首页> 外文期刊>Journal of Experimental Botany >Overexpression of a bacterial 1-deoxy-D-xylulose 5-phosphate synthase gene in potato tubers perturbs the isoprenoid metabolic network: implications for the control of the tuber life cycle
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Overexpression of a bacterial 1-deoxy-D-xylulose 5-phosphate synthase gene in potato tubers perturbs the isoprenoid metabolic network: implications for the control of the tuber life cycle

机译:马铃薯块茎中细菌1-脱氧-D-木酮糖5-磷酸合酶基因的过表达扰动了类异戊二烯代谢网络:控制块茎生命周期的意义

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Potato tubers were engineered to express a bacterial gene encoding 1-deoxy-D-xylulose 5-phosphate synthase (DXS) in order to investigate the effects of perturbation of isoprenoid biosynthesis. Twenty-four independent transgenic lines out of 38 generated produced tubers with significantly elongated shape that also exhibited an early tuber sprouting phenotype. Expression analysis of nine transgenic lines (four exhibiting the phenotype and five showing a wild-type phenotype) demonstrated that the phenotype was strongly associated with dxs expression. At harvest, apical bud growth had already commenced in dxs-expressing tubers whereas in control lines no bud growth was evident until dormancy was released after 56-70 d of storage. The initial phase of bud growth in dxs tubers was followed by a lag period of approximately 56 d, before further elongation of the developing sprouts could be detected. Thus dxs expression results in the separation of distinct phases in the dormancy and sprouting processes. In order to account for the sprouting phenotype, the levels of plastid-derived isoprenoid growth regulators were measured in transgenic and control tubers. The major difference measured was an increase in the level of trans-zeatin riboside in tubers at harvest expressing dxs. Additionally, compared with controls, in some dxs-expressing lines, tuber carotenoid content increased approximately 2-fold, with most of the increase accounted for by a 6-7-fold increase in phytoene.
机译:为了研究扰动类异戊二烯生物合成的作用,将马铃薯块茎工程化以表达编码1-脱氧-D-木酮糖5-磷酸合酶(DXS)的细菌基因。 38个品种中有24个独立的转基因品系产生了显着延长的形状的块茎,还表现出早期的块茎发芽表型。九个转基因品系的表达分析(四个显示该表型,五个显示野生型表型)表明该表型与dxs表达密切相关。收获时,表达dxs的块茎已开始顶端芽的生长,而在对照系中,直到储存56-70 d休眠后才出现明显的芽生长。在dxs块茎中芽生长的初始阶段之后是大约56 d的滞后期,然后才能检测到正在发育的新芽进一步伸长。因此,dxs表达导致休眠和发芽过程中不同相的分离。为了说明发芽表型,在转基因块茎和对照块茎中测量了来自质体的类异戊二烯生长调节剂的水平。测得的主要差异是收获期表达dxs的块茎中反玉米蛋白核糖苷水平的增加。另外,与对照相比,在某些表达dxs的品系中,块茎类胡萝卜素含量增加了约2倍,其中大部分的增加是由于植物六氢番茄红素增加了6-7倍。

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