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首页> 外文期刊>Plant physiology >TISSUE-SPECIFIC EXPRESSION OF THE TOBACCO MOSAIC VIRUS MOVEMENT PROTEIN IN TRANSGENIC POTATO PLANTS ALTERS PLASMODESMAL FUNCTION AND CARBOHYDRATE PARTITIONING
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TISSUE-SPECIFIC EXPRESSION OF THE TOBACCO MOSAIC VIRUS MOVEMENT PROTEIN IN TRANSGENIC POTATO PLANTS ALTERS PLASMODESMAL FUNCTION AND CARBOHYDRATE PARTITIONING

机译:转基因马铃薯植株中烟草花叶病毒运动蛋白的组织特异性表达提示横纹肌功能和碳酸盐分配

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Transgenic potato (Solanum tuberosum) plants expressing the movement protein (MP) of tobacco mosaic virus (TMV) under the control of the promoters from the class I patatin gene (B33) or the nuclear photosynthesis gene (ST-LS1) were employed to further explore the mode by which this viral protein interacts with cellular metabolism to change carbohydrate allocation. Dye-coupling experiments established that expression of the TMV-MP alters plasmodesmal function in both potato leaves and tubers when expressed in the respective tissues. However, whereas the size-exclusion limit of mesophyll plasmodesmata was increased to a value greater than 9.4 kD, this size limit was smaller for plasmodesmata interconnecting tuber parenchyma cells. Starch and sugars accumulated in potato leaves to significantly lower levels in plants expressing the TMV-MP under the ST-LS1 promoter, and rate of sucrose efflux from petioles of the latter was higher compared to controls. It is interesting that this effect was expressed only in mature plants after tuber initiation. No effect on carbohydrate levels was found in plants expressing this protein under the B33 promoter. These results are discussed in terms of the mode by which the TMV-MP exerts its influence over carbon metabolism and photoassimilate translocation, and the possible role of plasmodesmal function in controlling these processes. [References: 31]
机译:在I类patatin基因(B33)或核光合作用基因(ST-LS1)的启动子的控制下,表达烟草花叶病毒(TMV)运动蛋白(MPV)的转基因马铃薯(Solanum tuberosum)植物用于进一步研究。探索这种病毒蛋白与细胞代谢相互作用以改变碳水化合物分配的方式。染料偶联实验确定,当在各自的组织中表达时,TMV-MP的表达会改变马铃薯叶片和块茎中的胞膜功能。但是,尽管将叶肉胞肉瘤的尺寸排阻极限增加到大于9.4 kD的值,但是对于互连块茎实质细胞的胞肉瘤,该尺寸极限较小。在ST-LS1启动子下表达TMV-MP的植物中马铃薯叶片中积累的淀粉和糖水平显着降低,与叶柄相比,后者叶柄的蔗糖外排率更高。有趣的是,这种作用仅在块茎萌发后才在成熟植物中表达。在B33启动子下表达该蛋白质的植物中未发现对碳水化合物水平的影响。这些结果将以TMV-MP对碳代谢和光同化易位发挥作用的方式以及等离子胞体功能在控制这些过程中可能发挥的作用进行讨论。 [参考:31]

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