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一种用于研究木本植物低温诱导开花的宝贵的转基因蓝莓。

An invaluable transgenic blueberry for studying chilling-induced flowering in woody plants.

机构信息

Plant Biotechnology Resource and Outreach Center, Department of Horticulture, Michigan State University, East Lansing, MI, 48824, USA.

出版信息

BMC Plant Biol. 2018 Nov 1;18(1):265. doi: 10.1186/s12870-018-1494-z.

Abstract

BACKGROUND

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.

RESULTS

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 T 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.

CONCLUSIONS

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.

摘要

背景

许多落叶木本作物需要最低水平的冷处理来打破休眠,允许营养和生殖芽的季节性生长。在这项研究中,我们报告了蓝莓品种“传统”(以下简称 Mu-Legacy)的一个宝贵的转基因事件的发现,用于研究木本植物中冷诱导开花的过程。Mu-legacy 及其后代为研究木本植物中冷介导开花的未知机制提供了一种独特的材料。

结果

与非转基因“传统”和其他 48 个转基因事件的植物不同,Mu-Legacy 植物能够在非冷处理条件下开花,并且具有早期花芽形成、植物体型减小和正常开花所需冷处理减少的特征。这些特征是可遗传的,并且也在 Mu-Legacy 的自交、转基因 T 后代中观察到。鉴定出围绕转基因插入位置的 47-Kbp 基因组序列。RNA-seq 数据显示,位于 Mu-Legacy 插入位置附近的 RESPONSE REGULATOR 2 样基因(VcRR2)表达增加,该基因可能受转基因 CaMV 35S 启动子的驱动。Mu-Legacy 在非冷处理的花芽中显示出 209 个差异表达基因(DEGs)(与非转基因“传统”相比),其中只有 4 个 DEGs 位于开花途径中。这表明这些少数基因,VcRR2 和四个开花 DEGs 的表达改变足以显著改变 Mu-Legacy 的开花行为。

结论

VcRR2 在 Mu-Legacy 中的重要性表明,VcRR2 参与的细胞分裂素途径可能有助于木本和草本植物中冷介导开花的主要差异。更重要的是,与在温暖的冬季条件下生长的许多低冷要求的品种相比,Mu-Legacy 显示出增加的产量潜力、降低的冷处理要求和更好的冬季抗寒性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/492c/6211425/8fca3d771be9/12870_2018_1494_Fig1_HTML.jpg

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