在细胞质、液泡或外质体中表达酵母来源转化酶的转基因烟草植物:研究蔗糖代谢和汇源相互作用的有力工具。

U. Sonnewald, M. Brauer, A. von Schaewen, M. Stitt, L. Willmitzer
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引用次数: 115

摘要

在高等植物中,蔗糖在叶片中形成的光同化物的短期储存和分配中起着中心作用。蔗糖在细胞质中合成,暂时储存在液泡中,并通过外质体输出。为了阐明不同区室在蔗糖代谢中的作用,我们将酵母衍生的转化酶导入转基因烟草的细胞质和液泡中。这是除了之前描述的酵母衍生转化酶进入外质体的目标之外。液泡靶向是通过将液泡蛋白patatin的n端部分(长146个氨基酸)融合到成熟转化酶蛋白的编码区来实现的。与野生型烟草相比,在不同亚细胞区室中表达酵母转化酶的转基因烟草表现出显著的表型差异。所有转基因植株均表现出生长发育迟缓,根系形成减少的现象。淀粉和可溶性糖在叶片中积累,表明蔗糖的分配在所有情况下都受到损害。胞质酵母菌转化酶的表达导致淀粉和可溶性糖在非常年轻的(汇)和老的(源)叶片中积累。叶片呈弯曲状,表明叶片上部的细胞扩张或分裂速度更快。光合活性降低的浅绿色部分均匀分布在叶片表面。在外胞体和液泡转化酶作用下,表型变化只出现在老(源)叶中。漂白和/或坏死部分的发展与叶片的源状态有关。白化遵循从汇到源的转变,从叶的边缘开始,向基部移动。漂白与抑制光合作用并行。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Transgenic tobacco plants expressing yeast-derived invertase in either the cytosol, vacuole or apoplast: a powerful tool for studying sucrose metabolism and sink/source interactions.
In higher plants sucrose plays a central roles with respect to both short-term storage and distribution of photoassimilates formed in the leaf. Sucrose is synthesized in the cytosol, transiently stored in the vacuole and exported via the apoplast. In order to elucidate the role of the different compartments with respect to sucrose metabolism, a yeast-derived invertase was directed into the cytosol and vacuole of transgenic tobacco plants. This was in addition to the targeting of yeast-derived invertase into the apoplast described previously. Vacuolar targeting was achieved by fusing an N-terminal portion (146 amino acids long) of the vacuolar protein patatin to the coding region of the mature invertase protein. Transgenic tobacco plants expressing the yeast-derived invertase in different subcellular compartments displayed dramatic phenotypic differences when compared to wild-type plants. All transgenic plants showed stunted growth accompanied by reduced root formation. Starch and soluble sugars accumulated in leaves indicating that the distribution of sucrose was impaired in all cases. Expression of cytosolic yeast invertase resulted in the accumulation of starch and soluble sugars in both very young (sink) and older (source) leaves. The leaves were curved, indicating a more rapid cell expansion or cell division at the upper side of the leaf. Light-green sectors with reduced photosynthetic activity were evenly distributed over the leaf surface. With the apoplastic and vacuolar invertase, the phenotypical changes induced only appear in older (source) leaves. The development of bleached and/or necrotic sectors was linked to the source state of a leaf. Bleaching followed the sink to source transition, starting at the rim of the leaf and moving to the base. The bleaching was paralleled by the inhibition of photosynthesis.
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