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太空飞行条件下暴露的种子所育成的水稻幼苗的光合性能。

Photosynthetic Performance of Rice Seedlings Originated from Seeds Exposed to Spaceflight Conditions.

机构信息

Department of Food Science and Engineering, Harbin Institute of Technology, Harbin, China.

Institute of Extreme Environment Nutrition and Protection, Harbin Institute of Technology, Harbin, China.

出版信息

Photochem Photobiol. 2019 Sep;95(5):1205-1212. doi: 10.1111/php.13097. Epub 2019 May 11.

Abstract

The mechanism of the regulation on photosynthesis after spaceflight has not been fully understood. To learn more information about this, we conducted a series of experiments of photosystem, including photosynthetic physiological characteristics (fluorescence parameters, pigment contents), gene expression and proteomic change. We want to examine the response of rice (Oryza sativaDN416), whose seeds were placed in Bio-Radiation Box on the ShiJian-10(SJ-10) recoverable satellite. Our results demonstrated that the photosynthesis capacity of plants after spaceflight declined, compared to ground control plants. Specifically, Fv/Fm is significantly reduced for 7.5%. Chlorophyll content decreased in the three growth stages of rice, trefoil, tillering and mature stages. To further analyze changes under spaceflight environment, quantitative real-time PCR technology and isobaric tags for relative and absolute quantization (iTRAQ) labeling technology were deployed. We found that the gene expression of important subunits of key enzymes and important structures had been decreased after spaceflight. As for the results of changes in proteins, we discovered that the content of proteins related to electron transport and photosynthesis key enzyme declined. Our experiments can provide reference for further research to learn more about the effects of spaceflight on photosynthesis.

摘要

太空飞行后光合作用的调节机制尚未完全了解。为了了解更多关于这方面的信息,我们进行了一系列的光合系统实验,包括光合生理特性(荧光参数、色素含量)、基因表达和蛋白质组变化。我们想研究放置在 SJ-10 可回收卫星上的 Bio-Radiation Box 中的水稻(Oryza sativaDN416)种子的反应。结果表明,与地面对照植物相比,太空飞行后的植物光合作用能力下降。具体来说,Fv/Fm 显著降低了 7.5%。叶绿素含量在水稻三叶期、分蘖期和成熟期三个生长阶段均有下降。为了进一步分析太空环境下的变化,我们采用了定量实时 PCR 技术和等重标记相对和绝对定量(iTRAQ)标记技术。我们发现,重要酶的关键亚基和重要结构的基因表达在太空飞行后下降。至于蛋白质变化的结果,我们发现与电子传递和光合作用关键酶相关的蛋白质含量下降。我们的实验可以为进一步研究太空飞行对光合作用的影响提供参考。

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