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Analysis of ambient temperature-responsive transcriptome in shoot apical meristem of heat-tolerant and heat-sensitive broccoli inbred lines during floral head formation

机译:耐热耐热和热敏硬化性近铬线拍摄半透点的环境温度响应转录组分析

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摘要

Abstract Background Head formation of broccoli (Brassica oleracea var. italica) is greatly reduced under high temperature (22 °C and 27 °C). Broccoli inbred lines that are capable of producing heads at high temperatures in summer are varieties that are unique to Taiwan. However, knowledge of the early-activated pathways of broccoli head formation under high temperature is limited. Results We compared heat-tolerant (HT) and heat-sensitive (HS) transcriptome of broccoli under different temperatures. Weighted gene correlation network analysis (WGCNA) revealed that genes involved in calcium signaling pathways, mitogen-activated protein kinase (MAPK) cascades, leucine-rich repeat receptor-like kinases (LRR-RLKs), and genes coding for heat-shock proteins and reactive oxygen species homeostasis shared a similar expression pattern to BoFLC1, which was highly expressed at high temperature (27 °C). Of note, these genes were less expressed in HT than HS broccoli at 22 °C. Co-expression analysis identified a model for LRR-RLKs in survival-reproduction tradeoffs by modulating MAPK- versus phytohormones-signaling during head formation. The difference in head-forming ability in response to heat stress between HT and HS broccoli may result from their differential transcriptome profiles of LRR-RLK genes. High temperature induced JA- as well as suppressed auxin- and cytokinin-related pathways may facilitate a balancing act to ensure fitness at 27 °C. BoFLC1 was less expressed in HT than HS at 22 °C, whereas other FLC homologues were not. Promoter analysis of BoFLC1 showed fewer AT dinucleotide repeats in HT broccoli. These results provide insight into the early activation of stress- or development-related pathways during head formation in broccoli. The identification of the BoFLC1 DNA biomarker may facilitate breeding of HT broccoli. Conclusions In this study, HT and HS broccoli genotypes were used to determine the effect of temperature on head formation by transcriptome profiling. On the basis of the expression pattern of high temperature-associated signaling genes, the HS transcriptome may be involved in stress defense instead of transition to the reproductive phase in response to heat stress. Transcriptome profiling of HT and HS broccoli helps in understanding the molecular mechanisms underlying head-forming capacity and in promoting functional marker-assisted breeding.
机译:抽象背景头形成花椰菜(甘蓝。谷子)在高温(22℃和27℃)下大大降低。西兰花近交系,并且能在夏季高温下产生头的线品种是台湾特有的。然而,在高温下花椰菜头形成的早期活化途径的知识是有限的。结果我们比较耐热的(HT)和热敏感的(HS)西兰花的不同温度下的转录。加权基因相关性网络分析(WGCNA)显示参与钙的基因信号传导途径,丝裂原活化蛋白激酶(MAPK)级联,富含亮氨酸重复受体样激酶(LRR-RLKs),以及基因编码的热休克蛋白和活性氧动态平衡共享一个类似的表达模式BoFLC1,其高度在高温(27℃)来表示。值得注意的是,这些基因在以下比HT HS花椰菜在22℃下表达。共表达分析通过在头部形成调制MAPK-对植物激素的信令确定用于在生存再现权衡LRR-RLKs的模型。响应于HT和HS花椰菜之间的热应力在头部形成能力的差异可能会导致从LRR-RLK基因及其转录差曲线。高温诱导的JA-以及抑制生长素和细胞分裂素相关途径可有利于平衡的行为,以确保在27℃健身。 BoFLC1中在22℃下比HT HS被较少表达,而其他FLC同源物则没有。 BoFLC1的启动子分析AT在HT西兰花二核苷酸重复显示更少。这些结果提供洞察应力或发展相关途径的过程中头部构造在西兰花的早期激活。所述BoFLC1 DNA生物标记的鉴定可以促进HT花椰菜的滋生。结论在该研究中,HT和HS花椰菜基因型被用来确定温度对头部形成通过转录谱的影响。上的高温相关联的信令的基因的表达模式的基础上,所述HS转录可以参与胁迫的防御,而不是过渡到生殖阶段响应于热应力。 HT和HS花椰菜的转录组分析有助于理解头形成能力的分子机制和在促进官能标记辅助的育种。

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