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首页> 外文期刊>BMC Plant Biology >An invaluable transgenic blueberry for studying chilling-induced flowering in woody plants
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An invaluable transgenic blueberry for studying chilling-induced flowering in woody plants

机译:用于学习在木质植物中的冷静诱导的开花的一种无价的转基因蓝莓

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Many deciduous woody crops require a minimum level of chilling to break dormancy and allow the seasonal growth of vegetative and floral buds. In this study, we report the discovery of an invaluable transgenic event of the blueberry cultivar ‘Legacy’ (hereafter, Mu-Legacy) for studying chilling-induced flowering in woody plants. Mu-legacy and its progeny provide a unique material to study the unknown mechanism of chilling-mediated flowering in woody plants. Unlike nontransgenic ‘Legacy’ and plants of 48 other transgenic events, Mu-Legacy plants were able to flower under nonchilling conditions and had early flower bud formation, reduced plant size, and reduced chilling requirement for normal flowering. These characteristics were heritable and also observed in self-pollinated, transgenic T1 progenies of Mu-Legacy. A 47-Kbp genomic sequence surrounding the transgene insertion position was identified. RNA-sequencing data showed increased expression of a RESPONSE REGULATOR 2-like gene (VcRR2), located adjacent to the insertion position in Mu-Legacy and likely driven by the CaMV 35S promoter of the transgene. The Mu-Legacy showed 209 differentially expressed genes (DEGs) in nonchilled flower buds (compared to nontransgenic ‘Legacy’), of which only four DEGs were in the flowering pathway. This suggests altered expression of these few genes, VcRR2 and four flowering DEGs, is sufficient to significantly change flowering behavior in Mu-Legacy. The significance of VcRR2 in Mu-Legacy suggests that the VcRR2-involved cytokinin pathway likely contributes to the major differences in chilling-mediated flowering between woody and herbaceous plants. More importantly, Mu-Legacy shows increased yield potential, a decreased chilling requirement, and better winter hardiness than many low-chilling cultivars growing in southern warm winter conditions.
机译:许多落叶木质作物需要最低水平的冷却,以打破休眠,允许营养和花蕾的季节性生长。在这项研究中,我们向研究在木质植物中的寒冷诱导的开花的蓝莓品种“遗留”(以下,遗传)中发现了一种无价的转基因事件的发现。穆遗产及其后代提供了一种独特的材料来研究冷冻介导的开花在木质植物中的未知机制。与非致命的“遗产”和48种其他转基因事件的植物不同,亩遗留植物能够在非频率的条件下花,并且具有早期花芽形成,降低植物尺寸,并降低正常开花的冷却要求。这些特征是遗传性的,并且还在自授粉,转基因T1后代观察到穆遗产。鉴定了围绕转基因插入位置的47kbp基因组序列。 RNA测序数据显示响应调节剂2样基因(VCRR2)的表达增加,位于穆遗留的插入位置附近,并且可能由转基因的CAMV 35s启动子驱动。 MU-遗留在非舱内花蕾中显示出209个差异表达的基因(DEGS)(与非转译的遗留相比),其中仅在开花途径中仅进行了四次。这表明这些少数基因的表达改变了,VCRR2和四个开花段,足以显着改变穆遗产的开花行为。 VCRR2在穆遗产中的意义表明,VCRR2涉及的细胞蛋白途径可能有助于木质和草本植物之间的冷冻介导的开花的主要差异。更重要的是,穆遗留表明产量潜力增加,降低的冷却要求,比在南部温暖的冬季条件下生长的许多低寒冷的品种,更好的冬季耐寒性。

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