首页> 外文期刊>Journal of Applied Phycology >Increased activity of the tandem fructose-1,6-bisphosphate aldolase, triosephosphate isomerase and fructose-1,6-bisphosphatase enzymes in Anabaena sp. strain PCC 7120 stimulates photosynthetic yield
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Increased activity of the tandem fructose-1,6-bisphosphate aldolase, triosephosphate isomerase and fructose-1,6-bisphosphatase enzymes in Anabaena sp. strain PCC 7120 stimulates photosynthetic yield

机译:Anabaena sp。中串联果糖-1,6-双磷酸醛缩酶,三糖磷酸异构酶和果糖-1,6-双磷酸酶的活性增加。 PCC 7120菌株刺激光合产量

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摘要

The regulation of photosynthetic yield at the genetic level has largely focused on manipulation of the catalytic enzymes in the Calvin cycle by genetic engineering. In order to investigate the contribution of increased enzymatic activity in the Calvin cycle on photosynthetic yield, the rice fructose-1,6-bisphosphate aldolase (FBA), spinach triosephosphate isomerase (TPI) and wheat fructose-1,6-bisphosphatase (FBPase) genes were cloned in tandem and co-overexpressed in cyanobacterium Anabaena sp. strain PCC 7120 cells. The enzymatic activities of FBA, TPI and FBPase, as well as sedoheptulose-1,7-bisphosphatase (SBPase), were remarkably increased in transgenic cells relative to the wild-type. The photosynthetic yield, as reflected by photosynthetic O2 evolution and dry cellular weight, was also markedly increased in transgenic cells versus wide-type cells. The activity of SBPase is considered the most important factor for ribulose-1,5-bisphosphate (RuBP) regeneration in the Calvin cycle, and increased activity of TPI alone in transgenic cells does not stimulate photosynthetic yield. Thus, the increased activity of FBA and FBPase, but not TPI, significantly improved photosynthetic yield in transgenic cells by stimulating SBPase activity and consequently accelerating the RuBP regeneration rate.
机译:在基因水平上光合产量的调节主要集中在通过基因工程对加尔文循环中的催化酶进行操纵。为了研究加尔文循环中增加的酶活性对光合产量的贡献,水稻果糖-1,6-双磷酸醛缩酶(FBA),菠菜三糖磷酸异构酶(TPI)和小麦果糖-1,6-双磷酸酶(FBPase)基因被串联克隆,并在蓝细菌鱼腥藻中共表达。株PCC 7120细胞。与野生型相比,转基因细胞中FBA,TPI和FBPase的酶活性,以及​​七庚二糖1,7-双磷酸酶(SBPase)的酶活性显着提高。转基因细胞与宽型细胞相比,光合作用的O 2进化和干细胞重量所反映的光合作用产量也显着增加。 SBPase的活性被认为是卡尔文循环中1,5-双磷酸核糖(RuBP)再生的最重要因素,而仅TPI活性在转基因细胞中的增加并不刺激光合产量。因此,通过刺激SBPase活性并因此加速RuBP再生速率,FBA和FBPase活性的增加而不是TPI显着提高了转基因细胞的光合产量。

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