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Varied growth, biomass and cellulose content in tobacco expressing yeast-derived invertases

机译:表达酵母酵母转化酶的烟草中各种生长,生物量和纤维素含量

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The effects of the expression of yeast-derived apoplastic (AI) and cytosolic (CI) invertases (EC 3.2.1.26) on biomass and structural carbohydrate accumulation in tobacco (Nicotiana tabacum L. cv. Xanthi) were evaluated. Transgenic tobacco plants expressing AI or CI under the control of either a tandem repeat of the Cauliflower Mosaic Virus 35S promoter (2X35S), or a promoter that drives xylem-localized expression (Petroselinum crispum 4-coumarate:CoA ligase promoter; 4CL) were generated. Yeast-derived invertase transcript levels, invertase protein, enzyme activity, growth parameters as well as both structural and soluble carbohydrates of stem tissue of all transformed lines were quantified. Transgenic tobacco lines expressing invertase under the control of 4CL displayed severe growth retardation with both yeast-derived isogenes. Similarly, several transformed lines expressing either AI or CI regulated by the 2X35S promoter were also shorter than wild-type (WT) plants. Despite the decreases in height, some transformed lines had significant increases in biomass. One line (2X35S::AI-1) had a biomass/height increase of 88% and an increase in stem diameter of over 40%, while a second line (2X35S::CI-5) had a biomass/height increase of 21%. A separate line (2X35S::AI-2) had a 36% increase in cellulose content, while two others (4CL::AI-2 and 4CL::AI-3) displayed significant decreases in cellulose content. The observed phenotypes can be in part explained by the levels of foreign invertase present, subcellular localization and the carbohydrate status of the tissues.
机译:评估了酵母衍生的质外体(AI)和胞质(CI)转化酶(EC 3.2.1.26)的表达对烟草(Nicotiana tabacum L. cv。Xanthi)中生物量和结构性碳水化合物积累的影响。在花椰菜花叶病毒35S启动子(2X35S)的串联重复序列或驱动木质部定位表达的启动子(Petroselinum crispum 4-couumarate:CoA连接酶启动子; 4CL)的控制下表达了AI或CI的转基因烟草植物。 。定量酵母来源的转化酶转录水平,转化酶蛋白,酶活性,生长参数以及所有转化品系干组织的结构和可溶性碳水化合物。在4CL的控制下表达转化酶的转基因烟草品系在两种酵母衍生的同工基因上均表现出严重的生长迟缓。类似地,一些表达受2X35S启动子调控的AI或CI的转化品系也比野生型(WT)植物短。尽管高度降低,但某些转化的品系的生物量却显着增加。一系(2X35S :: AI-1)的生物量/高度增加了88%,茎直径增加了40%以上,而另一系(2X35S :: CI-5)的生物量/高度增加了21 %。一条单独的生产线(2X35S :: AI-2)的纤维素含量增加了36%,而另外两条生产线(4CL :: AI-2和4CL :: AI-3)的纤维素含量则明显降低。所观察到的表型可以部分由存在的外源转化酶的水平,亚细胞定位和组织的碳水化合物状态来解释。

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