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通过光谱反射率测量估算芒草基因型的光截获与干物质转化效率

Light interception and dry matter conversion efficiency of miscanthus genotypes estimated from spectral reflectance measurements.

作者信息

Jørgensen Uffe, Mortensen Jørgen, Ohlsson Christer

机构信息

Danish Institute of Agricultural Sciences (DIAS), Department of Crop Physiology and Soil Science, Research Centre Foulum, PO Box 50, 8830 Tjele, Denmark.

出版信息

New Phytol. 2003 Feb;157(2):263-270. doi: 10.1046/j.1469-8137.2003.00661.x.

Abstract

• Relationships between crop reflectance in the visible and the near infrared wavelengths are closely correlated with the amount of photosynthetically active tissue in the crop. Reflectance measurements were used to quantify genotypic differences in light interception, dry matter (DM) conversion efficiency and senescence pattern within the genus Miscanthus. The aim was to verify this method as a selection tool in plant breeding programmes. • Spectral reflectance of nine genotypes was measured weekly throughout their second and third growing seasons in a field experiment conducted in Denmark. Leaf greenness was assessed by visual scoring. • Significant differences between genotypes in the calculated fraction of PAR intercepted in green tissue (f ) occurred mainly early and late in the growing season. The f values correlated well with visual estimates of leaf greenness. Within genotypes accumulated intercepted PAR ranged from 632 to 737 MJ m in the third year, while the DM : radiation quotient, ɛ, ranged from 1.06 to 2.53 g MJ . • Yield variation between genotypes was mainly caused by differences in ɛ. Measuring spectral reflectance was less time consuming than visual leaf scoring. The significant physiological variation within the genus Miscanthus gives good prospects for future breeding.

摘要

• 作物在可见光和近红外波段的反射率之间的关系与作物中光合活性组织的数量密切相关。反射率测量用于量化芒属植物在光截获、干物质(DM)转化效率和衰老模式方面的基因型差异。目的是验证该方法作为植物育种计划中的选择工具。

• 在丹麦进行的田间试验中,在九个基因型的第二个和第三个生长季节每周测量其光谱反射率。通过视觉评分评估叶片绿色度。

• 基因型之间在绿色组织中截获的光合有效辐射(PAR)的计算分数(f )上的显著差异主要出现在生长季节的早期和晚期。f 值与叶片绿色度的视觉估计值相关性良好。在基因型内,第三年累积截获的PAR范围为632至737 MJ m ,而干物质与辐射商(ɛ)范围为1.06至2.53 g MJ 。

• 基因型间产量差异主要由ɛ的差异引起。测量光谱反射率比视觉叶片评分耗时更少。芒属植物内显著的生理变异为未来育种提供了良好前景。

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