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首页> 外文期刊>Frontiers in Plant Science >Bulked Segregant RNA-seq Reveals Differential Expression and SNPs of Candidate Genes Associated with Waterlogging Tolerance in Maize
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Bulked Segregant RNA-seq Reveals Differential Expression and SNPs of Candidate Genes Associated with Waterlogging Tolerance in Maize

机译:膨胀的杀菌RNA-SEQ揭示了与玉米涝耐受相关的候选基因的差异表达和SNP

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Waterlogging has increasingly become one of the major constraints to maize productivity in some maize production zones because it causes serious yield loss. Bulked segregant RNA-seq (BSR-seq) has been widely applied to profile candidate genes and map associated Single Nucleotide Polymorphism (SNP) markers in many species. In this study, 10 waterlogging sensitive and eight tolerant inbred lines were selected from 60 maize inbred lines with waterlogging response determined and preselected by the International Maize and Wheat Improvement Center (CIMMYT) from over 400 tropical maize inbred lines. BSR-seq was performed to identify differentially expressed genes and SNPs associated with waterlogging tolerance. Upon waterlogging stress, 354 and 1094 genes were differentially expressed in the tolerant and sensitive pools, respectively, compared to untreated controls. When tolerant and sensitive pools were compared, 593 genes were differentially expressed under untreated and 431 genes under waterlogged conditions, of which 122 genes overlapped. To validate the BSR-seq results, the expression levels of six genes were determined by qRT-PCR. The qRT-PCR results were consistent with BSR-seq results. Comparison of allelic polymorphism in mRNA sequences between tolerant and sensitive pools revealed 165 (normal condition) and 128 (waterlogged condition) high-probability SNPs. We found 18 overlapping SNPs with genomic positions mapped. Eighteen SNPs were contained in 18 genes, and eight and nine of 18 genes were responsive to waterlogging stress in tolerant and sensitive lines, respectively. Six alleles of the 18 originated from tolerant pool were significantly up-regulated under waterlogging, but not those from sensitive pool. Importantly, one allele ( GRMZM2G055704 ) of the six genes was mapped between umc1619 and umc1948 on chromosome 1 where a QTL associated with waterlogging tolerance was identified in a previous research, strongly indicating that GRMZM2G055704 is a candidate gene responsive to waterlogging. Our research contributes to the knowledge of the molecular mechanism for waterlogging tolerance in maize.
机译:Waterlogging越来越成为一些玉米生产区玉米生产力的主要限制之一,因为它会导致严重的产量损失。膨胀的杀菌RNA-SEQ(BSR-SEQ)已被广泛应用于概况候选基因并在许多物种中映射相关的单核苷酸多态性(SNP)标记。在该研究中,从60米玉米自交系中选择了10种含水钙和耐受血液的血液近交系,从400多种热带玉米自交系中确定和预选的涝渍响应,由国际玉米和小麦改善中心(CIMMYT)预测。进行BSR-SEQ以鉴定与涝耐力相关的差异表达基因和SNP。与未处理的对照相比,落水应激后,354和1094个基因分别在耐受性和敏感的池中差异表达。当比较耐受性和敏感的池时,在未处理的未处理和431个基因下在未处理的条件下差异表达593个基因,其中122个基因重叠。为了验证BSR-SEQ结果,通过QRT-PCR测定六种基因的表达水平。 QRT-PCR结果与BSR-SEQ结果一致。耐受性和敏感池MRNA序列中的等位基因多态性的比较显示为165(正常条件)和128(涝渍条件)高概率SNP。我们发现18个重叠的SNP,映射了基因组位置。 18个基因中含有十八个SNP,八至九的18个基因分别对耐受性和敏感线的耐水性应力响应。源于耐受性池的六个等位基因在涝渍下显着上调,但不是那些来自敏感池的池。重要的是,六个基因的一个等位基因(GRMZM2G055704)在UMC1619和UMC1948上映射在染色体1上,其中在先前的研究中鉴定了与耐涝耐受性相关的QT1,强烈表明GRMZM2G055704是响应于涝渍的候选基因。我们的研究有助于了解玉米耐涝耐受性的分子机制。

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