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Cloning, Chromosome Mapping and Expression Analysis of an R2R3-MYB Gene under-expressed in Maize Hybrid

机译:玉米杂种低表达的R2R3-MYB基因的克隆,染色体定位及表达分析

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R2R3-MYB transcription factors play important role in transcriptional controls during higher plant metabolism and development. In this study, an R2R3-MYB gene was isolated from maize according to an EST, which expressed differentially between a hybrid and the two parents on a cDNA chip. The full-length cDNA, designated by ZmMYBL1 (GenBank accession no. AY365033) consists of 1417 nucleotides and contains an open reading frame of 828 bp. The deduced amino acid sequence contained two conserved MYB domains near its N-terminus, a conserved E1 motif and an acidic Ser/Thr rich region toward its C-terminus. Southern blot analysis revealed ZmMYBL1 could be a single copy gene belonging to a multi-gene family in the maize genome. Expression analysis showed ZmMYBL1 transcripts accumulated in various tissues examined, with strong level in tassel and weak level in leaf. Also it was under-expressed in root, stem, and leaf of hybrid as compared with that of the two parents. ZmMYBL1 was mapped on maize chromosome bin7.03 between two SSR markers, bn1g339 and umc1865 using Yuyu22 recombinant inbred line population. A QTL for root average diameter in maize seedlings was also localized on the corresponding region of chromosome 7 within the interval ZmMYBLI-bnIg1805. A possible role of ZmMYBL1 and its relation to maize heterosis were discussed based on these results.
机译:R2R3-MYB转录因子在植物新陈代谢和发育过程中的转录控制中起着重要作用。在这项研究中,根据EST从玉米中分离了R2R3-MYB基因,该基因在cDNA芯片上的杂种和两个亲本之间差异表达。由ZmMYBL1(GenBank登录号AY365033)指定的全长cDNA由1417个核苷酸组成,并包含828 bp的开放阅读框。推导的氨基酸序列在其N末端附近包含两个保守的MYB结构域,一个保守的E1基序和一个向其C末端酸性的富含Ser / Thr的区域。 Southern印迹分析显示ZmMYBL1可能是玉米基因组中一个多基因家族的单拷贝基因。表达分析表明,ZmMYBL1转录本在各种组织中积累,流苏水平高,叶片水平低。与两个亲本相比,它在杂种的根,茎和叶中表达不足。使用Yuyu22重组自交系群体将ZmMYBL1定位在两个SSR标记bn1g339和umc1865之间的玉米染色体bin7.03上。玉米幼苗的根平均直径的QTL也位于ZmMYBLI-bnIg1805区间内的7号染色体的相应区域。基于这些结果,讨论了ZmMYBL1的可能作用及其与玉米杂种优势的关系。

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