首页> 美国卫生研究院文献>Frontiers in Plant Science >Heterologous over-expression of ACC SYNTHASE8 (ACS8) in Populus tremula x P. alba clone 717-1B4 results in elevated levels of ethylene and induces stem dwarfism and reduced leaf size through separate genetic pathways
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Heterologous over-expression of ACC SYNTHASE8 (ACS8) in Populus tremula x P. alba clone 717-1B4 results in elevated levels of ethylene and induces stem dwarfism and reduced leaf size through separate genetic pathways

机译:白杨x P. alba克隆717-1B4中ACC SYNTHASE8(ACS8)的异源过量表达导致乙烯含量升高并通过单独的遗传途径诱导茎矮化和减小叶片大小

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摘要

Plant height is an important agronomic and horticultural trait that impacts plant productivity, durability and esthetic appeal. A number of the plant hormones such as gibberellic acid (GA), auxin and ethylene have been linked to control of plant architecture and size. Reduction in GA synthesis and auxin transport result in dwarfism while ethylene may have a permissive or repressive effect on tissue growth depending upon the age of plant tissues or the environmental conditions considered. We describe here an activation-tagged mutant of Populus tremula x P. alba clone 717-1B4 identified from 2000 independent transgenic lines due to its significantly reduced growth rate and smaller leaf size. Named dwarfy, the phenotype is due to increased expression of PtaACC SYNTHASE8, which codes for an enzyme in the first committed step in the biosynthesis of ethylene. Stems of dwarfy contain fiber and vessel elements that are reduced in length while leaves contain fewer cells. These morphological differences are linked to PtaACS8 inducing different transcriptomic programs in the stem and leaf, with genes related to auxin diffusion and sensing being repressed in the stem and genes related to cell division found to be repressed in the leaves. Altogether, our study gives mechanistic insight into the genetics underpinning ethylene-induced dwarfism in a perennial model organism.
机译:株高是重要的农艺和园艺性状,会影响植株的生产力,耐久性和美观性。许多植物激素,如赤霉素(GA),生长素和乙烯都与控制植物的结构和大小有关。 GA合成和植物生长素的运输减少会导致侏儒症,而乙烯对植物的生长可能具有允许或抑制的作用,具体取决于植物组织的年龄或所考虑的环境条件。我们在这里描述了从2000年独立的转基因系中鉴定出的杨白杨x白杨假单胞菌克隆717-1B4的激活标记突变体,这是由于其生长速度显着降低和叶片较小。该表型被称为“矮人”,是由于PtaACC SYNTHASE8的表达增加,它在乙烯生物合成的第一个重要步骤中编码一种酶。矮小的茎包含纤维和血管元素,其长度减少,而叶子包含的细胞较少。这些形态学差异与PtaACS8诱导茎和叶中不同的转录组程序有关,与生长素扩散和感觉相关的基因在茎中被抑制,而与细胞分裂相关的基因在叶中被抑制。总而言之,我们的研究为多年生模式生物中乙烯诱导的矮化的遗传学提供了机械学的见解。

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