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首页> 外文期刊>Journal of Plant Physiology >Exogenous sucrose supply changes sugar metabolism and reduces photosynthesis of sugarcane through the down-regulation of Rubisco abundance and activity
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Exogenous sucrose supply changes sugar metabolism and reduces photosynthesis of sugarcane through the down-regulation of Rubisco abundance and activity

机译:外源蔗糖供应通过下调Rubisco丰度和活性来改变糖代谢并降低甘蔗的光合作用

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摘要

Photosynthetic modulation by sugars has been known for many years, but the biochemical and molecular comprehension of this process is lacking. We studied how the exogenous sucrose supplied to leaves could affect sugar metabolism in leaf, sheath and stalk and inhibit photosynthesis in four-month old sugarcane plants. Exogenous sucrose 50 mM sprayed on attached leaves strongly impaired the net CO2 assimilation (P-N) and decreased the instantaneous carboxylation efficiency (P-N/Ci), suggesting that the impairment in photosynthesis was caused by biochemical restrictions. The photosystem II activity was also affected by excess sucrose as indicated by the reduction in the apparent electron transport rate, effective quantum yield and increase in non-photochemical quenching. In leaf segments, sucrose accumulation was related to increases in the activities of soluble acid and neutral invertases, sucrose synthase and sucrose phosphate synthase, whereas the contents of fructose increased and glucose slightly decreased. Changes in the activities of sucrose hydrolyzing and synthesizing enzymes in leaf, sheath and stalk and sugar profile in intact plants were not enough to identify which sugar(s) or enzyme(s) were directly involved in photosynthesis modulation. However, exogenous sucrose was able to trigger down-regulation in the Rubisco abundance, activation state and enzymatic activity. Despite the fact that P-N/Ci had been notably decreased by sucrose, in vitro activity and abundance of PEPCase did not change, suggesting an in vivo modulation of this enzyme. The data reveal that sucrose and/or other derivative sugars in leaves inhibited sugarcane photosynthesis by down-regulation of Rubisco synthesis and activity. Our data also suggest that sugar modulation was not exerted by a feedback mechanism induced by the accumulation of sugars in immature sugarcane stalk. (C) 2015 Published by Elsevier GmbH.
机译:糖类对光合作用的调节已为人所知,但缺乏对这一过程的生化和分子理解。我们研究了提供给叶片的外源蔗糖如何影响四个月大的甘蔗植物中叶片,鞘和茎的糖代谢,并抑制其光合作用。 50 mM的外源蔗糖喷在附着的叶子上会严重损害净CO2同化(P-N)并降低瞬时羧化效率(P-N / Ci),表明光合作用受到损害是由于生化限制。如表观电子传输速率,有效量子产率的降低和非光化学猝灭的增加所表明,过量蔗糖也会影响光系统II的活性。在叶片中,蔗糖的积累与可溶性酸和中性转化酶,蔗糖合酶和蔗糖磷酸合酶活性的增加有关,而果糖的含量增加而葡萄糖的含量略有下降。叶片,鞘和茎中蔗糖水解和合成酶活性的变化以及完整植物中糖的分布不足以鉴定哪些糖或酶直接参与光合作用的调节。但是,外源蔗糖能够触发Rubisco丰度,激活状态和酶活性的下调。尽管蔗糖显着降低了P-N / Ci的事实,但PEPCase的体外活性和丰度没有改变,表明该酶的体内调节。数据表明,叶中的蔗糖和/或其他衍生糖通过下调Rubisco的合成和活性来抑制甘蔗的光合作用。我们的数据还表明,糖调节未通过未成熟甘蔗茎中糖的积累诱导的反馈机制进行。 (C)2015由Elsevier GmbH发布。

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