首页> 美国卫生研究院文献>Frontiers in Plant Science >Does gibberellin biosynthesis play a critical role in the growth of Lolium perenne? Evidence from a transcriptional analysis of gibberellin and carbohydrate metabolic genes after defoliation
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Does gibberellin biosynthesis play a critical role in the growth of Lolium perenne? Evidence from a transcriptional analysis of gibberellin and carbohydrate metabolic genes after defoliation

机译:赤霉素的生物合成在黑麦草的生长中起关键作用吗?脱叶后赤霉素和碳水化合物代谢基因转录分析的证据

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摘要

Global meat and milk production depends to a large extent on grazed pastures, with Lolium perenne being the major forage grass in temperate regions. Defoliation and subsequent regrowth of leaf blades is a major and essential event with respect to L. perenne growth and productivity. Following defoliation, carbohydrates (mainly fructans and sucrose) have to be mobilized from heterotrophic tissues to provide energy and carbon for regrowth of photosynthetic tissues. This mobilization of reserve carbohydrates requires a substantial change in the expression of genes coding for enzymes involved in carbohydrate metabolism. Here we tested the hypothesis that gibberellins (GA) are at the core of the processes regulating the expression of these genes. Thus, we examined the transcript profiles of genes involved in carbohydrate and GA metabolic pathways across a time course regrowth experiment. Our results show that following defoliation, the immediate reduction of carbohydrate concentrations in growing tissues is associated with a concomitant increase in the expression of genes encoding carbohydrate mobilizing invertases, and was also associated with a strong decrease in the expression of fructan synthesizing fructosyltransferase genes. We also show that the decrease in fructan levels is preceded by increased expression of the GA activating gene GA3-oxidase and decreased expression of the GA inactivating gene GA2-oxidase in sheaths. GA3-oxidase expression was negatively, while GA2-oxidase positively linked to sucrose concentrations. This study provides indicative evidence that gibberellins might play a role in L. perenne regrowth following defoliation and we hypothesize that there is a link between gibberellin regulation and sugar metabolism in L. perenne.
机译:全球肉类和牛奶产量在很大程度上取决于放牧的牧场,黑麦草是温带地区主要的牧草。叶片的落叶和随后的再生长是关于紫苏的生长和生产力的主要且必不可少的事件。脱叶后,必须从异养组织中调集碳水化合物(主要是果聚糖和蔗糖),为光合组织的再生提供能量和碳。储备碳水化合物的这种动员要求编码参与碳水化合物代谢的酶的基因的表达发生实质性变化。在这里,我们测试了赤霉素(GA)是调节这些基因表达过程的核心的假设。因此,我们研究了在整个时间过程中,参与碳水化合物和GA代谢途径的基因的转录本概况。我们的研究结果表明,脱叶后,生长组织中碳水化合物浓度的立即降低与编码碳水化合物动员转化酶的基因表达的增加有关,同时也与果糖合成果糖基转移酶基因的表达的强烈下降有关。我们还表明,果聚糖水平的降低是由鞘内GA激活基因GA3-氧化酶的表达增加和GA灭活基因GA2-氧化酶的表达降低所致。 GA3-氧化酶表达呈负相关,而GA2-氧化酶与蔗糖浓度呈正相关。这项研究提供了指示性证据,表明赤霉素可能在落叶后的紫苏乳酸菌再生中发挥作用,我们假设赤霉素的调控与紫苏乳酸菌糖代谢之间存在联系。

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