4.3 Article

Chlorophyll content and photosystem II efficiency in soybean exposed to supplemental ultraviolet-B radiation

期刊

PHOTOSYNTHETICA
卷 51, 期 1, 页码 151-157

出版社

SPRINGER
DOI: 10.1007/s11099-013-0007-4

关键词

chlorophyll content; fluorescence quenching; Glycine max; rapid light curves; ultraviolet-B radiation

资金

  1. National Natural Science Foundation of China [41175136, 41005018]
  2. Key Laboratory of Agrometeorological Safeguard and Applied Technique, CMA [AMF 200901]
  3. Key Laboratory of Arid Climatic Change and Disaster Reduction of Gansu Province (CMA) [IAM 201004]
  4. Ministry of Education of China (grant PCSIRT)
  5. Qing Lan Project of Jiangsu Province

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Chlorophyll (Chl) a fluorescence parameters and rapid light curves of soybean [Glycine max (L.) Merrill] were measured by pulse amplitude modulation fluorometry. Measurements were taken during different stages of soybean growth under field conditions with 20% enhancement in ultraviolet-B (UV-B) radiation. Results showed that supplemental UV-B radiation decreased Chl contents by 5.5% (P=0.048), 8.7% (P=0.046), and 10.5% (P=0.005) in seedling, in branching-flowering, and in pod-setting stages, respectively. In the branching-flowering and pod-setting stages, maximum quantum yield of photosystem (PS) II photochemistry (F-v/F-m) decreased by 6.1% (P=0.001) and 3.0% (P=0.009), respectively. Supplemental UV-B radiation significantly decreased the effective quantum yield (Y). The photosynthetic capacity at light saturation (P-m) also decreased in both the seedling and branching-flowering stages by 28.9% (P=0.007) and 15.5% (P=0.041), respectively. However, Y and Pm showed no significant difference in the trefoil and pod-setting stages with and without the UV treatment. The light saturation parameter (E (k)) decreased by 21.1% (P=0.000) and 23.2% (P=0.029) in the trefoil and seedling stages, respectively. Moreover, the initial slope (alpha) decreased by 21.1% (P=0.001) in the branching-flowering stage. Nonphotochemical quenching (NPQ) in the seedling stage and photochemical quenching coefficient (q(p)) in the branching-flowering stage decreased significantly under UV-B treatments. The results of the present study suggest that supplemental UV-B radiation adversely affected Chl content and electron transport activity in PSII and consequently decreased the photosynthetic efficiency of soybean plants.

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