Time-course RNA-sequencing and Co-expression Modules Revealed a Critical Salt Response Regulatory Network in Apple

IF 1.2 4区 农林科学 Q3 HORTICULTURE
Xin Huang, Meiling Zhang, Liping Wang, Xuyao Zhang, Ruigang Wu, Fei Shen
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引用次数: 0

Abstract

As one of the most important fruit tree crops, apple (Malus ×domestica), is faced with the serious impact of soil salinization. However, the underlying genetic and regulatory network remains elusive. Here, we adopted time-course RNA sequencing to decipher the genetic basis and regulatory module of apple in response to salt stress. Among a series of intense changes in genes at each time point, the critical genes in the mitogen-activated protein kinase signaling pathway were highly consistent with the duration of the stress treatment. Moreover, Salt Overly Sensitive 1 (SOS1) genes were identified and predicted to play important roles in the response process. We constructed coexpression modules and explored modules significantly associated with stress. SOS genes were identified in the hub genes, suggesting a critical role. Interestingly, transcription factors were also identified and predicted to cointeract with SOS genes in the hub genes of the coexpression module [e.g., HB7 (MD01G1226600), WRKY33 (MD12G1181000), and ERF106 (MD07G1248700)]. Collectively, our exploration and findings provide a reference and data resource for the study of genetic and salt regulatory networks in apple.
时间进程RNA测序和共表达模块揭示了苹果的关键盐反应调控网络
苹果(Malus ×domestica)作为最重要的果树作物之一,面临着土壤盐碱化的严重影响。然而,潜在的遗传和调控网络仍然难以捉摸。本研究采用时程RNA测序方法,分析了苹果对盐胁迫的遗传基础和调控模块。在各时间点一系列基因的剧烈变化中,丝裂原活化蛋白激酶信号通路的关键基因与胁迫处理时间高度一致。此外,盐过度敏感1 (SOS1)基因被鉴定并预测在反应过程中发挥重要作用。我们构建了共表达模块,并探索了与压力显著相关的模块。在中心基因中发现了SOS基因,表明其具有关键作用。有趣的是,转录因子也被发现并预测与共表达模块枢纽基因中的SOS基因共作用[例如HB7 (MD01G1226600), WRKY33 (MD12G1181000)和ERF106 (MD07G1248700)]。本研究为苹果遗传和盐调控网络的研究提供了参考和数据资源。
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来源期刊
CiteScore
3.80
自引率
0.00%
发文量
31
审稿时长
2 months
期刊介绍: The Journal of the American Society for Horticultural Science publishes papers on the results of original research on horticultural plants and their products or directly related research areas. Its prime function is to communicate mission-oriented, fundamental research to other researchers. The journal includes detailed reports of original research results on various aspects of horticultural science and directly related subjects such as: - Biotechnology - Developmental Physiology - Environmental Stress Physiology - Genetics and Breeding - Photosynthesis, Sources-Sink Physiology - Postharvest Biology - Seed Physiology - Postharvest Biology - Seed Physiology - Soil-Plant-Water Relationships - Statistics
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