The Early, Rapid, and Non-Destructive Detection of Citrus Huanglongbing (HLB) Based on Microscopic Confocal Raman
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Baldwin E, Plotto A, Manthey J, McCollum G, Bai J, Irey M, Cameron R, Luzio G (2009) Effect of Liberibacter infection (huanglongbing disease) of citrus on orange fruit physiology and fruit/fruit juice quality: chemical and physical analyses. J Agric Food Chem 58:1247–1262
Baldwin E, Plotto A, Bai J, Manthey J, Zhao W, Raithore S, Irey M (2018) Effect of abscission zone formation on orange (Citrus sinensis) fruit/juice quality for trees affected by huanglongbing (HLB). J Agric Food Chem 66:2877–2890
Clark K, Franco JY, Schwizer S, Pang Z, Hawara E, Liebrand TW, Pagliaccia D, Zeng L, Gurung FB, Wang P (2018) An effector from the huanglongbing-associated pathogen targets citrus proteases. Nat Commun 9
De Gelder J, De Gussem K, Vandenabeele P, Moens L (2007) Reference database of Raman spectra of biological molecules. J Raman Spectrosc 38:1133–1147
Ding F, Allen V, Luo W, Zhang S, Duan Y (2018) Molecular mechanisms underlying heat or tetracycline treatments for citrus HLB control. Hortic Res 5:30
do Brasil Cardinali MC, Boas PRV, Milori DMBP, Ferreira EJ, e Silva MF, Machado MA, Bellete BS (2012) Infrared spectroscopy: a potential tool in huanglongbing and citrus variegated chlorosis diagnosis. Talanta 91:1–6
Fu X, He X, Xu H, Ying Y (2016) Nondestructive and rapid assessment of intact tomato freshness and lycopene content based on a miniaturized Raman spectroscopic system and colorimetry. Food Anal Methods 9:2501–2508
Gottwald TR (2010) Current epidemiological understanding of citrus huanglongbing. Annu Rev Phytopathol 48:119–139
Grafton-Cardwell EE, Stelinski LL, Stansly PA (2013) Biology and management of Asian citrus psyllid, vector of the huanglongbing pathogens. Annu Rev Entomol 58:413–432
Guzman JCV, Basu S, Rabara R, Huynh LK, Basu GC, Nguyen HB, Gupta G (2018) Liposome delivery system of antimicrobial peptides against huanglongbing (HLB) citrus disease. Biophys J 114:266a
He Y, Li X, Deng X (2007) Discrimination of varieties of tea using near infrared spectroscopy by principal component analysis and BP model. J Food Eng 79:1238–1242
Hu J, Jiang J, Wang N (2017) Control of citrus huanglongbing via trunk injection of plant defense activators and antibiotics. Phytopathology 108:186–195
Jagoueix S, Bové JM, Garnier M (1996) PCR detection of the two “Candidatus” liberobacter species associated with greening disease of citrus. Mol Cell Probes 10:43–50
Khan KM, Krishna H, Majumder SK, Gupta PK (2015) Detection of urea adulteration in milk using near-infrared Raman spectroscopy. Food Anal Methods 8:93–102
Koester S, Rim K, Chu J, Mooney P, Ott J, Hargrove M (2001) Effect of thermal processing on strain relaxation and interdiffusion in Si/SiGe heterostructures studied using Raman spectroscopy. Appl Phys Lett 79:2148–2150
Li W, Hartung JS, Levy L (2007) Evaluation of DNA amplification methods for improved detection of “Candidatus Liberibacter species” associated with citrus huanglongbing. Plant Dis 91:51–58
Li X, Lee WS, Li M, Ehsani R, Mishra AR, Yang C, Mangan RL (2012) Spectral difference analysis and airborne imaging classification for citrus greening infected trees. Comput Electron Agric 83:32–46
Martinelli F, Reagan RL, Dolan D, Fileccia V, Dandekar AM (2016) Proteomic analysis highlights the role of detoxification pathways in increased tolerance to Huanglongbing disease. BMC Plant Biol 16:167
Movasaghi Z, Rehman S, Rehman IU (2007) Raman spectroscopy of biological tissues. Appl Spectrosc Rev 42:493–541
Najbjerg H, Afseth NK, Young JF, Bertram HC, Pedersen ME, Grimmer S, Vogt G, Kohler A (2011) Monitoring cellular responses upon fatty acid exposure by Fourier transform infrared spectroscopy and Raman spectroscopy. Analyst 136:1649–1658
Peng Q, Zeng C, Zhou Y, Lian S, Nie G (2015) Rapid determination of turmeric roots quality based on the Raman spectrum of curcumin. Food Anal Methods 8:103–108
Pérez MRV, Mendoza MGG, Elias MGR (2016) Raman spectroscopy an option for the early detection of citrus huanglongbing. Appl Spectrosc 70:829–839
Pérez-Enciso M, Tenenhaus M (2003) Prediction of clinical outcome with microarray data: a partial least squares discriminant analysis (PLS-DA) approach. Hum Genet 112:581–592
Ranulfi AC, Cardinali MC, Kubota TM, Freitas-Astua J, Ferreira EJ, Bellete BS, da Silva MFG, Boas PRV, Magalhaes AB, Milori DM (2016) Laser-induced fluorescence spectroscopy applied to early diagnosis of citrus Huanglongbing. Biosyst Eng 144:133–144
Sankaran S, Ehsani R (2013) Detection of huanglongbing-infected citrus leaves using statistical models with a fluorescence sensor. Appl Spectrosc 67:463–469
Sankaran S, Ehsani R, Etxeberria E (2010) Mid-infrared spectroscopy for detection of huanglongbing (greening) in citrus leaves. Talanta 83:574–581
Sankaran S, Mishra A, Maja JM, Ehsani R (2011) Visible-near infrared spectroscopy for detection of huanglongbing in citrus orchards. Comput Electron Agric 77:127–134
Tenenbaum JB, De Silva V, Langford JC (2000) A global geometric framework for nonlinear dimensionality reduction. Science 290:2319–2323
Vasko P, Blackwell J, Koenig J (1972) Infrared and raman spectroscopy of carbohydrates: Part II: normal coordinate analysis of α-D-glucose. Carbohydr Res 23:407–416
Wang N, Trivedi P (2013) Citrus huanglongbing: a newly relevant disease presents unprecedented challenges. Phytopathology 103:652–665
Wang Y, Zhou L, Yu X, Stover E, Luo F, Duan Y (2016) Transcriptome profiling of huanglongbing (HLB) tolerant and susceptible citrus plants reveals the role of basal resistance in HLB tolerance. Front Plant Sci 7:933
Weisburg WG, Barns SM, Pelletier DA, Lane DJ (1991) 16S ribosomal DNA amplification for phylogenetic study. J Bacteriol 173:697–703
