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Digital Gene Expression Analysis of Corky Split Vein Caused by Boron Deficiency in ‘Newhall’ Navel Orange (Citrus sinensis Osbeck) for Selecting Differentially Expressed Genes Related to Vascular Hypertrophy

机译:Newhall脐橙(Citrus sinensis Osbeck)缺硼引起的弯曲裂脉的数字化基因表达分析用于选择与血管肥大相关的差异表达基因

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摘要

Corky split vein caused by boron (B) deficiency in ‘Newhall’ Navel Orange was studied in the present research. The boron-deficient citrus exhibited a symptom of corky split vein in mature leaves. Morphologic and anatomical surveys at four representative phases of corky split veins showed that the symptom was the result of vascular hypertrophy. Digital gene expression (DGE) analysis was performed based on the Illumina HiSeq™ 2000 platform, which was applied to analyze the gene expression profilings of corky split veins at four morphologic phases. Over 5.3 million clean reads per library were successfully mapped to the reference database and more than 22897 mapped genes per library were simultaneously obtained. Analysis of the differentially expressed genes (DEGs) revealed that the expressions of genes associated with cytokinin signal transduction, cell division, vascular development, lignin biosynthesis and photosynthesis in corky split veins were all affected. The expressions of WOL and ARR12 involved in the cytokinin signal transduction pathway were up-regulated at 1st phase of corky split vein development. Furthermore, the expressions of some cell cycle genes, CYCs and CDKB, and vascular development genes, WOX4 and VND7, were up-regulated at the following 2nd and 3rd phases. These findings indicated that the cytokinin signal transduction pathway may play a role in initiating symptom observed in our study.
机译:在本研究中,研究了由'Newhall'脐橙中硼(B)缺乏引起的弯曲的裂状静脉。缺硼的柑橘在成熟叶片中表现出弯曲的裂状静脉症状。在四个典型的弯状裂静脉的形态学和解剖学调查表明,症状是血管肥大的结果。基于Illumina HiSeq™2000平台进行了数字基因表达(DGE)分析,该平台用于分析四个形态阶段的蛇形裂口静脉的基因表达谱。每个库超过530万个干净读段已成功定位到参考数据库,并且每个库同时获得了22897个以上的定位基因。对差异表达基因(DEGs)的分析显示,在弯曲的裂口中,与细胞分裂素信号转导,细胞分裂,血管发育,木质素生物合成和光合作用相关的基因表达均受到影响。细胞分裂素信号转导通路中参与的WOL和ARR12的表达在卷曲裂静脉发育的第1 期上调。此外,一些细胞周期基因CYCs和CDKB以及血管发育基因WOX4和VND7的表达在接下来的第2 和第3 rd 阶段上调。 。这些发现表明,细胞分裂素信号转导途径可能在引发本研究中观察到的症状中起作用。

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