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가뭄저항성 GM벼(Agb0103)와 non-GM 일미벼 간 표면미생물의 변화 및 병 발생 양상 비교

Comparing Disease Incidence and Phyllosphere Microbial Community between Drought Resistance Transgenic Rice (Agb0103) and Non-Transgenic Rice

The Korean Journal of Breeding Science 2016;48(2):111-118.
Published online: May 31, 2016

1 경북대학교 농업생명과학대학,

1 College of Agriculture and Life Sciences, Kyungpook National University, Daegu 41566, Korea

2 국립원예특작과학원

2 National Institute of Horticultural and Herbal Science, Rural Development Administration, Wanju-gun 55365, Korea

*Corresponding author (heeyoung@knu.ac.kr, +82-55-950-5760, +82-05-950-6758)
• Received: October 20, 2015   • Accepted: March 11, 2016

© The Korean Society of Breeding Science

This is an Open-Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/3.0) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.

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  • Nutritional Assessment for Grain and Whole Rice Plant of Drought-tolerant GM Rice (Agb0103)
    Young-Tack Lee, Yong-Hwa Cho
    Journal of the Korean Society of International Agricultue.2018; 30(3): 233.     CrossRef

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Comparing Disease Incidence and Phyllosphere Microbial Community between Drought Resistance Transgenic Rice (Agb0103) and Non-Transgenic Rice
Korean. J. Breed. Sci.. 2016;48(2):111-118.   Published online June 30, 2016
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Comparing Disease Incidence and Phyllosphere Microbial Community between Drought Resistance Transgenic Rice (Agb0103) and Non-Transgenic Rice
Korean. J. Breed. Sci.. 2016;48(2):111-118.   Published online June 30, 2016
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Comparing Disease Incidence and Phyllosphere Microbial Community between Drought Resistance Transgenic Rice (Agb0103) and Non-Transgenic Rice
Image Image Image Image Image
Fig. 1. Major disease incidence rate between GM and non-GM in experimental field during 2011-2014. A: Degree of severity caused by Sheath blight, B: Infected leaf area caused by Brown spot. C: Infected leaf area caused by Leaf blast, D: Rate of diseased panicles caused by False smut. Red square; GM rice (Agb0103), Green square; non-GM rice (Ilmi). Each error bar indicates the standard deviation.
Fig. 2. Monthly variation of culturable phyllosphere living fungi and bacteria during 2011-2012. A: 2011, fungi B: 2011, bacteria C: 2012, fungi D: 2012, bacteria.
Fig. 3. UPGMA cluster analysis based on PCR-DGGE band pattern results from GM and Non-GM rice. A: Analysis results of fungi in 2012, B: Analysis result of bacteria in 2012.
Fig. 4. Isolated Cochliobolus miyabianus from tolerance resistance GM rice and non GM Rice Ilmi on PDA during 2013-2014. A: Isolated from GM Rice in 2013, B: Isolated from non-GM Rice in 2013, D: Isolated from GM Rice in 2014, E: Isolated from non-GM Rice in 2014, C and F: Conidia of C. miyabianus. Scale bar: 50μm.
Fig. 5. Isolated Rhizoctonia solani from tolerance resistance GM rice and non GM Rice Ilmi on PDA during 2013-2014. A: Isolated from GM Rice in 2013, B: Isolated from non GM Rice in 2013, C: Isolated from non GM Rice in 2014, D: Isolated from non GM Rice in 2014.
Comparing Disease Incidence and Phyllosphere Microbial Community between Drought Resistance Transgenic Rice (Agb0103) and Non-Transgenic Rice