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首页> 外文期刊>Plant physiology >Selection for Improved Energy Use Efficiency and Drought Tolerance in Canola Results in Distinct Transcriptome and Epigenome Changes
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Selection for Improved Energy Use Efficiency and Drought Tolerance in Canola Results in Distinct Transcriptome and Epigenome Changes

机译:油菜中提高能源利用效率和干旱耐受性的选择导致转录组和表观基因组的变化

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To increase both the yield potential and stability of crops, integrated breeding strategies are used that have mostly a direct genetic basis, but the utility of epigenetics to improve complex traits is unclear. A better understanding of the status of the epigenome and its contribution to agronomic performance would help in developing approaches to incorporate the epigenetic component of complex traits into breeding programs. Starting from isogenic canola (Brassica napus) lines, epilines were generated by selecting, repeatedly for three generations, for increased energy use efficiency and drought tolerance. These epilines had an enhanced energy use efficiency, drought tolerance, and nitrogen use efficiency. Transcriptome analysis of the epilines and a line selected for its energy use efficiency solely revealed common differentially expressed genes related to the onset of stress tolerance-regulating signaling events. Genes related to responses to salt, osmotic, abscisic acid, and drought treatments were specifically differentially expressed in the drought-tolerant epilines. The status of the epigenome, scored as differential trimethylation of lysine-4 of histone 3, further supported the phenotype by targeting drought-responsive genes and facilitating the transcription of the differentially expressed genes. From these results, we conclude that the canola epigenome can be shaped by selection to increase energy use efficiency and stress tolerance. Hence, these findings warrant the further development of strategies to incorporate epigenetics into breeding.
机译:为了增加农作物的增产潜力和稳定性,采用了大多具有直接遗传基础的综合育种策略,但表观遗传学用于改善复杂性状的用途尚不清楚。更好地了解表观基因组的状况及其对农艺学表现的贡献,将有助于开发将复杂性状的表观遗传成分纳入育种程序的方法。从等基因双低油菜(甘蓝型油菜)品系开始,通过反复选择三代以提高能源利用效率和抗旱性,产生了后代。这些Epilines具有增强的能量利用效率,耐旱性和氮利用效率。对Epilines和为其能量利用效率选择的品系的转录组分析仅揭示了与胁迫耐受调节信号事件的发生相关的常见差异表达基因。与盐,渗透压,脱落酸和干旱处理相关的基因在耐干旱的Epilines中特异性差异表达。表观基因组的状态被评分为组蛋白3的赖氨酸4的差异三甲基化,通过靶向干旱响应基因并促进差异表达基因的转录,进一步支持了表型。从这些结果,我们得出结论,可通过选择来塑造双低油菜籽表观基因组,以增加能量利用效率和胁迫耐受性。因此,这些发现保证了将表观遗传学纳入育种策略的进一步发展。

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