Journal of Zhejiang Agricultural Sciences ›› 2026, Vol. 67 ›› Issue (7): 1725-1733.DOI: 10.16178/j.issn.0528-9017.20240944

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Diagnosis of drought stress in lilies based on chlorophyll fluorescence parameters

JIANG Yuanjun1(), YANG Yiping2, FU Manman3, WU Chao3()   

  1. 1.China Three Gorges University,Yichang 443000,Hubei
    2.Haining Economic Crop Technology Service Station,Haining 314499,Zhejiang
    3.Institute of Horticulture,Zhejiang Academy of Agricultural Sciences,Hangzhou 310021,Zhejiang
  • Received:2024-12-11 Online:2026-07-11 Published:2026-07-27
  • Contact: WU Chao

Abstract:

Water and photosynthesis are key factors regulating plant growth,and drought stress induces stomatal closure in leaves,thereby impairing plant photosynthetic performance. To clarify the changes in chlorophyll fluorescence parameters of lily ‘Sunderland’ under drought stress,this study analyzed chlorophyll fluorescence parameters under varying photosynthetically active radiations and temperatures,and calibrated the functional relationship between photosynthetic rate and chlorophyll fluorescence parameters. Additionally,data collected during drought stress and after stress relief were used to examine changes in chlorophyll fluorescence parameters before and after rewatering. The results showed that with an increase in photosynthetically active radiation,the quantum yield of chloroplast photosystem Ⅱ(PSⅡ) photochemistry(Φ2)exhibited a decreasing trend,while the quantum yield of regulated energy dissipation(ΦNPQ)showed an increasing trend. The quantum yield of non-regulated energy dissipation(ΦNO)remained essentially unchanged across different temperatures and was negatively correlated with ΦNPQ. Lily plants achieved the maximum Φ? when photosynthetically active radiation was 0. The coefficient of determination (R2) between predicted and actual values of Φ? was 0.95,with a relative root mean square error(rRMSE)of 3.15%. For the fraction of open PSII reaction centers(qL),the R2 was 0.86 and the rRMSE was 6.15%. For ΦNPQ,the R2 was 0.95 and the rRMSE was 9.58%. With increasing drought stress intensity,ΦNO and ΦNPQ increased,while the net photosynthetic rate at saturating light(Pn,max),Φ2,qL,and the maximum photochemical efficiency of PSII(Fv/Fm)decreased. Furthermore,the carbon assimilation capacity per electron(s)and dark respiration rate(Rd)were also reduced. After 10 days of rewatering,Pn,max and Φ? of lily plants under a soil water potential of -20 to -15 kPa were essentially consistent with those under -10 to -4 kPa. These findings provide a reference for evaluating the growth of lily under drought stress.

Key words: lily, drought stress, chlorophyll fluorescence parameter, diagnosis, water potential

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