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Genome-Wide Transcriptome Analysis of Two Contrasting Brassica rapa Doubled Haploid Lines under Cold-Stresses Using Br135K Oligomeric Chip

机译:利用Br135K寡聚核苷酸芯片分析冷胁迫下两个不同的甘蓝型油菜双倍单倍体株系的全基因组转录组分析

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摘要

Genome wide transcription analysis in response to stresses is important to provide a basis of effective engineering strategies to improve stress tolerance in crop plants. We assembled a Brassica rapa oligomeric microarray (Br135K microarray) using sequence information from 41,173 unigenes and analyzed the transcription profiles of two contrasting doubled haploid (DH) lines, Chiifu and Kenshin, under cold-treatments. The two DH lines showed great differences in electrolyte leakage below −4°C, but similar patterns from 4°C to −2°C. Cold-treatments induced 885 and 858 genes in Chiifu and Kenshin, respectively. Overall, 134, and 56 genes showed an intrinsic difference in expression in Chiifu and Kenshin, respectively. Among 5,349 genes that showed no hit found (NHF) in public databases, 61 and 24 were specifically expressed in Chiifu and Kenshin, respectively. Many transcription factor genes (TFs) also showed various characteristics of expression. BrMYB12, BrMYBL2, BrbHLHs, BrbHLH038, a C2H2, a WRKY, BrDREB19 and a integrase-type TF were induced in a Chiifu-specific fashion, while a bHLH (Bra001826/AT3G21330), bHLH, cycling Dof factor and two Dof type TFs were Kenshin specific. Similar to previous studies, a large number of genes were differently induced or regulated among the two genotypes, but many genes, including NHFs, were specifically or intrinsically expressed with genotype specificity. Expression patterns of known-cold responsive genes in plants resulted in discrepancy to membrane leakage in the two DH lines, indicating that timing of gene expression is more important to conferring freezing tolerance rather than expression levels. Otherwise, the tolerance will be related to the levels of transcripts before cold-treatment or regulated by other mechanisms. Overall, these results indicate common signaling pathways and various transcriptional regulatory mechanisms are working together during cold-treatment of B. rapa. Our newly developed Br135K oligomeric microarray will be useful for transcriptome profiling, and will deliver valuable insight into cold stresses in B. rapa.
机译:响应胁迫的全基因组转录分析对于提供有效的工程策略以提高作物植物的胁迫耐受性很重要。我们使用来自41,173个单基因的序列信息组装了芸苔属低聚寡核苷酸微阵列(Br135K微阵列),并在冷处理下分析了两个对比双倍单倍体(DH)系Chiifu和Kenshin的转录谱。两条DH线在-4°C以下显示出电解液泄漏的巨大差异,但在4°C至-2°C处显示出相似的模式。冷处理分别在Chiifu和Kenshin中诱导了885和858个基因。总体而言,有134个和56个基因分别在Chiifu和Kenshin中表现出内在差异。在公共数据库中未显示命中(NHF)的5349个基因中,分别在Chiifu和Kenshin中特异性表达了61和24个基因。许多转录因子基因(TFs)也表现出各种表达特征。以Chiifu特异的方式诱导BrMYB12,BrMYBL2,BrbHLHs,BrbHLH038,C2H2,WRKY,BrDREB19和整合酶型TF,而bHLH(Bra001826 / AT3G21330),bHLH,循环Dof因子和两个Dof型TF分别被诱导。 Kenshin特定。与以前的研究相似,两种基因型之间有大量基因被不同地诱导或调控,但是包括NHF在内的许多基因都以基因型特异性特异性或内在表达。植物中已知的冷响应基因的表达模式导致两个DH系中的膜泄漏差异,这表明基因表达的时机对赋予抗冻性而不是表达水平更为重要。否则,耐受性将与冷处理之前的转录本水平有关或受其他机制调控。总体而言,这些结果表明,在B. rapa的冷处理过程中,共同的信号通路和各种转录调控机制共同起作用。我们新开发的Br135K寡聚微阵列将用于转录组分析,并将提供有关B. rapa中冷胁迫的有价值的见解。

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