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Photosynthetic apparatus plays a central role in photosensitive physiological acclimations affecting spinach (Spinacia oleracea L.) growth in response to blue and red photon flux ratios

机译:光合仪在影响菠菜(Spinacia Oleracea L.)生长的光敏生理驯化中起到核心作用,响应于蓝色和红色光子通量比率

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Relative abundance of blue (B) and, red (R) photons in the incident light plays a major role in regulating the morphology and physiology of plants. Many studies have been carried out to determine the R:B photon flux ratio (PFR) required for eliciting desired traits in various plant species. However, studies investigating the impact of R:B PFR on the underlying metabolic events and their mutual interactions are limited. In the present study, spinach (Spinacia oleracea L. cv. All Green) plants were raised in a plant growth chamber under R:B PERs of 100R:0B, 75R:25B, 50R:50B, 25R:75B and OR:100B provided by customized light-emitting diode (LED) panels. Data related to plant growth, status of photosynthetic apparatus, nitrogen metabolism, metabolite profile, oxidative stress and antioxidant defense response were collected. A putative mechanistic concept highlighting the interplay between photosynthesis, C- and N-assimilation and oxidative stress response in regulating plant growth under changing R:B PFR has been presented. Steady growth under B and R combined treatments was associated with high chlorophyll content, PSII quantum yield (F-v/F-m, F-v/F-o, Phi(PSII)) and vitality index (Red) along with proper C- and N-assimilation. Reduction in non-photochemical quenching (NPQ) and oxidative stress was also observed under 25R:75B to 75R:25B light treatments. Subdued photosynthetic activity under deficiency of B waveband resulted in arrested growth due to suboptimal C- and N-assimilation. Monochromatic B lighting caused damage to the photosynthetic apparatus due to increased photooxidation. Presence of B photons was favorable for eliciting enzymatic and non-enzymatic antioxidant defense responses. However, the antioxidant machinery was unable to ameliorate the excessive oxidative damage under OR:100B treatment resulting in suboptimal plant growth. Integrity and proper functionality of the photosynthetic apparatus under B and R combined light quality treatments was found to play a pivotal role in coordinating the non-photosynthetic light-sensitive metabolic processes in response to changing R:B PFR for ensuring proper plant growth.
机译:在入射光中的蓝色(B)和红色(R)光子的相对丰度在调节植物的形态和生理学方面发挥着重要作用。已经进行了许多研究以确定引发各种植物物种中所需的性状所需的R:B光子通量比(PFR)。然而,研究R:B PFR对潜在的代谢事件的影响及其相互互动的研究有限。在本研究中,菠菜(SpinAcia Oleracea L.CV。所有绿色)植物在植物生长室下在R:B 35R:0b,75r:25b,50r:50b,25r:75b和或:100b提供通过定制发光二极管(LED)面板。收集了与植物生长,光合施用,氮代谢,代谢物型,氧化应激和抗氧化防御反应的数据相关的数据。提出了一个推定的机械概念,介绍了在改变R:B PFR下调节植物生长的光合作用,C-和N-同化和氧化应激反应之间的相互作用。 B和R组合处理下的稳定增长与高叶绿素含量,PSII量子产率(F-V / F-M,F-V / F-O,PHI(PSII))和活力指数(红色)以及适当的C-和N-同化相关。在25r:75b至75r:25b的光处理下也观察到非光化学猝灭(NPQ)和氧化应激的降低。由于次优的C-和N-Assmilation,B缺乏B波段的光合活性导致增长导致增长。单色B照明因光氧化增加而导致光合仪器损坏。 B光子的存在有利于引发酶促和非酶促抗氧化防御反应。然而,抗氧化机械不能改善或:100B处理的过度氧化损伤,导致次优植物生长。发现B和R组合光质处理下的光合仪器的完整性和适当的功能在响应于改变R:B PFR来确保适当的植物生长,在协调非光合光敏代谢过程方面发挥枢转作用。

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