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Columnar apple primary roots share some features of the columnar-specific gene expression profile of aerial plant parts as evidenced by RNA-Seq analysis

机译:RNA-Seq分析证明柱状苹果的初生根具有航空植物部分的柱状特异性基因表达谱的某些特征

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摘要

BackgroundPrimary roots (radicles) represent the first visible developmental stages of the plant and are crucial for nutrient supply and the integration of environmental signals. Few studies have analyzed primary roots at a molecular level, and were mostly limited to Arabidopsis. Here we study the primary root transcriptomes of standard type, heterozygous columnar and homozygous columnar apple (Malus x domestica) by RNA-Seq and quantitative real-time PCR. The columnar growth habit is characterized by a stunted main axis and the development of short fruit spurs instead of long lateral branches. This compact growth possesses economic potential because it allows high density planting and mechanical harvesting of the trees. Its molecular basis has been identified as a nested Gypsy-44 retrotransposon insertion; however the link between the insertion and the phenotype as well as the timing of the phenotype emergence are as yet unclear. We extend the transcriptomic studies of columnar tissues to the radicles, which are the earliest developmental stage and investigate whether homozygous columnar seedlings are viable.
机译:背景原始根(胚根)代表植物的第一个可见发育阶段,对于养分供应和环境信号的整合至关重要。很少有研究在分子水平上分析原始根,并且大多限于拟南芥。在这里,我们通过RNA-Seq和定量实时PCR研究标准类型的主要根转录组,即杂合柱状和纯合柱状苹果(Malus x domestica)。柱状生长习性的特征是主轴发育不全,果实短刺而不是侧枝较长。这种紧凑的生长具有经济潜力,因为它可以实现树木的高密度种植和机械采伐。它的分子基础已被确定为嵌套的Gypsy-44逆转录转座子插入。然而,插入和表型之间的联系以及表型出现的时间尚不清楚。我们将柱状组织的转录组学研究扩展到了胚根,胚根是最早的发育阶段,并研究了纯合的柱状幼苗是否可行。

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