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一种副突变现象与玉米低植酸1-241(lpa1-241)性状的遗传学有关。

A paramutation phenomenon is involved in the genetics of maize low phytic acid1-241 (lpa1-241) trait.

作者信息

Pilu R, Panzeri D, Cassani E, Cerino Badone F, Landoni M, Nielsen E

机构信息

Dipartimento di Produzione Vegetale, Università degli Studi di Milano, Via celoria 2, Milan, Italy.

出版信息

Heredity (Edinb). 2009 Mar;102(3):236-45. doi: 10.1038/hdy.2008.96. Epub 2008 Sep 10.

Abstract

So far, in maize, three classes of mutants involved in phytic acid biosynthesis have been isolated: lpa1, lpa2 and lpa3. In 2007, a gene tagging experiment performed by Shi et al. found that mutations in ZmMRP4 (multidrug resistance-associated proteins 4) gene cause lpa1 phenotype. In previous studies, we isolated and described a single recessive lpa mutation (originally named lpa241), which was allelic to the lpa1-1 mutant, and was consequently renamed lpa1-241. It showed a decrease in the expression of the myo-inositol (Ins)-3-phosphate synthase gene (mips1S). In this study, we present genetic and molecular analyses of the lpa1-241 mutation that indicate an epigenetic origin of this trait, that is, a paramutagenic interaction that results in meiotically heritable changes in ZmMRP4 gene expression, causing a strong pleiotropic effect on the whole plant. The use of a 5-Azacytidine treatment provided data suggesting an association between gene methylation and the lpa1-241 phenotype. To our knowledge, this is the first report of a paramutagenic activity not involving flavonoid biosynthesis in maize, but regarding a key enzyme of an important metabolic pathway in plants.

摘要

到目前为止,在玉米中,已分离出三类参与植酸生物合成的突变体:lpa1、lpa2和lpa3。2007年,Shi等人进行的一项基因标签实验发现,ZmMRP4(多药耐药相关蛋白4)基因突变会导致lpa1表型。在之前的研究中,我们分离并描述了一个单一的隐性lpa突变(最初命名为lpa241),它与lpa1-1突变体等位,因此重新命名为lpa1-241。它显示出肌醇(Ins)-3-磷酸合酶基因(mips1S)的表达下降。在本研究中,我们对lpa1-241突变进行了遗传和分子分析,结果表明该性状起源于表观遗传,即一种副突变相互作用,导致ZmMRP4基因表达发生减数分裂可遗传的变化,对整个植株产生强烈的多效性影响。使用5-氮杂胞苷处理提供的数据表明基因甲基化与lpa1-241表型之间存在关联。据我们所知,这是关于玉米中不涉及类黄酮生物合成但涉及植物重要代谢途径关键酶的副突变活性的首次报道。

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