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Wild Relatives of the Wheat Grain Proteome
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  • Wild Relatives of the Wheat Grain Proteome
  • Wild Relatives of the Wheat Grain Proteome
저자명
Kim. Ki-Hyun,Kamal. Abu Hena Mostafa,Shin. Kwang-Hyun,Choi. Jong-Soon,Park. Chul-Soo,Heo. Hwa-Young,Woo. Sun-Hee
간행물명
Journal of plant biology
권/호정보
2010년|53권 5호|pp.344-357 (14 pages)
발행정보
한국식물학회
파일정보
정기간행물|ENG|
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
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기타언어초록

We applied proteomics analysis to generate a map of the wild relatives of wheat grain proteins. These differentially expressed proteins are potentially involved in metabolism, stress responses, and other biological activities. Using two-dimensional electrophoresis, we detected 119, 134, and 193 reproducible spots on gels loaded with protein samples extracted from the A, B, and D genomes, respectively, of the mature grain. In all, 89, 53, and 54 distinct proteins, respectively, were found among these genomes through MALDI-TOF mass spectrometry. Of these, 26% (n=52) proteins were considered distinct. They included 18.89% (n=17) in the A, 28.30% (n=15) in the B, and 37.04% (n=20) in the D genome, all functioning in disease and defense roles. For example, the ABA-inducible protein PHVA1 can be induced by drought, cold, heat, and salinity, while the basic endochitinase confers protection against chitin-containing fungal pathogens. The diverse functional categories found here suggest different biological processes, such as disease/defense, energy metabolism, protein synthesis and storage, cellular organization, signal transduction, transcription, and the facilitation of transport. Our findings demonstrate that these functional proteins have important roles in stress tolerance and the maintenance of quality in mature grains. The interacting effects of genetics and environment on differential protein production may be partially mediated by a regulatory mechanism in those grains.