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Influence of irradiation on cyanide-resistant respiration and AOX1 multi-gene family expression during greening of etiolated rice seedlings

机译:辐射对黄化水稻幼苗绿化过程中抗氰化物呼吸和AOX1多基因家族表达的影响

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摘要

We investigated the differential expression of AOX1 multi-gene family and the regulation of alternative respiratory pathway during initial greening development in leaves of rice (Oryza sativa L.) seedlings. After exposing the dark-grown rice seedlings to continuous irradiation, total respiration (Vt), capacity of alternative pathway (Valt), and their ratio (Valt/Vt) increased with the greening of leaves. In this process, AOX1c transcript increased under constant irradiation, while AOX1a and AOX1b transcripts were hardly detected. Thus AOX1c in rice presents a similar expression pattern as AOX2 does in many dicotyledonous species during greening development. Compared with the rapid increase of cyanideresistant respiration in the presence of photon energy, CO2 fixation was not observed until 8 h after the onset of irradiation. The AOX inhibitor salicylhydroxamic acid (SHAM; 1 mM) inhibited 67.3 % of cyanide-insensitive oxygen uptake in dark-grown leaves and 69.4 % of it in leaves grown under irradiation. Dark-grown plants pre-treated with SHAM were then irradiated for 12 h. SHAM did not obviously modify photosynthetic CO2 fixation rate on a chlorophyll (Chl) content basis in both leaves and simultaneously isolated chloroplasts. Hence during initial greening steps of the plants, the induction of alternative pathway and AOX1 expression by irradiation is not directly linked with carbon assimilation of photosynthesis. The application of SHAM partially limited Chl production in rapidly greening leaves, indicating that Chl synthesis in the process of greening might be medicated to some extent by alternative respiratory pathway.
机译:我们调查了水稻(Oryza sativa L.)幼苗叶片初始绿化发育过程中AOX1多基因家族的差异表达和替代呼吸途径的调控。将暗色水稻幼苗暴露于连续辐射,总呼吸(Vt ),替代途径能力(Valt )及其比例(Valt / Vt )后随着叶子的绿化而增加。在此过程中,在恒定照射下AOX1c转录物增加,而几乎未检测到AOX1a和AOX1b转录物。因此,水稻中的AOX1c在绿化发育过程中与许多双子叶植物中的AOX2具有相似的表达模式。与在存在光子能量的情况下耐氰化物的呼吸作用迅速增加相比,在辐照开始后8 h才观察到CO2 固定。 AOX抑制剂水杨基异羟肟酸(SHAM; 1 mM)抑制了深色叶片中67.3%的对氰化物不敏感的氧气吸收,而在辐射下生长的叶片中则抑制了69.4%。然后用SHAM预处理的深色植物被照射12小时。 SHAM并没有明显改变叶和同时分离的叶绿体中叶绿素(Chl)含量的光合CO2固定速率。因此,在植物的初始绿化步骤中,辐照诱导的替代途径和AOX1表达与光合作用的碳同化没有直接联系。 SHAM的应用部分限制了快速绿化的叶片中Chl的产生,这表明在绿化过程中Chl的合成可能在某种程度上可以通过替代呼吸途径进行药物治疗。

著录项

  • 来源
    《Photosynthetica》 |2007年第2期|272-279|共8页
  • 作者单位

    Department of Biochemistry and Molecular Biology School of Life Science Lanzhou University 298 Tian Shui Road Lanzhou 730000 Peoples Republic of China;

    Department of Biochemistry and Molecular Biology School of Life Science Lanzhou University 298 Tian Shui Road Lanzhou 730000 Peoples Republic of China;

    Biology Department Brookhaven National Laboratory 50 Bell Av. Upton NY 11973 USA;

    Department of Biochemistry and Molecular Biology School of Life Science Lanzhou University 298 Tian Shui Road Lanzhou 730000 Peoples Republic of China;

    Department of Biochemistry and Molecular Biology School of Life Science Lanzhou University 298 Tian Shui Road Lanzhou 730000 Peoples Republic of China;

    Department of Biochemistry and Molecular Biology School of Life Science Lanzhou University 298 Tian Shui Road Lanzhou 730000 Peoples Republic of China;

    Department of Biochemistry and Molecular Biology School of Life Science Lanzhou University 298 Tian Shui Road Lanzhou 730000 Peoples Republic of China;

    Department of Biochemistry and Molecular Biology School of Life Science Lanzhou University 298 Tian Shui Road Lanzhou 730000 Peoples Republic of China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    chlorophyll; chloroplast; CO2 fixation; inhibitors; Oryza; oxygen uptake; salicylhydroxamic acid;

    机译:叶绿素;叶绿体;CO2固定;抑制剂;Oryza;吸氧;水杨基异羟肟酸;

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