首页> 外文期刊>Physiologia plantarum >Cold acclimation induces distinctive changes in the chromatin state and transcript levels of COR genes in Cannabis sativa varieties with contrasting cold acclimation capacities
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Cold acclimation induces distinctive changes in the chromatin state and transcript levels of COR genes in Cannabis sativa varieties with contrasting cold acclimation capacities

机译:冷驯化诱导了大麻品种的染色质状态和COR基因转录本水平的显着变化,而冷驯化能力却与此形成鲜明对比

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摘要

Little is known about the capacity of Cannabis sativa to cold-acclimate and develop freezing tolerance. This study investigates the cold acclimation (CA) capacity of nine C. sativa varieties and the underlying genetic and epigenetic responses. The varieties were divided into three groups based on their contrasting CA capacities by comparing the survival of non-acclimated and cold-acclimated plants in whole-plant freeze tests. In response to the CA treatment, all varieties accumulated soluble sugars but only the varieties with superior capacity for CA could maintain higher levels throughout the treatment. In addition, the varieties that acclimated most efficiently accumulated higher transcript levels of cold-regulated (COR) genes and genes involved in de novo DNA methylation while displaying locus- and variety-specific changes in the levels of H3K9ac, H3K27me3 and methylcytosine (MeC) during CA. Furthermore, these hardy C. sativa varieties displayed significant increases in MeC levels at COR gene loci when deacclimated, suggesting a role for locus-specific DNA methylation in deacclimation. This study uncovers the molecular mechanisms underlying CA in C. sativa and reveals higher levels of complexity regarding how genetic, epigenetic and environmental factors intertwine.
机译:关于大麻对冷适应和发展耐寒性的能力知之甚少。这项研究调查了九种紫花苜蓿品种的冷驯化能力以及潜在的遗传和表观遗传反应。通过比较未适应和冷适应植物在全株冷冻试验中的存活率,根据CA能力的差异将其分为三类。响应CA处理,所有品种都积累了可溶性糖,但只有具有较高CA能力的品种才能在整个处理过程中保持较高水平。此外,最有效适应气候变化的品种积累了更高水平的冷调节(COR)基因和涉及从头DNA甲基化的基因,同时在H3K9ac,H3K27me3和甲基胞嘧啶(MeC)的水平上显示了基因座和品种特异性变化在CA期间。此外,这些强壮的苜蓿苜蓿品种在去适应时在COR基因位点处的MeC水平显着增加,表明基因座特异性DNA甲基化在去适应中的作用。这项研究揭示了苜蓿根结线虫中CA的分子机制,并揭示了遗传,表观遗传和环境因素如何相互缠绕的复杂性。

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