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A general non-rectangular hyperbola equation for photosynthetic light response curve of rice at various leaf ages

机译:不同叶龄水稻光合光响应曲线的一般非矩形双曲线方程

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摘要

Photosynthetic light response (PLR) curves of leaves are usually fitted by non-rectangular hyperbola (NRH) equation, and those fitted NRH parameters may change with leaf aging. The objectives of this study were 1) to reveal the response of NRH parameters of rice leaves, light-saturated net photosynthetic rate (Pnmax), quantum yield of assimilation (φ), dark respiration rate (Rd) and convexity of the curve (k), to leaf age; and 2) to improve the performance of NRH equation in simulating the PLR curves for leaves at various ages. The PLR for rice leaves at ages of 3–53 days were measured, and the general NRH equation was developed by incorporating the relationship between NRH parameters and leaf age into the NRH equation. The results showed that the NRH parameters of Pnmax, φ and Rd increased rapidly to maximum at approximately 10 days and then declined linearly toward the age of 53 days. However, the value of k was not sensitive to leaf age. The general NRH equation can be used to simulate leaf PLR continuously along with leaf aging.
机译:叶片的光合作用光响应(PLR)曲线通常通过非矩形双曲线(NRH)方程拟合,而拟合的NRH参数可能随叶片老化而变化。这项研究的目的是1)揭示水稻叶片NRH参数的响应,光饱和净光合速​​率(Pnmax),同化的量子产率(φ),暗呼吸速率(Rd)和曲线的凸度(k) ),以达到叶龄; 2)改善了NRH方程在模拟不同年龄叶片的PLR曲线时的性能。测量了3–53天龄水稻叶片的PLR,并通过将NRH参数和叶龄之间的关系纳入NRH方程来建立一般的NRH方程。结果表明,Pnmax,φ和Rd的NRH参数在大约10天时迅速增加到最大值,然后在53天时呈线性下降。但是,k的值对叶龄不敏感。通用的NRH方程可用于随着叶片老化而连续模拟叶片PLR。

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