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Nitrogen Can Alleviate the Inhibition of Photosynthesis Caused by High Temperature Stress under Both Steady-State and Flecked Irradiance

机译:氮可以缓解稳态和斑点辐照下高温胁迫对光合作用的抑制作用

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摘要

Nitrogen is one of the most important elements for plants and is closely related to photosynthesis. High temperature stress significantly inhibits photosynthesis under both steady-state and flecked irradiance. However, it is not known whether nitrogen can affect the decrease in photosynthesis caused by high temperature, especially under flecked irradiance. In the present study, a pot experiment was conducted under two nitrogen (N) supplies with rice plants, and the steady-state and dynamic photosynthesis rates were measured under 28 and 40°C. High temperature significantly increased leaf hydraulic conductance (Kleaf) under high N supply (HN) but not under low N supply (LN). The increased Kleaf maintained a constant leaf water potential (Ψleaf) and steady-state stomatal conductance (gs,sat) under HN, while the Ψleaf and gs,sat significantly decreased under high temperature in LN conditions. This resulted in a more severe decrease in steady-state photosynthesis (Asat) under high temperature in the LN conditions. After shifting from low to high light, high temperature significantly delayed the recovery of photosynthesis, which resulted in more carbon loss under flecked irradiance. These effects were obtained under HN to a lesser extent than under LN supply. Therefore, it is concluded that nitrogen can alleviate the inhibition of photosynthesis caused by high temperature stress under both steady-state and flecked irradiance.
机译:氮是植物最重要的元素之一,与光合作用密切相关。高温胁迫在稳态和斑点辐照下均显着抑制光合作用。然而,尚不清楚氮是否会影响高温引起的光合作用降低,特别是在斑点辐照下。在本研究中,盆栽试验是在两种氮素供应下对水稻植株进行的,在28和40°C下测量了稳态和动态光合作用速率。在高氮供应(HN)下,高温显着增加了叶片的水力传导率(Kleaf),但在低氮供应(LN)下却没有。在HN下,增加的Kleaf保持恒定的叶片水势(Ψleaf)和稳态气孔导度(gs,sat),而在LN条件下,高温下Ψle和gs,sat明显降低。在LN条件下,高温导致稳态光合作用(Asat)的降低更为严重。从弱光转为强光后,高温显着延迟了光合作用的恢复,这导致了斑点辐照下更多的碳损失。在HN下获得的效果要比在LN供应下获得的效果要小。因此,可以得出结论,氮在稳态和斑点辐照下都可以减轻高温胁迫对光合作用的抑制作用。

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