheng Zhimin, Yang Dong-Lei, Zhao Cheng, Dong Juan, Gong Zhizhong, Liu Renyi, Zhu Jian-Kang
Shanghai Centre for Plant Stress Biology, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences , Shanghai, China.
Shanghai Institute of Plant Physiology and Ecology, Shanghai Institutes of Biological Sciences, Chinese Academy of Sciences , Shanghai, China.
Cell Discov. 2016 Aug 9;2:16027. doi: 10.1038/celldisc.2016.27. eCollection 2016.
In plants, hybrid vigor is influenced by genetic and epigenetic mechanisms; however, the molecular pathways are poorly understood. We investigated the potential contributions of epigenetic regulators to heterosis in Arabidposis and found that the chromatin remodeler DECREASED DNA METHYLATION 1 (DDM1) affects early seedling growth heterosis in Col/C24 hybrids. ddm1 mutants showed impaired heterosis and increased expression of non-additively expressed genes related to salicylic acid metabolism. Interestingly, our data suggest that salicylic acid is a hormetic regulator of seedling growth heterosis, and that hybrid vigor arises from crosses that produce optimal salicylic acid levels. Although DNA methylation failed to correlate with differential non-additively expressed gene expression, we uncovered DDM1 as an epigenetic link between salicylic acid metabolism and heterosis, and propose that the endogenous salicylic acid levels of parental plants can be used to predict the heterotic outcome. Salicylic acid protects plants from pathogens and abiotic stress. Thus, our findings suggest that stress-induced hormesis, which has been associated with increased longevity in other organisms, may underlie specific hybrid vigor traits.
在植物中,杂种优势受遗传和表观遗传机制影响;然而,其分子途径尚不清楚。我们研究了表观遗传调控因子对拟南芥杂种优势的潜在贡献,发现染色质重塑因子DNA甲基化降低1(DDM1)影响Col/C24杂种的早期幼苗生长杂种优势。ddm1突变体表现出杂种优势受损,以及与水杨酸代谢相关的非加性表达基因的表达增加。有趣的是,我们的数据表明水杨酸是幼苗生长杂种优势的一种刺激调节因子,并且杂种优势源于产生最佳水杨酸水平的杂交组合。虽然DNA甲基化与差异非加性表达基因的表达无关,但我们发现DDM1是水杨酸代谢与杂种优势之间的表观遗传联系,并提出亲本植物的内源性水杨酸水平可用于预测杂种优势结果。水杨酸可保护植物免受病原体和非生物胁迫。因此,我们的研究结果表明,与其他生物体寿命延长相关的应激诱导刺激作用可能是特定杂种优势性状的基础。