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首页> 外文期刊>Plant Molecular Biology >Transgenic cotton over-producing spinach sucrose phosphate synthase showed enhanced leaf sucrose synthesis and improved fiber quality under controlled environmental conditions
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Transgenic cotton over-producing spinach sucrose phosphate synthase showed enhanced leaf sucrose synthesis and improved fiber quality under controlled environmental conditions

机译:转基因棉花过量生产的菠菜蔗糖磷酸合酶在受控环境条件下显示出增强的叶片蔗糖合成和改善的纤维品质

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Prior data indicated that enhanced availability of sucrose, a major product of photosynthesis in source leaves and the carbon source for secondary wall cellulose synthesis in fiber sinks, might improve fiber quality under abiotic stress conditions. To test this hypothesis, a family of transgenic cotton plants (Gossypium hirsutum cv. Coker 312 elite) was produced that over-expressed spinach sucrose-phosphate synthase (SPS) because of its role in regulation of sucrose synthesis in photosynthetic and heterotrophic tissues. A family of 12 independent transgenic lines was characterized in terms of foreign gene insertion, expression of spinach SPS, production of spinach SPS protein, and development of enhanced extractable V (max) SPS activity in leaf and fiber. Lines with the highest V (max) SPS activity were further characterized in terms of carbon partitioning and fiber quality compared to wild-type and transgenic null controls. Leaves of transgenic SPS over-expressing lines showed higher sucrose:starch ratio and partitioning of (14)C to sucrose in preference to starch. In two growth chamber experiments with cool nights, ambient CO(2) concentration, and limited light below the canopy, the transgenic line with the highest SPS activity in leaf and fiber had higher fiber micronaire and maturity ratio associated with greater thickness of the cellulosic secondary wall.
机译:先前的数据表明,蔗糖是源叶中光合作用的主要产物,也是碳汇在纤维汇中用于次生壁纤维素合成的碳源,可提高可用性,这可能会改善非生物胁迫条件下的纤维质量。为了检验这一假设,生产了一个过表达菠菜蔗糖-磷酸合酶(SPS)的转基因棉花植物家族(Gossypium hirsutum cv。Coker 312 elite),因为它在光合和异养组织中调节蔗糖的合成。根据外来基因插入,菠菜SPS的表达,菠菜SPS蛋白的产生以及叶和纤维中可提取的V(max)SPS活性增强的发展,对12个独立的转基因系家族进行了表征。与野生型和转基因无效对照相比,具有最高V(max)SPS活性的品系在碳分配和纤维质量方面得到进一步表征。转基因SPS过表达品系的叶片显示出较高的蔗糖:淀粉比,并且优先于淀粉而将(14)C分配给蔗糖。在两个凉爽的夜晚,凉爽的夜晚,周围的CO(2)浓度和冠层下有限的光线的生长室实验中,叶和纤维中具有最高SPS活性的转基因品系具有较高的纤维细度和成熟度,且纤维素次生膜的厚度较大壁。

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