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首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Genome-wide analysis of maize GPAT gene family and cytological characterization and breeding application of ZmMs33/ZmGPAT6 gene
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Genome-wide analysis of maize GPAT gene family and cytological characterization and breeding application of ZmMs33/ZmGPAT6 gene

机译:玉米GPAT基因家族的基因组分析及ZMMS33 / ZMGPAT6基因的细胞学特征及育种应用

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Key messageGenome-wide analysis of maize GPAT gene family, cytological characterization of ZmMs33/ZmGPAT6 gene encoding an ER-localized protein with four conserved motifs, and its molecular breeding application in maize.AbstractGlycerol-3-phosphate acyltransferase (GPAT) mediates the initial step of glycerolipid biosynthesis and plays pivotal roles in plant growth and development. Compared with GPAT genes in Arabidopsis, our understanding to maize GPAT gene family is very limited. Recently, ZmMs33 gene has been identified to encode a sn-2 GPAT protein and control maize male fertility in our laboratory (Xie et al. in Theor Appl Genet 131:1363-1378, 2018). However, the functional mechanism of ZmMs33 remains elusive. Here, we reported the genome-wide analysis of maize GPAT gene family and found that 20 maize GPAT genes (ZmGPAT1-20) could be classified into three distinct clades similar to those of ten GPAT genes in Arabidopsis. Expression analyses of these ZmGPAT genes in six tissues and in anther during six developmental stages suggested that some of ZmGPATs may play crucial roles in maize growth and anther development. Among them, ZmGPAT6 corresponds to the ZmMs33 gene. Systemic cytological observations indicated that loss function of ZmMs33/ZmGPAT6 led to defective anther cuticle, arrested degeneration of anther wall layers, abnormal formation of Ubisch bodies and exine and ultimately complete male sterility in maize. The endoplasmic reticulum-localized ZmMs33/ZmGPAT6 possessed four conserved amino acid motifs essential for acyltransferase activity, while ZmMs33/ZmGPAT6 locus and its surrounding genomic region have greatly diversified during evolution of gramineous species. Finally, a multi-control sterility system was developed to produce ms33 male-sterile lines by using a combination strategy of transgene and marker-assisted selection. This work will provide useful information for further deciphering functional mechanism of ZmGPAT genes and facilitate molecular breeding application of ZmMs33/ZmGPAT6 gene in maize.
机译:关键的玉米GPAT基因系列分析玉米GPAT基因系列,ZMMS33 / ZMGPAT6基因的细胞学表征,其用四个保守的基序编码ER局部化蛋白,其分子育种应用在玉米中.Abstractgycerol-3-磷酸酰基转移酶(GPAT)介导初始步骤甘油脂生物合成,并在植物生长和发育中起枢转作用。与拟南芥的GPAT基因相比,我们对玉米GPAT基因家族的理解非常有限。最近,已鉴定ZMMS33基因在我们的实验室中编码SN-2 GPAT蛋白并对控制玉米男性生育能力(谢等人。在您的Appl Genet 131:1363-1378,2018)中)。然而,ZMMS33的功能机制仍然难以捉摸。在这里,我们报道了玉米GPAT基因家族的基因组分析,发现20级玉米GPAT基因(ZMGPAT1-20)可以分为三种不同的曲线,类似于拟南芥中的十个GPAT基因。在六种组织中和在六个发育阶段的六个组织中和花药中的表达分析表明,一些ZMGPATS可能在玉米生长和花药发育中起重要作用。其中,ZMGPAT6对应于ZMMS33基因。全身性细胞学观察表明,ZMMS33 / ZMGPAT6的损失功能导致花药角质层的缺陷,花药层的变性,ubisch体的异常形成以及玉米中的均外雄性不育,最终完全雄性不育。内质网局部化ZMMS33 / ZMGPAT6具有四个保守的氨基酸基序,该基氨基酸基序对于酰基转移酶活性必不可少,而ZMMS33 / ZMGPAT6基因座及其周围的基因组区域在晶体物种的演变过程中大大多样化。最后,开发了一种多控制性无​​菌系统,通过使用转基因的组合策略和标记辅助选择来产生MS33雄性无菌线。该作品将提供有用的信息,用于进一步解密ZMGPAT基因的功能机制,促进ZMMS33 / ZMGPAT6基因在玉米中的分子育种应用。

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  • 作者单位

    Univ Sci &

    Technol Beijing Biol &

    Agr Res Ctr Beijing 100024 Peoples R China;

    Univ Sci &

    Technol Beijing Biol &

    Agr Res Ctr Beijing 100024 Peoples R China;

    Beijing Solidwill Sci Tech Co Ltd Beijing Int Sci &

    Technol Cooperat Base Biotech B Beijing Engn Lab Main Crop Biotech Breeding Beijing Peoples R China;

    Univ Sci &

    Technol Beijing Biol &

    Agr Res Ctr Beijing 100024 Peoples R China;

    Univ Sci &

    Technol Beijing Biol &

    Agr Res Ctr Beijing 100024 Peoples R China;

    Univ Sci &

    Technol Beijing Biol &

    Agr Res Ctr Beijing 100024 Peoples R China;

    Univ Sci &

    Technol Beijing Biol &

    Agr Res Ctr Beijing 100024 Peoples R China;

    Univ Sci &

    Technol Beijing Biol &

    Agr Res Ctr Beijing 100024 Peoples R China;

    Univ Sci &

    Technol Beijing Biol &

    Agr Res Ctr Beijing 100024 Peoples R China;

    Univ Sci &

    Technol Beijing Biol &

    Agr Res Ctr Beijing 100024 Peoples R China;

    Beijing Solidwill Sci Tech Co Ltd Beijing Int Sci &

    Technol Cooperat Base Biotech B Beijing Engn Lab Main Crop Biotech Breeding Beijing Peoples R China;

    Univ Sci &

    Technol Beijing Biol &

    Agr Res Ctr Beijing 100024 Peoples R China;

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  • 正文语种 eng
  • 中图分类 医学遗传学;
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