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首页> 外文期刊>Global change biology >A thirty percent increase in UV-B has no impact on photosynthesis in well-watered and droughted pea plants in the field
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A thirty percent increase in UV-B has no impact on photosynthesis in well-watered and droughted pea plants in the field

机译:UV-B含量增加30%对田间水分充足和干旱的豌豆植物的光合作用没有影响

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It has been suggested that field experiments which increase UV-B irradiation by a fixed amount irrespective of ambient light conditions ('square-wave'), may overestimate the response of photosynthesis to UV-B irradiation. In this study, pea (Pisum sativum L.) plants were grown in the field and subjected to a modulated 30% increase in ambient UK summer UV-B radiation (weighted with an erythemal action spectrum) and a mild drought treatment. UV-A and ambient UV control treatments were also studied. There were no significant effects of the UV-B treatment on the in situ CO2 assimilation rate throughout the day or on the light-saturated steady-state photosynthesis. This was confirmed by an absence of UV-B effects on the major components contributing to CO2 assimilation; photosystem II electron transport, ribulose 1,5-bisphosphate regeneration, ribulose 1,5-bisphosphate carboxylase/oxygenase carboxylation, and stomatal conductance. In addition to the absence of an effect on photosynthetic activities, UV-B had no significant impact on plant biomass, leaf area or partitioning. UV-B exposure increased leaf flavonoid content. The UV-A treatment had no observable effect on photosynthesis or productivity. Mild drought resulted in reduced biomass, a change in partitioning away from shoots to roots whilst maintaining leaf area, but had no observable effect on photosynthetic competence. No UV-B and drought treatment interactions were observed on photosynthesis or plant biomass. In conclusion, a 30% increase in UV-B had no effects on photosynthetic performance or productivity in well-watered or droughted pea plants in the field. [References: 63]
机译:已经表明,无论环境光条件如何(“方波”),将UV-B辐射增加固定量的现场实验都可能高估了光合作用对UV-B辐射的响应。在这项研究中,豌豆(Pisum sativum L.)植物在田间种植,并在英国夏季UV-B辐射(加权红斑作用光谱)和温和的干旱处理下增加了30%。还研究了UV-A和环境紫外线控制处理。 UV-B处理对全天原位CO2同化率或光饱和稳态光合作用没有显着影响。紫外线-B对主要成分的吸收没有影响,这证实了这一点。光系统II电子传输,核糖1,5-双磷酸酯再生,核糖1,5-双磷酸羧化酶/加氧酶羧化和气孔电导。除了对光合作用没有影响外,UV-B对植物生物量,叶面积或分区没有显着影响。 UV-B暴露可增加叶片中类黄酮的含量。 UV-A处理对光合作用或生产力没有明显影响。轻度干旱导致生物量减少,从芽到根的分配变化,同时保持叶面积,但对光合能力没有明显影响。在光合作用或植物生物量上未观察到UV-B和干旱处理的相互作用。总之,在田间浇水或干旱的豌豆植物中,UV-B增加30%对光合性能或生产力没有影响。 [参考:63]

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