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Transcriptome Sequencing of Dianthus spiculifolius and Analysis of the Genes Involved in Responses to Combined Cold and Drought Stress

机译:石竹的转录组测序及冷,干旱联合胁迫反应相关基因的分析

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Dianthus spiculifolius , a perennial herbaceous flower and a member of the Caryophyllaceae family, has strong resistance to cold and drought stresses. To explore the transcriptional responses of D. spiculifolius to individual and combined stresses, we performed transcriptome sequencing of seedlings under normal conditions or subjected to cold treatment (CT), simulated drought treatment (DT), or their combination (CTDT). After de novo assembly of the obtained reads, 112,015 unigenes were generated. Analysis of differentially expressed genes (DEGs) showed that 2026, 940, and 2346 genes were up-regulated and 1468, 707, and 1759 were down-regulated in CT, DT, and CTDT samples, respectively. Among all the DEGs, 182 up-regulated and 116 down-regulated genes were identified in all the treatment groups. Analysis of metabolic pathways and regulatory networks associated with the DEGs revealed overlaps and cross-talk between cold and drought stress response pathways. The expression profiles of the selected DEGs in CT, DT, and CTDT samples were characterized and confirmed by quantitative RT-PCR. These DEGs and metabolic pathways may play important roles in the response of D. spiculifolius to the combined stress. Functional characterization of these genes and pathways will provide new targets for enhancement of plant stress tolerance through genetic manipulation.
机译:石竹,多年生草本花卉,石竹科的一员,对寒冷和干旱胁迫具有很强的抵抗力。为了探索D. spiculifolius对单个和复合胁迫的转录反应,我们在正常条件下或经过冷处理(CT),模拟干旱处理(DT)或它们的组合(CTDT)的条件下对幼苗进行了转录组测序。从头获得的读码重新组装后,生成了112,015个单基因。对差异表达基因(DEG)的分析表明,在CT,DT和CTDT样品中,分别上调了2026、940和2346个基因,下调了1468、707和1759。在所有DEG中,在所有治疗组中鉴定出182个上调基因和116个下调基因。对与DEG相关的代谢途径和调控网络的分析显示,冷应激和干旱胁迫反应途径之间存在重叠和相互影响。通过定量RT-PCR表征并确认所选DEG在CT,DT和CTDT样品中的表达谱。这些DEG和代谢途径可能在D. spiculifolius对组合压力的反应中起重要作用。这些基因和途径的功能表征将为通过基因操作增强植物抗逆性提供新的目标。

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