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Transcriptome and digital gene expression analysis of herbaceous peony (Paeonia lactiflora Pall.) to screen thermo-tolerant related differently expressed genes

机译:草本牡丹转录组和数字基因表达分析以筛选耐热相关差异表达基因

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Herbaceous peony (Paeonia lactiflora Pall.) is easily injured by heat stress (HS), which greatly restricts its application and promotion. In this study, the thermo-tolerance of three representative P. lactiflora cultivars had been firstly assessed. 'Zifengyu' was identified as the thermo-tolerant cultivar with relatively lower values and smaller variations in malondialdehyde, hydrogen peroxide (H2O2) and proline contents under HS. Subsequently, their transcriptomes were sequenced by RNA sequencing (RNA-seq) technology to construct a complete database. 81,599 unigenes were obtained, and 34,940 unigenes had been annotated. Moreover, through digital gene expression analysis of thermo-tolerant 'Zifengyu' and moderately thermo-tolerant 'Hongyanzhenghui', 161 heat stress response genes had been screened involving heat shock protein genes, plant hormone signal transduction related genes, fatty acid synthesis genes, reactive oxygen species-scavenging genes and secondary metabolites related genes. And the effectively and timely response of these genes to HS could endow thermo-tolerance to 'Zifengyu'. Among these genes, 11 key thermo-tolerant related genes whose expressions were all significantly up-regulated in 'Zifengyu' and 'Hongyanzhenghui' during development and the former possessed higher levels could be regarded as the candidate genes, including isoprene synthase gene, 2 peroxidase genes, 3-oxoacyl-acyl carrier protein reductase gene (FabG), 3 transcription factor genes (bHLH, NAC and WRKY), HSP20 and 3 HSP70. These results could provide a better understanding of heat stress response in P. lactiflora, and pave for the breeding of thermo-tolerant cultivars.
机译:草本牡丹(Paeonia lactiflora Pall。)容易因热应激(HS)受伤,极大地限制了其应用和推广。在这项研究中,首先评估了三种代表性的乳酸假单胞菌的耐热性。在高温下,“自丰玉”被认为是耐热品种,丙二醛,过氧化氢(H2O2)和脯氨酸含量相对较低,丙二醛含量较低。随后,通过RNA测序(RNA-seq)技术对他们的转录组进行测序,以构建一个完整的数据库。已获得81,599个单基因,并已注释34,940个单基因。此外,通过对耐热性“紫凤玉”和中度耐热性“红岩正灰”的数字基因表达分析,筛选出161个涉及热休克蛋白基因,植物激素信号转导相关基因,脂肪酸合成基因,反应性基因的热应激反应基因。氧清除基因和次级代谢产物相关基因。这些基因对HS的有效及时的应答可以赋予“子凤feng”耐热性。在这些基因中,有11个耐热相关的关键基因在发育过程中在“自丰玉”和“红岩正辉”中的表达均明显上调,而前者具有较高的表达水平,可以认为是候选基因,包括异戊二烯合酶基因,2个过氧化物酶。基因,3-氧代酰基酰基载体蛋白还原酶基因(FabG),3个转录因子基因(bHLH,NAC和WRKY),HSP20和3 HSP70。这些结果可以更好地了解乳酸假单胞菌的热应激反应,并为耐热品种的育种铺平道路。

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