Effects of blue and red LED lights on rubisco activase gene expression, CO2 fixation efficiency and plant morphology of Gerbera jamesonii

Nguyen Khac Hung, Do Thi Gam, Hoang Thi Huyen Trang, Chu Hoang Ha, Do Tien Phat, Pham Bich Ngoc
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引用次数: 1

Abstract

Light quality is known to affects numerous plants’ physiological and metabolic processes during development period, including photosynthesis and morphogenesis. Light properties such as light wavelength has been optimized for several cultivated crops. In this study, the effects of LED light wavelengths blue and red on both photosynthetic performance and morphology of Gerbera jamesonii plantlets was investigated. The results showed the photosynthesis efficiency via the photo-pigment system and mediated regulation of rubisco activase encoding gene (RCA) mechanism was significantly enhanced by blue light. The expression of RCA was approximatly 2.7 times higher than those under red light. In contrast, chlorophyll contents, CO2 assimilation, total carbohydrate and RCA expression was reduced under red wavelength. However, both single-wavelengths caused a dramatically negative impact on G. jamesonii. Total chlorophyll/carotenoid value or higher carotenoid contents was lower under blue light; fragile petioles and drawrfism morphology was occurred under red and blue LED, respectively. The combination of blue and red light in the lighting spectrum significantly improved the limitations of single-wavelength. The supplement of blue light under red light background (at blue LED and red LED ratio = 1:4) improved plant photosynthesis while maintained the normal morphology of plants, although the expression of RCA and net photosynthesis of plants in BR LED was lower than in the control. Our results obviously provide the scientific evidences for requirement of LED light in micropropagation or canopy culture of G. jamesonii.
蓝光和红光LED灯对非洲菊rubisco激活酶基因表达、CO2固定效率和植株形态的影响
众所周知,光质量会影响植物发育期间的许多生理和代谢过程,包括光合作用和形态发生。几种栽培作物的光特性(如光波长)已得到优化。本研究研究了LED波长蓝光和红光对非洲菊幼苗光合性能和形态的影响。结果表明,蓝光显著提高了光色素系统光合效率和rubisco激活酶编码基因(RCA)调控机制。RCA的表达量约为红光下的2.7倍。而叶绿素含量、CO2同化、总碳水化合物含量和RCA表达量在红光波段降低。然而,这两种单波长都对叶氏梭菌产生了显著的负面影响。在蓝光照射下,叶绿素/类胡萝卜素总值或类胡萝卜素含量较低;在红色和蓝色LED下,叶柄呈脆性,叶柄呈锯齿状。在照明光谱中蓝光和红光的组合明显改善了单波长的局限性。在红光背景下(蓝光LED与红光LED比例为1:4时)补充蓝光可以提高植物的光合作用,同时维持植物的正常形态,但BR LED中植物RCA和净光合作用的表达低于对照。本研究结果为黄颡鱼的繁殖或冠层培养需要LED光提供了科学依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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