首页> 外文期刊>Plant Science: An International Journal of Experimental Plant Biology >Girled-induced anthocyanin accumulation in red-leafed Prunus cerasifera: Effect on photosynthesis, photoprotection and sugar metabolism
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Girled-induced anthocyanin accumulation in red-leafed Prunus cerasifera: Effect on photosynthesis, photoprotection and sugar metabolism

机译:红叶蛋白Cerasifera的女诱导的花青素积累:对光合作用,光保护和糖代谢的影响

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The feedback regulation of photosynthesis depends on the cooperation of multiple signals, including sugars. Herein, the effect of shoot girdling was monitored on a daily basis for three days in green- and red-leafed Prunus cerasifera plants (GLP and RLP, respectively). The effect of anthocyanin presence was investigated in terms of photosynthesis, sugar metabolism and photoprotection. Net photosynthesis (A390) and stomatal conductance were reduced on the first day at 12:00 only in the girdled GLP (29 and 33 %, respectively). Moreover, the girdled GLP displayed at 12:00 higher sucrose, glucose and fructose concentrations than control leaves. Conversely, girdled RLP showed the first reduction of A390 at 18:00, with no significant differences at 12:00 in sucrose and glucose concentrations. The increased biosynthesis of anthocyanins that was only detected in girdled RLP contributed to lowering the accumulation of hexoses. Overall, these results revealed a sugar-buffering role exerted by anthocyanins that positively influence the feedback regulation of photosynthesis. Moreover, nonphotochemical quenching, namely pNPQ, revealed the ability of anthocyanins to photoprotect photosystem II from supernumerary photons reaching the chloroplast, whose function was compromised by girdling. The present study provides a starting point to understand the possible link between photosynthesis regulation through sugar signalling and anthocyanin upregulation.
机译:光合作用的反馈调节取决于多个信号的配合,包括糖。在此,在绿色和红细胞Cerasifera植物(GLP和RLP)中每天监测射击环的效果3天。在光合作用,糖代谢和光保护方面研究了花青素存在的影响。在第一次在GLP(分别为29和33%)的第一天,在第一天减少了净光合作用(A390)和气孔电导。此外,在12:00更高的蔗糖,葡萄糖和果糖浓度上显示的GRIDLED GLP比对照叶。相反,Girdled RLP在18:00显示A390的第一次减少,蔗糖和葡萄糖浓度的12:00没有显着差异。在GiRdled RLP中仅检测到的花青素的生物合成增加有助于降低己糖的积累。总体而言,这些结果揭示了用阳性影响光合作用反馈调节的花青素施加的糖缓冲作用。此外,非飞细胞化学淬火,即PNPQ,揭示了花青素从到达叶绿体的上数光子的光保护光水系统II的能力,其功能受到环的损害。本研究提供了通过糖信号传导和花青素上调理解光合调节的可能链接的起点。

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