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高浓度 CO 下密闭人工生态系统中不同光强对小麦幼苗生理、抗氧化能力和光合特性的影响。

Effect of different light intensity on physiology, antioxidant capacity and photosynthetic characteristics on wheat seedlings under high CO concentration in a closed artificial ecosystem.

机构信息

School of Biological Science and Medical Engineering, Beihang University, Beijing, 100191, China.

Institute of Environmental Biology and Life Support Technology, Beihang University, Beijing, 100191, China.

出版信息

Photosynth Res. 2020 Apr;144(1):23-34. doi: 10.1007/s11120-020-00726-x. Epub 2020 Feb 23.

Abstract

The growth of plants under high carbon dioxide (CO) concentrations (≥ 1000 ppm) is explored for the climate change and the bioregenerative life support system (BLSS) environment of long-duration space missions. Wheat (Triticum aestivum L.) is a grass cultivated for cereal grain-a global staple food including astronauts. Light and CO are both indispensable conditions for wheat seedlings. This study provides insights on the physiology, antioxidant capacity and photosynthetic characteristics of wheat seedlings under a range of photosynthetic photon flux densities in a closed system simulating BLSS with high CO concentration. We found that the F/F, F/F, chlorophyll content, intrinsic water use efficiencies (WUE), membrane stability index (MSI), and malondialdehyde (MDA) of wheat seedlings grown under an intermediate light intensity of 600 μmol m s environment were all largest. Interestingly, the high light intensity of 1200 mol m s treatment group exhibits the highest net photosynthetic rate but the lowest MDA content. The stomatal conductance and F of high light intensity of 1000 μmol m s treatment group were both significantly higher than that of other groups. Our study provides basic knowledge on the wheat growth in different environments, especially in a closed ecosystem with artificial lights.

摘要

在高二氧化碳(CO)浓度(≥1000 ppm)下植物的生长,为气候变化和长期空间任务的生物再生生命支持系统(BLSS)环境进行了探索。小麦(Triticum aestivum L.)是一种用于谷物的草类植物,是包括宇航员在内的全球主食。光是小麦幼苗所必需的,CO 也是小麦幼苗所必需的。本研究在高 CO 浓度模拟 BLSS 的封闭系统中,研究了一系列光合光子通量密度下,小麦幼苗的生理学、抗氧化能力和光合作用特性。我们发现,在 600 μmol m s 中等光照强度环境下生长的小麦幼苗的 F/F、F/F、叶绿素含量、内在水分利用效率(WUE)、膜稳定性指数(MSI)和丙二醛(MDA)均最大。有趣的是,1200 mol m s 高光强处理组的净光合速率最高,但 MDA 含量最低。1000 μmol m s 高光强处理组的气孔导度和 F 均明显高于其他组。本研究为小麦在不同环境下,尤其是在人工光照的封闭生态系统中的生长提供了基础知识。

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