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Optical Sensing for Evaluating the Severity of Disease Caused by Cladosporium sp. in Barley under Warmer Conditions 원문보기

The plant pathology journal, v.34 no.3, 2018년, pp.236 - 240  

Oh, Dohyeok (Department of Applied Plant Science, Chonnam National University) ,  Ryu, Jae-Hyun (Department of Applied Plant Science, Chonnam National University) ,  Oh, Sehee (Department of Applied Plant Science, Chonnam National University) ,  Jeong, Hoejeong (Department of Applied Plant Science, Chonnam National University) ,  Park, Jisung (Department of Applied Plant Science, Chonnam National University) ,  Jeong, Rae-Dong (Department of Applied Biology, Institute of Environmentally Friendly Agriculture, Chonnam National University) ,  Kim, Wonsik (Institute for Agro-Environmental Sciences) ,  Cho, Jaeil (Department of Applied Plant Science, Chonnam National University)

Abstract AI-Helper 아이콘AI-Helper

Crop yield is critically related to the physiological responses and disease resistance of the crop, which could be strongly affected by high temperature conditions. We observed the changes in the growth of barley under higher than ambient air-temperature conditions using a temperature gradient field...

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  • In this study, we aim to test optical methods to rapidly evaluate the disease conditions. First, to prepare a baseline data for identifying the disease incidence, we conventionally classified the level of damage caused by the disease using the unaided eye, as 0, 1, 2, or 3, as is typical, progressing from initial damage to fatal levels, respectively (Fig.
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참고문헌 (23)

  1. Barry P Young AJ Britton G 1990 Photodestruction of pigments in higher plants by herbicide action: I. The effect of DCMU (diuron) on isolated chloroplasts J Exp Bot 41 123 129 10.1093/jxb/41.2.123 

  2. Franke J Menz G 2007 Multi-temporal wheat disease detection by multi-spectral remote sensing Precis Agric 8 161 172 10.1007/s11119-007-9036-y 

  3. Filella I Porcar-Castell A Munné-Bosch S Bäck J Garbulsky MF Peñuelas J 2009 PRI assessment of long-term changes in carotenoids/chlorophyll ratio and short-term changes in de-epoxidation state of the xanthophyll cycle Int J Remote Sens 30 4443 4455 10.1080/01431160802575661 

  4. Gamon JA Berry JA 2012 Facultative and constitutive pigment effects on the Photochemical Reflectance Index (PRI) in sun and shade conifer needles Isr J Plant Sci 60 85 95 10.1560/IJPS.60.1-2.85 

  5. Gamon JA Field CB Fredeen AL Thayer S 2001 Assessing photosynthetic downregulation in sunflower stands with an optically-based model Photosynth Res 67 113 125 10.1023/A:1010677605091 16228321 

  6. Gamon JA Peñuelas J Field CB 1992 A narrow-waveband spectral index that tracks diurnal changes in photosynthetic efficiency Remote Sens Environ 41 35 44 10.1016/0034-4257(92)90059-S 

  7. Hartmann DL Klein Tank AMG Rusticucci M Alexander LV Brönnimann S Charabi Y Dentener FJ Dlugokencky EJ Easterling DR Kaplan A Soden BJ Thorne PW Wild M Zhai PM 2013 Observations: atmosphere and surface Climate change 2013: the physical science basis Stocker T Qin D Plattner G-K Tignor M Allen SK Boschung J Nauels A Xia Y Bex V Midgley PM 159 254 Contribution of Working Group I to the Fifth Assessment Report of the Intergovernmental Panel on Climate Change Cambridge University Press Cambridge, UK, NY, USA 

  8. Horie T Nakagawa H Nakano J Hamotani K Kim HY 1995 Temperature gradient chambers for research on global environment change. III. A system designed for rice in Kyoto, Japan Plant Cell Environ 18 1064 1069 10.1111/j.1365-3040.1995.tb00618.x 

  9. Iwanov L 1928 Zur Methodik der Transpirations-bestimmungam Standort Ber Deutsch Bot Ges 46 306 310 

  10. Jackson RD 1986 Remote sensing of biotic and abiotic plant stress Annu Rev Phytopathol 24 265 287 10.1146/annurev.py.24.090186.001405 

  11. Jones HG 1999 Use of thermography for quantitative studies of spatial and temporal variation of stomatal conductance over leaf surfaces Plant Cell Environ 22 1043 1055 10.1046/j.1365-3040.1999.00468.x 

  12. Lobell DB Schlenker W Costa-Roberts J 2011 Climate trends and global crop production since 1980 Science 333 616 620 10.1126/science.1204531 21551030 

  13. Meroni M Rossini M Picchi V Panigada C Cogliati S Nali C Colombo R 2008 Assessing steady-state fluorescence and PRI from hyperspectral proximal sensing as early indicators of plant stress: the case of ozone exposure Sensors (Basel) 8 1740 1754 10.3390/s8031740 27879790 

  14. Mohammed GH Binder WD Gillies SL 1995 Chlorophyll fluorescence: a review of its practical forestry applications and instrumentation Scand J Forest Res 10 383 410 10.1080/02827589509382904 

  15. Öquist G Wass R 1988 A portable, microprocessor operated instrument for measuring chlorophyll fluorescence kinetics in stress physiology Physiol Plant 73 211 217 10.1111/j.1399-3054.1988.tb00588.x 

  16. Peternel R Culig J Hrga I 2004 Atmospheric concentrations of Cladosporium spp. and Alternaria spp. spores in Zagreb (Croatia) and effects of some meteorological factors Ann Agric Environ Med 11 303 307 15627341 

  17. Pounds JA Bustamante MR Coloma LA Consuegra JA Fogden MP Foster PN Marca EL Masters KL Merino-Viteri A Puschendorf R Ron SR Sánchez-Azofeifa GA Still CJ Young BE 2006 Wide-spread amphibian extinctions from epidemic disease driven by global warming Nature 439 161 167 10.1038/nature04246 16407945 

  18. Smith RCG Heritage AD Stapper M Barrs HD 1986 Effect of stripe rust (Puccinia striiformis West.) and irrigation on the yield and foliage temperature of wheat Field Crops Res 14 39 51 10.1016/0378-4290(86)90045-6 

  19. Stylinski CD Gamon JA Oechel WC 2002 Seasonal patterns of reflectance indices, carotenoid pigments and photosynthesis of evergreen chaparral species Oecologia 131 366 374 10.1007/s00442-002-0905-9 28547708 

  20. Uddling J Gelang-Alfredsson J Piikki K Pleijel H 2007 Evaluating the relationship between leaf chlorophyll concentration and SPAD-502 chlorophyll meter readings Photosynth Res 91 37 46 10.1007/s11120-006-9077-5 17342446 

  21. Vysotskaya LB Kudoyarova GR Veselov S Jones HG 2003 Unusual stomatal behaviour on partial root excision in wheat seedlings Plant Cell Environ 27 69 77 10.1046/j.0016-8025.2003.01126.x 

  22. Winkel T Méthy M Thénot F 2002 Radiation use efficiency, chlorophyll fluorescence, and reflectance indices associated with ontogenic changes in water-limited Chenopodium quinoa leaves Photosynthetica 40 227 232 10.1023/A:1021345724248 

  23. Wolfert S Ge L Verdouw C Bogaardt MJ 2017 Big data in smart farming-a review Agric Syst 153 69 80 10.1016/j.agsy.2017.01.023 

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