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Changes in carbohydrate metabolism and endogenous hormone regulation during bulblet initiation and development in Lycoris radiata

机译:Lycoris radiata中老板启动和发育中的碳水化合物代谢和内源激素调节的变化

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Lycoris species have great ornamental and medicinal values; however, their low regeneration efficiency seriously restricts their commercial production. Understanding the mechanism of bulblet propagation in this genus, which has remained underexplored to date, could provide a theoretical basis for improving the reproductive efficiency. Therefore, we studied the bulblet initiation and developmental processes in Lycoris radiata. We found that bulblets are formed on the junctions of the innermost layers of scales and the basal plate, and initially present as an axillary bud and gradually develop into a bulblet. We also determined the changes in carbohydrate and endogenous hormone contents during bulblet initiation and development, as well as the expression patterns of genes involved in carbohydrate metabolism and hormone biosynthesis and signaling through transcriptome analysis. Soluble sugars derived from starch degradation in the outer scales are transported to and promote bulblet initiation and development through starch synthesis in the inner scales. This process is mediated by several genes involved in carbohydrate metabolism, especially genes encoding ADP glucose pyrophosphorylase, a crucial starch synthesis enzyme. As for hormones, endogenous IAA, GA, and ABA content showed an increase and decrease during bulblet initiation and development, respectively, which were consistent with the expression patterns of genes involved in IAA, GA, and ABA synthesis and signal transduction. In addition, a decrease in ZR content may be down- and up-regulated by CK biosynthesis and degradation related genes, respectively, with increasing auxin content. Furthermore, expression levels of genes related to BR, JA, and SA biosynthesis were increased, while that of ethylene biosynthesis genes was decreased, which was also consistent with the expression patterns of their signal transduction genes. The present study provides insights into the effect of carbohydrate metabolism and endogenous hormone regulation on control of L. radiata bulblet initiation and development. Based on the results, we propose several suggestions to improve L. radiata propagation efficiency in production, which will provide directions for future research.
机译:Lycoris物种具有良好的装饰性和药用价值;然而,它们的低再生效率严重限制了他们的商业生产。了解该属性在迄今为止持近过光泽的该属的子弹繁殖机制可以为提高生殖效率提供理论依据。因此,我们研究了Lycoris radiata的推子启动和发育过程。我们发现,在鳞片和基板的最内层和基板的结块上形成了推子,并且最初作为腋芽呈现并逐渐地发展成器。我们还确定在推子启动和发育过程中碳水化合物和内源激素含量的变化,以及参与碳水化合物代谢和激素生物合成的基因的表达模式和通过转录组分析的信号传导。通过内尺度的淀粉合成来运输从外鳞片中衍生自淀粉降解的可溶性糖通过内尺度的淀粉合成来运输到并促进子弹开始和发育。该方法由涉及碳水化合物代谢的几种基因介导,特别是编码ADP葡萄糖焦磷酸化酶的基因,这是一个关键的淀粉合成酶。至于激素,内源性IAA,GA和ABA含量分别在推子启动和开发中分别增加和减少,其与参与IAA,GA和ABA合成和信号转导的基因的表达模式一致。此外,Zr含量的降低分别可以分别通过CK生物合成和降解相关基因来下降和上调,随着增长率含量的增加。此外,增加了与Br,Ja和Sa生物合成相关的基因的表达水平,而乙烯生物合成基因的基因的表达水平降低,这也与其信号转导基因的表达模式一致。本研究提供了碳水化合物代谢和内源激素调控对L. radiata子推子启动和发育的控制的影响。根据结果​​,我们提出了若干建议,以提高生产中的L. Radiata传播效率,这将为未来的研究提供指示。

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