Plant Physiology and Biochemistry2022,Vol.1869.DOI:10.1016/j.plaphy.2022.07.010

Effects of light quality, photoperiod, CO2 concentration, and air temperature on chlorogenic acid and rutin accumulation in young lettuce plants br

Fukuda, Mirai Endo Naoya Yoshida, Hideo Kusano, Miyako
Plant Physiology and Biochemistry2022,Vol.1869.DOI:10.1016/j.plaphy.2022.07.010

Effects of light quality, photoperiod, CO2 concentration, and air temperature on chlorogenic acid and rutin accumulation in young lettuce plants br

Fukuda, Mirai Endo Naoya 1Yoshida, Hideo 1Kusano, Miyako1
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作者信息

  • 1. Univ Tsukuba
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Abstract

Environmental stimuli modulate plant metabolite accumulation, facilitating adaptation to stressful conditions. In this study, the effects of blue and red light, photoperiod, CO2 concentration, and air temperature on the chlorogenic acid (CGA) and rutin contents of lettuce (Lactuca sativa L.) were evaluated. Under continuous blue light and a high CO2 concentration (1000 ppm), the CGA level increased. The increased expression of phenylalanine ammonia-lyase (PAL) and activity of its product were correlated with high expression of cinnamate 4hydroxylase (C4H) and coumarate 3-hydroxylase (C3H). Furthermore, changes in PAL activity altered the CGA content in lettuce exposed to the three environmental factors, blue light, continuous lighting and high CO2 concentration. In addition, the expression levels of genes related to flavonoid biosynthesis increased in accordance with the promotion of CGA accumulation by the environmental factors. Under continuous blue light, 400 ppm CO2 promoted rutin accumulation to a greater degree compared to 1000 ppm CO2, by downregulating DFR expression. Low air temperature induced CGA accumulation in lettuce grown under continuous blue light and 1000 ppm CO2. Therefore, light quality, photoperiod, CO2 concentration, and air temperature exert synergistic effects on the CGA and rutin contents of lettuce by modulating activity in the corresponding biosynthesis pathways.

Key words

Flavonoids/Phenolic compounds/Phenylpropanoid pathway/Polyphenol/Polyphenol oxidase/PHENOLIC-COMPOUNDS/GENE-EXPRESSION/BLUE-LIGHT/ANTIOXIDANT ACTIVITY/ELEVATED CO2/BIOSYNTHESIS/METABOLISM/SALINITY/CAPACITY/OXIDASE

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出版年

2022
Plant Physiology and Biochemistry

Plant Physiology and Biochemistry

SCI
ISSN:0981-9428
被引量4
参考文献量48
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