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[1] Kutschera, L. Wurzelatlas mitteleurop?ischer Ackerunkr?uter und Kulturpflanzen. DLG-Verlags-GmbH, Frankfurt am Main (1960).£»Kenrick, P., & Strullu-Derrien, C. Theorigin and early evolution of roots. Plant Physiol. 166, 570-580 (2014).

[2] ÇØÌìÔª, Ëﳬ, ±ÏÕæÕæµÈ. Ö²Îï¸ùϵ³ÉÏñ¼¼ÊõÑо¿½øÕ¹¼°ÂíÁåÊí¸ùϵÑо¿Ó¦ÓÃÇ°¾°[J]. ºËũѧ±¨, 2019, 33(02): 412-419.

[3] Dhondt S, Wuyts N, Inz¨¦ D. Cell to whole-plant phenotyping: the best is yet to come. TrendsPlant Sci. 2013; 18:428¨C39.

[4] Pierret A. Multi-spectral imaging of rhizobox systems: new perspectivesfor the observation and discrimination of rhizosphere components. Plant Soil. 2008; 310: 263¨C8.

[5] Vamerali T, Ganis A, Bona S, Mosca G£® An approach to minirhizotron root image analysis£ÛJ£Ý£® Plant and Soil, 1999, 217( 1/2) : 183£­193.

[6] Johnson M G, Tingey D T, Phillips D L, Storm M J. Advancing fine rootresearch with minirhizotrons [J].Environmental and Experimental Botany, 2001, 45( 3) : 263£­289.

[7] ÇØÌìÔª, Ëﳬ, ±ÏÕæÕæµÈ. Ö²Îï¸ùϵ³ÉÏñ¼¼ÊõÑо¿½øÕ¹¼°ÂíÁåÊí¸ùϵÑо¿Ó¦ÓÃÇ°¾°[J]. ºËũѧ±¨, 2019, 33(02):412-419.

[8] Gernot B , Mouhannad A , Alireza N , et al. RGB and Spectral Root Imaging for Plant Phenotyping and Physiological Research: Experimental Setupand Imaging Protocols. [J]. Journal of visualized experiments : JoVE, 2017, (126).

[9] Gernot B, Alireza N, Thomas A, et al. Hyperspectral imaging: a novel approach for plant root phenotyping.[J]. Plantmethods, 2018, 14(1).

[10] Gernot B , Mouhannad A , Alireza N . Root System Phenotying ofSoil-Grown Plants via RGB and Hyperspectral Imaging. [J].Methods in molecularbiology (Clifton, N.J.), 2021, 2264245-268.

[11] Advanced Imaging for Quantitative Evaluation of Aphanomyces RootRot Resistance in Lentil[J]. Frontiers in Plant Science, 2019, 10.

[12] Nakaji T, Noguchi K, Oguma H. Classification of rhizosphere components using visible¨Cnear infrared spectral images. Plant Soil. 2008; 310: 245¨C61.

 

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