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首页> 外文期刊>Functional Plant Biology >Downregulation of neutral invertase activity in sugarcane cell suspension cultures leads to a reduction in respiration and growth and an increase in sucrose accumulation.
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Downregulation of neutral invertase activity in sugarcane cell suspension cultures leads to a reduction in respiration and growth and an increase in sucrose accumulation.

机译:甘蔗细胞悬浮培养物中中性转化酶活性的下调导致呼吸和生长的减少以及蔗糖积累的增加。

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摘要

Suspension cultures were used as a model system to investigate sucrose metabolism in four sugarcane (Saccharum spp. interspecific hybrids) cell lines transformed with antisense neutral invertase (NI) constructs. Throughout a 14-day growth cycle two cell lines in which the antisense sequence was under the control of a tandem CaMV-35 S: maize ubiquitin promoter showed a strong reduction in NI activity, as well as reduced hexose and increased sucrose concentrations in comparison to the control line. In lines where the antisense NI sequence was under the control of the weaker CaMV-35 S promoter alone, changes in enzyme activity and sugar concentrations were intermediate to those of the more strongly inhibited lines and the control. In comparison to the control line, a higher sucrose to hexose ratio, i.e. increased purity, was obtained in all the lines with reduced NI activity. The in vivo rate of sucrose hydrolysis was reduced in the transgenic lines, suggesting a concomitant reduction in the flux through the 'futile cycle' of sucrose breakdown and re-synthesis. Differences between the transgenic cultures and the control were most pronounced during the early stages of the growth cycle and tapered off as the cultures matured. The transgenic cultures displayed impaired growth characteristics suggesting that the growth rate of these cells was retarded because of the reduced availability of hexoses for respiration..
机译:悬浮培养物用作模型系统,以研究用反义中性转化酶(NI)构建体转化的四个甘蔗(Saccharum spp。种间杂种)细胞系中的蔗糖代谢。在整个14天的生长周期中,与反义序列受串联CaMV-35 S控制的两个细胞系:玉米泛素启动子相比,NI活性显着降低,而己糖和蔗糖浓度降低,与控制线。在反义NI序列仅在较弱的CaMV-35 S启动子控制下的品系中,酶活性和糖浓度的变化在受到更强烈抑制的品系和对照的中间。与对照品系相比,在所有具有降低的NI活性的品系中获得了更高的蔗糖与己糖之比,即提高了纯度。在转基因品系中,蔗糖水解的体内速率降低,表明通过蔗糖分解和重新合成的“无效循环”的通量随之降低。转基因培养物和对照之间的差异在生长周期的早期最为明显,随着培养物的成熟逐渐减少。转基因培养物显示出受损的生长特性,表明这些细胞的生长速率受到了抑制,因为己糖可用于呼吸作用的可能性降低了。

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