首页> 外文期刊>BMC Genomics >Transcriptome analysis reveals the effects of sugar metabolism and auxin and cytokinin signaling pathways on root growth and development of grafted apple
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Transcriptome analysis reveals the effects of sugar metabolism and auxin and cytokinin signaling pathways on root growth and development of grafted apple

机译:转录组分析揭示糖代谢,生长素和细胞分裂素信号通路对嫁接苹果根系生长发育的影响

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Background The root architecture of grafted apple ( Malus spp.) is affected by various characteristics of the scions. To provide information on the molecular mechanisms underlying this influence, we examined root transcriptomes of M. robusta rootstock grafted with scions of wild-type (WT) apple ( M. spectabilis ) and a more-branching (MB) mutant at the branching stage. Results The growth rate of rootstock grafted MB was repressed significantly, especially the primary root length and diameter, and root weight. Biological function categories of differentially expressed genes were significantly enriched in processes associated with hormone signal transduction and intracellular activity, with processes related to the cell cycle especially down-regulated. Roots of rootstock grafted with MB scions displayed elevated auxin and cytokinin contents and reduced expression of MrPIN1 , MrARF , MrAHP , most MrCRE1 genes, and cell growth-related genes MrGH3 , MrSAUR and MrTCH4 . Although auxin accumulation and transcription of MrPIN3 , MrALF1 and MrALF4 tended to induce lateral root formation in MB-grafted rootstock, the number of lateral roots was not significantly changed. Sucrose, fructose and glucose contents were not decreased in MB-grafted roots compared with those bearing WT scions, but glycolysis and tricarboxylic acid cycle metabolic activities were repressed. Root resistance and nitrogen metabolism were reduced in MB-grafted roots as well. Conclusions Our findings suggest that root growth and development of rootstock are mainly influenced by sugar metabolism and auxin and cytokinin signaling pathways. This study provides a basis that the characteristics of scions are related to root growth and development, resistance and activity of rootstocks.
机译:背景技术嫁接的苹果(苹果属苹果属)的根系结构受接穗的各种特性影响。为了提供有关这种影响的分子机制的信息,我们检查了在分支阶段嫁接有野生型(WT)苹果(M. spectabilis)和更分支(MB)突变体的接穗的罗汉果根茎的根转录组。结果砧木嫁接的MB的生长速度受到显着抑制,尤其是初生根的长度和直径以及根重。差异表达基因的生物学功能类别在与激素信号转导和细胞内活性相关的过程中显着丰富,尤其是与细胞周期相关的过程被下调。 MB接穗嫁接的砧木的根显示出生长素和细胞分裂素含量升高,MrPIN1,MrARF,MrAHP,大多数MrCRE1基因以及与细胞生长相关的基因MrGH3,MrSAUR和MrTCH4的表达降低。尽管生长素的积累和MrPIN3,MrALF1和MrALF4的转录倾向于诱导MB嫁接的砧木中侧根的形成,但侧根的数量没有明显变化。与带有WT接穗的MB相比,MB嫁接的根中的蔗糖,果糖和葡萄糖含量没有降低,但是糖酵解和三羧酸循环代谢活性受到抑制。 MB嫁接的根系的根系抗性和氮代谢也降低了。结论我们的发现表明,砧木的根生长和发育主要受糖代谢以及生长素和细胞分裂素信号通路的影响。该研究为接穗的特性与根的生长发育,砧木的抗性和活性相关提供了基础。

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