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一个四重光感受器突变体的蛋白质组图谱维持了其严重的光合缺陷表型。

A proteome map of a quadruple photoreceptor mutant sustains its severe photosynthetic deficient phenotype.

作者信息

Fox Ana Romina, Barberini Maria Laura, Ploschuk Edmundo Leonardo, Muschietti Jorge Prometeo, Mazzella Maria Agustina

机构信息

Instituto de Investigaciones en Ingeniería Genética y Biología Molecular, Dr. Héctor Torres (INGEBI-CONICET), Buenos Aires 1428, Argentina.

Cátedra de Cultivos Industriales, Departamento de Producción Vegetal, Facultad de Agronomía, Universidad de Buenos Aires, Buenos Aires 1417, Argentina.

出版信息

J Plant Physiol. 2015 Aug 1;185:13-23. doi: 10.1016/j.jplph.2015.07.004. Epub 2015 Jul 29.

Abstract

Light is the environmental factor that most affects plant growth and development through its impact on photomorphogenesis and photosynthesis. A quadruple photoreceptor mutant lacking four of the most important photoreceptors in plants, phytochromes A and B (phyA, phyB) and cryptochromes 1 and 2 (cry1, cry2), is severely affected in terms of growth and development. Previous studies have suggested that in addition to a photomorphogenic disorder, the phyA phyB cry1 cry2 quadruple mutant might have severe alterations in photosynthetic ability. Here, we investigated the photosynthetic processes altered in the quadruple mutant and performed a proteomic profiling approach to identify some of the proteins involved. The phyA phyB cry1 cry2 quadruple mutant showed reduced leaf area and total chlorophyll content. Photosynthetic rates at high irradiances were reduced approximately 65% compared to the wild type (WT). Light-saturated photosynthesis and the response of net CO2 exchange to low and high internal CO2 concentrations suggest that the levels or activity of the components of the Calvin cycle and electron transport might be reduced in the quadruple mutant. Most of the under-expressed proteins in the phyA phyB cry1 cry2 quadruple mutant consistently showed a chloroplastic localization, whereas components of the Calvin cycle and light reaction centers were overrepresented. Additionally, Rubisco expression was reduced threefold in the phyA phyB cry1 cry2 quadruple mutant. Together, these results highlight the importance of the phytochrome and cryptochrome families in proper autotrophy establishment in plants. They also suggest that an overall limitation in the chlorophyll levels, expression of Rubisco, and enzymes of the Calvin Cycle and electron transport that affect ribulose-1,5-biphosphate (RuBP) regeneration reduced photosynthetic capacity in the phyA phyB cry1 cry2 quadruple mutant.

摘要

光是通过影响光形态建成和光合作用来对植物生长发育产生最大影响的环境因素。一个缺乏植物中四个最重要光感受器(光敏色素A和B(phyA、phyB)以及隐花色素1和2(cry1、cry2))的四重光感受器突变体,在生长发育方面受到严重影响。先前的研究表明,除了光形态建成紊乱外,phyA phyB cry1 cry2四重突变体在光合能力方面可能有严重改变。在此,我们研究了四重突变体中光合过程的改变,并采用蛋白质组学分析方法来鉴定其中一些相关蛋白质。phyA phyB cry1 cry2四重突变体的叶面积和总叶绿素含量降低。与野生型(WT)相比,高光强下的光合速率降低了约65%。光饱和光合作用以及净二氧化碳交换对低和高内部二氧化碳浓度的响应表明,卡尔文循环和电子传递成分的水平或活性在四重突变体中可能降低。phyA phyB cry1 cry2四重突变体中大多数表达下调的蛋白质始终显示出叶绿体定位,而卡尔文循环和光反应中心的成分则过度富集。此外,phyA phyB cry1 cry2四重突变体中Rubisco的表达降低了三倍。总之,这些结果突出了光敏色素和隐花色素家族在植物正确建立自养能力中的重要性。它们还表明,叶绿素水平、Rubisco表达以及影响1,5 - 二磷酸核酮糖(RuBP)再生的卡尔文循环和电子传递酶的整体限制降低了phyA phyB cry1 cry2四重突变体的光合能力。

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