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Blue light is more essential than red light for maintaining the activities of photosystem II and I and photosynthetic electron transport capacity in cucumber leaves

机译:蓝光比红光更为必要,用于维持光学系统II和I的活动和黄瓜叶中的光合电子传输能力

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摘要

Blue and red lights differently regulate leaf photosynthesis. Previous studies indicated that plants under blue light generally exhibit better photosynthetic characteristics than those under red light. However, the regulation mechanism of related photosynthesis characteristics remains largely unclear. Here, four light qualities treatments (300 μmol m−2 s−1) including white fluorescent light (FL), blue monochromatic light (B, 440 nm), red monochromatic light (R, 660 nm), and a combination of red and blue light (RB, R:B=8:1) were carried out to investigate their effects on the activity of photosystem II (PSII) and photosystem I (PSI), and photosynthetic electron transport capacity in the leaves of cucumber (Cucumis sativus L.) seedlings. The results showed that compared to the FL treatment, the R treatment significantly limited electron transport rate in PSII (ETRII) and in PSI (ETRI) by 79.4 and 66.3%, respectively, increased non-light induced non-photochemical quenching in PSII (ΦNO) and limitation of donor side in PSI (ΦND) and reduced most JIP-test parameters, suggesting that the R treatment induced suboptimal activity of photosystems and inhibited electron transport from PSII donor side up to PSI. However, these suppressions were effectively alleviated by blue light addition (RB). Compared with the R treatment, the RB treatment significantly increased ETRII and ETRI by 176.9 and 127.0%, respectively, promoted photosystems activity and enhanced linear electron transport by elevating electron transport from QA to PSI. The B treatment plants exhibited normal photosystems activity and photosynthetic electron transport capacity similar to that of the FL treatment. It was concluded that blue light is more essential than red light for normal photosynthesis by mediating photosystems activity and photosynthetic electron transport capacity.
机译:蓝色和红色的灯光调节不同的光合作用。以往的研究表明,在蓝光下的植物通常具有比红光下更好的光合特性。然而,相关光合特性的调控机制在很大程度上仍然不清楚。这里,四个光质量处理(300微摩尔M-2 S-1),其包括白色荧光灯(FL),蓝色单色光(B,440纳米),红色单色光(R,660纳米),和红的组合,并且蓝色光(RB,R:B = 8:1)进行了调查其上的光系统II(PSII)的活性的效果和光系统I(PSI),以及光合作用电子传输能力在黄瓜的叶(黄瓜大号。)苗。结果表明,相比于FL治疗时,R治疗在PSII(ETRII)显著限于电子传递速率和在PSI(ETRI)由79.4和66.3%,分别在PSII增加非光诱导的非光化学淬灭(ΦNO )和PSI(ΦND供体侧的限制)和降低的最JIP-测试参数,这表明将R治疗诱导光系统和从PSII供体侧到PSI抑制电子传递的次优的活性。然而,这些镇压被有效被蓝光除(RB)缓解。使用R治疗相比,RB治疗显著增加ETRII和ETRI由176.9和127.0%,分别促进光系统的活性和通过从QA升降电子传输到PSI增强线性电子传输。在B处理植物显示正常的光系统的活性和类似于FL治疗的光合电子传输能力。得出的结论是蓝色光比红光用于通过介导光系统活性和光合电子传输能力正常的光合作用更重要了。

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