Burkle L, Hibberd JM, Quick WP, Kuhn C, Hirner B, Frommer WB
Botanical Institute, Eberhard Karls University, Auf der Morgenstelle 1, D-72076 Tubingen, Germany (L.B., C.K., B.H., W.B.F.).
Plant Physiol. 1998 Sep;118(1):59-68. doi: 10.1104/pp.118.1.59.
In many species translocation of sucrose from the mesophyll to the phloem is carrier mediated. A sucrose/H+-symporter cDNA, NtSUT1, was isolated from tobacco (Nicotiana tabacum) and shown to be highly expressed in mature leaves and at low levels in other tissues, including floral organs. To study the in vivo function of NtSUT1, tobacco plants were transformed with a SUT1 antisense construct under control of the cauliflower mosaic virus 35S promoter. Upon maturation, leaves of transformants expressing reduced amounts of SUT1 mRNA curled downward, and strongly affected plants developed chloroses and necroses that led to death. The leaves exhibited impaired ability to export recently fixed 14CO2 and were unable to export transient starch during extended periods of darkness. As a consequence, soluble carbohydrates accumulated and photosynthesis was reduced. Autoradiographs of leaves show a heterogenous pattern of CO2 fixation even after a 24-h chase. The 14C pattern does not change with time, suggesting that movement of photosynthate between mesophyll cells may also be impaired. The affected lines show a reduction in the development of the root system and delayed or impaired flowering. Taken together, the effects observed in a seed plant (tobacco) demonstrate the importance of SUT1 for sucrose loading into the phloem via an apoplastic route and possibly for intermesophyll transport as well.
在许多物种中,蔗糖从叶肉向韧皮部的转运是由载体介导的。从烟草(Nicotiana tabacum)中分离出一种蔗糖/质子同向转运体cDNA,即NtSUT1,它在成熟叶片中高表达,而在包括花器官在内的其他组织中低表达。为了研究NtSUT1在体内的功能,用一种受花椰菜花叶病毒35S启动子控制的SUT1反义构建体转化烟草植株。成熟后,表达量降低的SUT1 mRNA的转化体叶片向下卷曲,严重受影响的植株出现黄化和坏死,最终导致死亡。这些叶片输出新固定的14CO2的能力受损,并且在长时间黑暗期间无法输出暂态淀粉。结果,可溶性碳水化合物积累,光合作用降低。叶片的放射自显影片显示,即使经过24小时的追踪,CO2固定仍呈现不均匀模式。14C模式不随时间变化,这表明叶肉细胞之间光合产物的移动也可能受损。受影响的株系根系发育减少,开花延迟或受损。综上所述,在种子植物(烟草)中观察到的这些效应证明了SUT1对于通过质外体途径将蔗糖装载到韧皮部以及可能对于叶肉细胞间运输的重要性。