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Early Detection of Sage (Salvia officinalis L.) Responses to Ozone Using Reflectance Spectroscopy

机译:反射光谱法早期检测鼠尾草(Salvia officinalis L.)对臭氧的反应

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摘要

Advancements in techniques to rapidly and non-destructively detect the impact of tropospheric ozone (O3) on crops are required. This study demonstrates the capability of full-range (350–2500 nm) reflectance spectroscopy to characterize responses of asymptomatic sage leaves under an acute O3 exposure (200 ppb for 5 h). Using partial least squares regression, spectral models were developed for the estimation of several traits related to photosynthesis, the oxidative pressure induced by O3, and the antioxidant mechanisms adopted by plants to cope with the pollutant. Physiological traits were well predicted by spectroscopic models (average model goodness-of-fit for validation (R2): 0.65–0.90), whereas lower prediction performances were found for biochemical traits (R2: 0.42–0.71). Furthermore, even in the absence of visible symptoms, comparing the full-range spectral profiles, it was possible to distinguish with accuracy plants exposed to charcoal-filtered air from those exposed to O3. An O3 effect on sage spectra was detectable from 1 to 5 h from the beginning of the exposure, but ozonated plants quickly recovered after the fumigation. This O3-tolerance was confirmed by trends of vegetation indices and leaf traits derived from spectra, further highlighting the capability of reflectance spectroscopy to early detect the responses of crops to O3.
机译:需要快速,无损地检测对流层臭氧(O3)对农作物影响的技术。这项研究证明了全范围(350-2500 nm)反射光谱法能够表征在急性O3暴露(200 ppb,持续5 h)下无症状鼠尾草叶的响应。利用偏最小二乘回归,开发了光谱模型,用于估计与光合作用,O3诱导的氧化压力以及植物为应对污染物所采用的抗氧化机制有关的若干性状。光谱模型可以很好地预测生理性状(验证的平均模型拟合优度(R 2 ):0.65-0.90),而生化性状的预测性能较低(R 2 :0.42-0.71)。此外,即使没有可见的症状,也可以通过比较全光谱图谱,将暴露于木炭过滤空气中的植物与暴露于O3中的植物准确地区分开。从暴露开始1到5小时内即可检测到O3​​对鼠尾草光谱的影响,但是熏蒸后臭氧处理过的植物很快就恢复了。这种O3耐受性已通过植被指数和从光谱中获取的叶片性状的趋势得到证实,进一步凸显了反射光谱法能够及早发现农作物对O3的响应。

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