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光质对亚洲毛茛光合作用、开花和代谢谱的光周期照明的作用。

The role of light quality of photoperiodic lighting on photosynthesis, flowering and metabolic profiling in Ranunculus asiaticus L.

机构信息

Department of Agricultural Sciences, University of Naples Federico II, Naples, 80055, Italy.

Department of Biology, University of Naples Federico II, Naples, 80126, Italy.

出版信息

Physiol Plant. 2020 Oct;170(2):187-201. doi: 10.1111/ppl.13122. Epub 2020 Jun 9.

Abstract

Photoperiodic light quality affects flowering of long day plants, by influencing the phytochrome photoequilibria (PPE) at plant level; however, the most effective light spectrum to promote flowering is still unknown for most of the flower crops. We evaluated the influence of light spectrum of three light sources, with different induced PPE, on photosynthesis, metabolic profiling, plant growth and flowering in two hybrids of Ranunculus asiaticus L., MBO (early flowering) and MDR (medium earliness). Three photoperiodic treatments were compared to natural day length (NL): white fluorescent light (PPE 0.84), light emitting diodes (LEDs) with red:far red (R:FR) light at 3:1 ratio (PPE, 0.84) and LEDs with R:FR light at 1:3 ratio (PPE 0.63). Under natural light, net photosynthesis was higher in MDR than in MBO, while photochemistry was similar in the hybrids. Compared to NL, photoperiodic treatments did not affect net photosynthesis, while they promoted the quantum yield of PSII and reduced the non-photochemical quenching. Under NL, plant growth was greater in MBO, while flowering started earlier in MDR and flowers characteristics were similar in the hybrids. Despite the greater sensitivity of MDR plants in terms of metabolism, photoperiodic lighting improved plant growth and reduced the flowering time only in MBO, with a stronger effect under R:FR 3:1 light. MDR plants were characterized by higher soluble sugars, polyphenols, photosynthetic pigments and proteins, while MBO plants by higher starch and amino acid content. The morphological effects of photoperiodic light quality and the hybrid-specific response should be taken into account to optimize lighting protocols in commercial farms.

摘要

光周期的光质通过影响植物水平的光敏色素光平衡(PPE)来影响长日照植物的开花;然而,对于大多数花卉作物来说,促进开花的最有效光谱仍然未知。我们评估了三种光源的光谱对光合作用、代谢谱、植物生长和开花的影响,这三种光源具有不同的诱导 PPE,供试材料为两种毛茛属亚洲杂种Ranunculus asiaticus L.,即 MBO(早花)和 MDR(中花)。将三个光周期处理与自然日长(NL)进行比较:白色荧光灯(PPE 0.84)、红光:远红光(R:FR)比值为 3:1 的发光二极管(LEDs)(PPE 0.84)和 R:FR 比值为 1:3 的 LEDs(PPE 0.63)。在自然光下,MDR 的净光合作用高于 MBO,而杂种的光化学相似。与 NL 相比,光周期处理不影响净光合作用,反而促进 PSII 的量子产率,降低非光化学猝灭。在 NL 下,MBO 的植物生长较大,而 MDR 的开花较早,杂种的花特征相似。尽管 MDR 植物在代谢方面更为敏感,但光周期照明仅在 MBO 中改善了植物生长并缩短了开花时间,在 R:FR 3:1 光下效果更强。MDR 植物的可溶性糖、多酚、光合色素和蛋白质含量较高,而 MBO 植物的淀粉和氨基酸含量较高。在商业农场中优化照明方案时,应考虑光质的光周期效应和杂种特异性反应的形态效应。

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