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通过加速转基因烟草中的淀粉周转和葡萄糖转运来补偿磷酸丙糖/磷酸转运体活性的降低

Compensation of decreased triose phosphate/phosphate translocator activity by accelerated starch turnover and glucose transport in transgenic tobacco.

作者信息

Häusler R E, Schlieben N H, Schulz B, Flügge U I

机构信息

Botanisches Institut, Universität zu Köln, Germany.

出版信息

Planta. 1998 Mar;204(3):366-76. doi: 10.1007/s004250050268.

Abstract

Tobacco (Nicotiana tabacum L.) plants were transformed with an antisense construct of the chloroplast triose phosphate/phosphate translocator (TPT). Three transformant lines of the T4 progeny, which showed a large decrease in the transcript level of the TPT were used for further biochemical and physiological characterisation. In all antisense lines tested, TPT transport activity was diminished by 50-70% compared with the wild type (WT). Despite this high reduction in the transport capacity, alpha TPT plants lacked any visible phenotype. Hexokinase and alpha-amylase activities were increased in alpha TPT plants compared with the WT, whereas activities of ribulose-1,5-bisphosphate carboxylase/oxygenase and ADP-glucose pyrophosphorylase (AGPase) were not affected. At the end of a 14-h light period, leaf starch contents in alpha TPT lines were similar to those of the WT and controls, indicating that a decrease in the TPT had no effect on starch accumulation. Sucrose contents were diminished by more than 50% in alpha TPT lines compared with control plants. The time course of starch accumulation revealed a transient increase in the starch content in a selected alpha TPT line after 6 h in the light, followed by a decrease towards the end of the light period. Labelling with 14C indicated that during the dark and light (late afternoon) periods starch is mobilised at higher rates in alpha TPT lines than in the controls. Glucose/fructose ratios at the end of the dark period were increased from 1.2 in control plants to 2 in alpha TPT lines indicating increased amylolytic starch degradation. Initial rates of [14C] glucose transport in isolated chloroplasts were increased by a factor of 2-3 in alpha TPT plants compared with the WT. Rates of CO2 assimilation were substantially diminished in the alpha TPT lines in high CO2 and low O2, but remained unaffected in ambient CO2. The rate of photosynthetic electron transport during the induction of photosynthesis in saturating CO2 exhibited pronounced oscillations only in WT and control plants. Oscillations were less pronounced in alpha TPT plants, indicating that phosphate limitation of photosynthesis is lowered in alpha TPT plants compared with the WT. It is proposed that photoassimilates are more readily directed into starch biosynthesis in alpha TPT plants. This is supported by determinations of 3-phosphoglycerate levels (an activator of AGPase) during the transition from dark to light in high CO2.

摘要

用叶绿体磷酸丙糖/磷酸转运体(TPT)的反义构建体转化烟草(Nicotiana tabacum L.)植株。T4后代的三个转化株系,其TPT转录水平大幅下降,用于进一步的生化和生理特性分析。在所有测试的反义株系中,与野生型(WT)相比,TPT转运活性降低了50 - 70%。尽管转运能力大幅降低,但α - TPT植株没有任何可见的表型。与WT相比,α - TPT植株中的己糖激酶和α -淀粉酶活性增加,而核酮糖-1,5 -二磷酸羧化酶/加氧酶和ADP -葡萄糖焦磷酸化酶(AGPase)的活性未受影响。在14小时光照期结束时,α - TPT株系的叶片淀粉含量与WT和对照相似,表明TPT的降低对淀粉积累没有影响。与对照植株相比,α - TPT株系中的蔗糖含量降低了50%以上。淀粉积累的时间进程显示,在选定的α - TPT株系中,光照6小时后淀粉含量短暂增加,随后在光照期结束时下降。用14C标记表明,在黑暗和光照(傍晚)期间,α - TPT株系中淀粉的动员速率高于对照。黑暗期结束时的葡萄糖/果糖比值从对照植株的1.2增加到α - TPT株系的2,表明淀粉分解性淀粉降解增加。与WT相比,α - TPT植株中分离叶绿体中[14C]葡萄糖的初始转运速率提高了2 - 3倍。在高CO2和低O2条件下,α - TPT株系中的CO2同化速率大幅降低,但在环境CO2条件下仍未受影响。在饱和CO2条件下光合作用诱导期间的光合电子传递速率仅在WT和对照植株中表现出明显的振荡。α - TPT植株中的振荡不太明显,表明与WT相比,α - TPT植株中光合作用的磷酸盐限制降低。有人提出,在α - TPT植株中光同化物更容易导向淀粉生物合成。在高CO2条件下从黑暗到光照的转变过程中对3 -磷酸甘油酸水平(AGPase的激活剂)的测定支持了这一点。

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