首页> 外文期刊>Journal of Agronomy and Crop Science/Zeitschrift fur acker-und pflanzenbau >Growth, photosynthetic characteristics, antioxidant capacity and biomass yield and quality of wheat (Triticum aestivum L.) exposed to LED light sources with different spectra combinations.
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Growth, photosynthetic characteristics, antioxidant capacity and biomass yield and quality of wheat (Triticum aestivum L.) exposed to LED light sources with different spectra combinations.

机译:暴露于具有不同光谱组合的LED光源的小麦(Triticum aestivum L.)的生长,光合特性,抗氧化能力以及生物量产量和品质。

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As a consequence of the increasing importance of crop in Bioregenerative Life Support System (BLSS), there is an interest in enhancing both the productivity and quality of wheat. Lighting systems for growing wheat need to be lightweight, reliable and durable. Light-emitting diodes (LEDs) have these characteristics. Previous studies demonstrated that the combination of red and blue lights was an effective light source for several crops. Yet the appearance of plant in this kind of lighting was purplish grey, and other problems were also accompanied. The addition of other spectra LEDs made better growth and also offer a better visual experience to bring psychological benefit to the crews. The objective of this study was to investigate the influences of different spectra combinations on the wheat growth, photosynthetic characteristics, antioxidant capacity and biomass yield and quality during their life cycle. Four types of different spectra combinations with the same intensity were employed: a single red light (R), a red-blue light (R+B, R:B=4:1), a red-white light (R+W, R:W=4:1) and a white light (W). The results showed that the wheat cultivated in the R+W light was characterized by highest harvest index and lowest lignin in inedible biomass, which was more beneficial to recycle substances in the processes of the environment regeneration. The data were comparable to those under W condition in terms of straw height, relative water content (RWC), membrane stability index (MSI), photosynthetic rate, chlorophyll concentration, antioxidant capacity, thousand kernel weight (TKW) and soluble sugar concentration. Wheat was sensitive to light quality which significantly affected those indices of growth and physiology, especially at earing and flowering stages.
机译:由于作物在生物再生生命支持系统(BLSS)中的重要性日益提高,因此有兴趣提高小麦的生产力和质量。小麦生长的照明系统需要轻巧,可靠和耐用。发光二极管(LED)具有这些特性。先前的研究表明,红光和蓝光的组合是几种作物的有效光源。然而,这种照明下的植物外观为紫灰色,还伴随着其他问题。添加其他光谱LED可以更好地生长,还可以提供更好的视觉体验,从而为船员带来心理上的好处。这项研究的目的是研究不同光谱组合在其生命周期中对小麦生长,光合特性,抗氧化能力以及生物量产量和品质的影响。采用四种具有相同强度的不同光谱组合:单一红光(R),红蓝光(R + B,R:B = 4:1),红白光(R + W, R:W = 4:1)和白光(W)。结果表明,在R + W光下种植的小麦具有不可食生物量中最高的收获指数和最低的木质素特征,在环境再生过程中更有利于循环利用物质。在秸秆高度,相对含水量(RWC),膜稳定性指数(MSI),光合速率,叶绿素浓度,抗氧化能力,千粒重(TKW)和可溶性糖浓度方面,这些数据与W条件下的数据相当。小麦对光质敏感,这会严重影响生长和生理指标,尤其是在早穗和开花期。

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