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首页> 外文期刊>Molecular biology reports >Constitutive expression of two apple (Malus x domestica Borkh.) homolog genes of LIKE HETEROCHROMATIN PROTEIN1 affects flowering time and whole-plant growth in transgenic Arabidopsis
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Constitutive expression of two apple (Malus x domestica Borkh.) homolog genes of LIKE HETEROCHROMATIN PROTEIN1 affects flowering time and whole-plant growth in transgenic Arabidopsis

机译:LIKE杂色氨酸蛋白1的两个苹果(Malus x domestica Borkh。)同源基因的组成性表达影响转基因拟南芥的开花时间和全株生长

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摘要

Fruit trees, such as apple (Malus x domestica Borkh.), are woody perennial plants with a long juvenile phase. The biological analysis for the regulation of flowering time provides insights into the reduction of juvenile phase and the acceleration of breeding in fruit trees. In Arabidopsis, LIKE HETEROCHROMATIN PROTEIN1 (LHP1) is involved in epigenetic silencing of the target genes such as flowering genes. We isolated and characterized twin apple LHP1 homolog genes, MdLHP1a and MdLHP1b. These genes may have been generated as a result of ancient genome duplication. Although the putative MdLHP1 proteins showed lower similarity to any other known plant LHP1 homologs, a chromo domain, a chromo shadow domain, and the nuclear localization signal motifs were highly conserved among them. RT-PCR analysis showed that MdLHP1a and MdLHP1b were expressed constantly in developing shoot apices of apple trees throughout the growing season. Constitutive expression of MdLHP1a or MdLHP1b could compensate for the pleiotropic phenotype of lhp1/tfl2 mutant, suggesting that apple LHP1 homolog genes are involved in the regulation of flowering time and whole-plant growth. Based on these results, LHP1 homolog genes might have rapidly evolved among plant species, but the protein functions were conserved, at least between Arabidopsis and apple.
机译:果树,例如苹果(Malus x domestica Borkh。),是多年生木本多年生植物,幼年期较长。调节开花时间的生物学分析提供了减少幼年期和加快果树育种的见识。在拟南芥中,像杂色氨酸蛋白1(LHP1)参与了靶基因(如开花基因)的表观遗传沉默。我们分离并鉴定了双苹果LHP1同源基因MdLHP1a和MdLHP1b。这些基因可能是古代基因组复制的结果。尽管推定的MdLHP1蛋白与任何其他已知的植物LHP1同源物都显示出较低的相似性,但它们之间的染色体结构域,染色体阴影结构域和核定位信号基序都高度保守。 RT-PCR分析表明,在整个生长季节中,MdLHP1a和MdLHP1b在苹果树的茎尖不断表达。 MdLHP1a或MdLHP1b的组成型表达可以补偿lhp1 / tfl2突变体的多效性表型,这表明苹果LHP1同源基因参与开花时间和整株植物生长的调控。基于这些结果,LHP1同源基因可能已在植物物种中快速进化,但蛋白质功能得以保留,至少在拟南芥和苹果之间。

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