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甜椒自体荧光对太阳辐射的响应。

Response of sweet pepper autofluorescence against solar radiation.

机构信息

Kyoto Prefectural Agriculture, Forestry and Fisheries Technology Center, Kameoka, 621-0806, Japan.

Graduate School of Agriculture, Kyoto University, Kyoto, 606-8502, Japan.

出版信息

Photochem Photobiol Sci. 2022 Nov;21(11):2053-2060. doi: 10.1007/s43630-022-00276-2. Epub 2022 Jul 28.

Abstract

Shades are adjusted in sweet pepper cultivation, based on solar exposure levels. Pyranometers and photosensitive films have recently been introduced to smart agriculture. However, there are no means of observing biological responses to solar exposure. In this study, we hypothesized that solar exposure levels affect the visible autofluorescence of sweet pepper under 365 nm illumination. To test this hypothesis, we cultivated sweet pepper plants under two exposure conditions, low (half of the normal) and high (the normal). Fluorescence photography (365 nm illumination) revealed that dark-fluorescent peppers only arise when cultivated under high-exposure conditions (0.7-fold decline at emission of 390 nm for high-exposure conditions). Microscopic and spectroscopic observations showed that blue autofluorescence was accompanied by an accumulation of UVB pigments (1.2-factor increase in the absorbance at 300 nm) and epidermal development (1.3-fold thicker cell wall). This study suggests that the autofluorescence of sweet pepper can possibly be used to understand the response of crop to solar radiation at a fruit level in horticulture.

摘要

在甜椒种植中,根据太阳辐射水平来调整遮阳网。最近,天顶角仪和感光胶片已经被引入到智能农业中。然而,目前还没有观察到生物对太阳辐射响应的手段。在这项研究中,我们假设太阳辐射水平会影响 365nm 光照下甜椒的可见自发荧光。为了验证这一假设,我们在两种暴露条件下(低光照:只有正常光照的一半;高光照:正常光照)种植甜椒。荧光摄影(365nm 光照)表明,只有在高光照条件下才会出现暗荧光的甜椒(高光照条件下 390nm 处发射的荧光强度下降了 0.7 倍)。显微镜和光谱观察表明,蓝色自发荧光伴随着 UVB 色素的积累(300nm 处吸光度增加了 1.2 倍)和表皮发育(细胞壁厚度增加了 1.3 倍)。这项研究表明,甜椒的自发荧光可能可用于在园艺中了解果实层面上作物对太阳辐射的响应。

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