Hardening-off under fluctuating light enhances the photosystem I resistance to excessive fluctuating light in Enhalus acoroides.

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Autori principali: Che, Xingkai, Ye, Yuchen, Zhou, Bin, Wu, Haixing, Liu, Shuchen, Li, Hu, Liu, Jianguo, Li, Zhendong, Li, Yongfu
Natura: Artículo científico
Lingua:en
Pubblicazione: Photochemistry and photobiology 2025
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author Che, Xingkai
Ye, Yuchen
Zhou, Bin
Wu, Haixing
Liu, Shuchen
Li, Hu
Liu, Jianguo
Li, Zhendong
Li, Yongfu
author_facet Che, Xingkai
Ye, Yuchen
Zhou, Bin
Wu, Haixing
Liu, Shuchen
Li, Hu
Liu, Jianguo
Li, Zhendong
Li, Yongfu
Che, Xingkai
Ye, Yuchen
Zhou, Bin
Wu, Haixing
Liu, Shuchen
Li, Hu
Liu, Jianguo
Li, Zhendong
Li, Yongfu
collection PubMed - marine biology
contents Hardening-off under fluctuating light enhances the photosystem I resistance to excessive fluctuating light in Enhalus acoroides. Che, Xingkai Ye, Yuchen Zhou, Bin Wu, Haixing Liu, Shuchen Li, Hu Liu, Jianguo Li, Zhendong Li, Yongfu Seagrass meadows of Enhalus acoroides are rapidly declining. Transplanting artificially cultured seedlings is considered an efficient method of seagrass restoration. However, excessive fluctuating light (eFL) in the wild is highly likely to be a major threat to the survival of transplanted seedlings of E. acoroides. This study demonstrated that eFL in the wild inhibited the development of PSI activity in mature E. acoroides plants but had little effect on PSII activity. To verify the effect of FL on artificially cultured seedlings of E. acoroides, we cultured such seedlings under FL and constant light (CL) indoors. The results showed that the PSI activity of FL-cultured seedlings was lower than that of CL, while the resistance of PSI to eFL was significantly enhanced in FL-cultured seedlings. The increase in PSI resistance of FL-cultured seedlings was attributed to the decrease in active PSII reaction centers, which protected PSI from excessive electrons at the moment when low light turns to high light. This study demonstrated that using FL to cultivate E. acoroides seedlings can improve their adaptability to eFL in the wild, as a possible way to increase the survival rate of transplanted seedlings.
format Artículo científico
id pubmed_40878393
institution PubMed
language en
publishDate 2025
publisher Photochemistry and photobiology
record_format pubmed
spellingShingle Hardening-off under fluctuating light enhances the photosystem I resistance to excessive fluctuating light in Enhalus acoroides.
Che, Xingkai
Ye, Yuchen
Zhou, Bin
Wu, Haixing
Liu, Shuchen
Li, Hu
Liu, Jianguo
Li, Zhendong
Li, Yongfu
Hardening-off under fluctuating light enhances the photosystem I resistance to excessive fluctuating light in Enhalus acoroides. Che, Xingkai Ye, Yuchen Zhou, Bin Wu, Haixing Liu, Shuchen Li, Hu Liu, Jianguo Li, Zhendong Li, Yongfu Seagrass meadows of Enhalus acoroides are rapidly declining. Transplanting artificially cultured seedlings is considered an efficient method of seagrass restoration. However, excessive fluctuating light (eFL) in the wild is highly likely to be a major threat to the survival of transplanted seedlings of E. acoroides. This study demonstrated that eFL in the wild inhibited the development of PSI activity in mature E. acoroides plants but had little effect on PSII activity. To verify the effect of FL on artificially cultured seedlings of E. acoroides, we cultured such seedlings under FL and constant light (CL) indoors. The results showed that the PSI activity of FL-cultured seedlings was lower than that of CL, while the resistance of PSI to eFL was significantly enhanced in FL-cultured seedlings. The increase in PSI resistance of FL-cultured seedlings was attributed to the decrease in active PSII reaction centers, which protected PSI from excessive electrons at the moment when low light turns to high light. This study demonstrated that using FL to cultivate E. acoroides seedlings can improve their adaptability to eFL in the wild, as a possible way to increase the survival rate of transplanted seedlings.
title Hardening-off under fluctuating light enhances the photosystem I resistance to excessive fluctuating light in Enhalus acoroides.
url https://pubmed.ncbi.nlm.nih.gov/40878393/