首页> 美国卫生研究院文献>Journal of Experimental Botany >Expression pattern of four storage xyloglucan mobilization-related genes during seedling development of the rain forest tree Hymenaea courbaril L.
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Expression pattern of four storage xyloglucan mobilization-related genes during seedling development of the rain forest tree Hymenaea courbaril L.

机译:雨林树Hymenaea courbaril L.苗期发育过程中四个贮藏木葡聚糖动员相关基因的表达模式

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摘要

During seedling establishment, cotyledons of the rain forest tree Hymenaea courbaril mobilize storage cell wall xyloglucan to sustain growth. The polysaccharide is degraded and its products are transported to growing sink tissues. Auxin from the shoot controls the level of xyloglucan hydrolytic enzymes. It is not yet known how important the expression of these genes is for the control of storage xyloglucan degradation. In this work, partial cDNAs of the genes xyloglucan transglycosylase hydrolase (HcXTH1) and β-galactosidase (HcBGAL1), both related to xyloglucan degradation, and two other genes related to sucrose metabolism [alkaline invertase (HcAlkIN1) and sucrose synthase (HcSUS1)], were isolated. The partial sequences were characterized by comparison with sequences available in the literature, and phylogenetic trees were assembled. Gene expression was evaluated at intervals of 6 h during 24 h in cotyledons, hypocotyl, roots, and leaves, using 45-d-old plantlets. HcXTH1 and HcBGAL1 were correlated to xyloglucan degradation and responded to auxin and light, being down-regulated when transport of auxin was prevented by N-1-naphthylphthalamic acid (NPA) and stimulated by constant light. Genes related to sucrose metabolism, HcAlkIN1 and HcSUS1, responded to inhibition of auxin transport in consonance with storage mobilization in the cotyledons. A model is proposed suggesting that auxin and light are involved in the control of the expression of genes related to storage xyloglucan mobilization in seedlings of H. courbaril. It is concluded that gene expression plays a role in the control of the intercommunication system of the source–sink relationship during seeding growth, favouring its establishment in the shaded environment of the rain forest understorey.
机译:在幼苗建立过程中,雨林树Hymenaea courbaril的子叶动员存储细胞壁木葡聚糖来维持生长。多糖被降解,其产物被运输到生长中的水槽组织。芽中的生长素控制木葡聚糖水解酶的水平。尚不知道这些基因的表达对于控制木葡聚糖降解的重要性。在这项工作中,木葡聚糖转糖基化酶水解酶(HcXTH1)和β-半乳糖苷酶(HcBGAL1)的部分cDNA与木葡聚糖降解有关,另外两个与蔗糖代谢有关的基因[碱性转化酶(HcAlkIN1)和蔗糖合酶(HcSUS1)] ,被隔离。通过与文献中可用的序列比较来表征部分序列,并组装系统发育树。使用45 d龄小植株,在子叶,下胚轴,根和叶中以24 h间隔6 h间隔评估基因表达。 HcXTH1和HcBGAL1与木葡聚糖的降解有关,并对生长素和光有反应,当N-1-萘基邻苯二甲酸(NPA)阻止生长素的运输并受到恒定光刺激时,其被下调。与蔗糖代谢有关的基因HcAlkIN1和HcSUS1对子代中生长素运输的抑制与子叶中的储存动员反应。提出了一个模型,表明生长素和光参与了与库巴里尔(H. courbaril)幼苗中存储木葡聚糖动员有关的基因的表达控制。结论是,基因表达在种子生长过程中在源-库关系的互通系统的控制中起作用,有利于其在雨林下层阴影环境中的建立。

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