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Proteome analysis of alfalfa roots in response to water deficit stress 被引量:6

Proteome analysis of alfalfa roots in response to water deficit stress
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摘要 To evaluate the response of alfalfa to water deficit (WD) stress, WD-induced candidates were investigated through a proteomic approach. Alfalfa seedlings were exposed to WD stress for 12 and 15 days respectively, followed by 3 days re-watering. Water deficit increased H202 content, lipid peroxidation, DPPH (1,1-diphenyl-2-picrylhydrazyl)-radical scavenging activity, and the free proline level in alfalfa roots. Root proteins were extracted and separated by two-dimentional polyacrylamide gel electrophoresis (2-DE). A total of 49 WD-responsive proteins were identified in alfalfa roots; 25 proteins were reproducibly found to be up-regulated and 24 were down-regulated. Two proteins, namely cytosolic ascorbate peroxidase (APx2) and putative F-box protein were newly detected on 2-DE maps of WD-treated plants. We identified several proteins including agamous-like 65, albumin b-32, inward rectifying potassium channel, and auxin-independent growth promoter. The identified proteins are involved in a variety of cellular functions including calcium signaling, abacisic acid (ABA) biosynthesis, reactive oxygen species (ROS) regulation, transcription/translation, antioxidant/detoxification/stress defense, energy metabolism, signal transduction, and storage. These results indicate the potential candidates were responsible for adaptive response in alfalfa roots. To evaluate the response of alfalfa to water deficit (WD) stress, WD-induced candidates were investigated through a proteomic approach. Alfalfa seedlings were exposed to WD stress for 12 and 15 days respectively, followed by 3 days re-watering. Water deficit increased H202 content, lipid peroxidation, DPPH (1,1-diphenyl-2-picrylhydrazyl)-radical scavenging activity, and the free proline level in alfalfa roots. Root proteins were extracted and separated by two-dimentional polyacrylamide gel electrophoresis (2-DE). A total of 49 WD-responsive proteins were identified in alfalfa roots; 25 proteins were reproducibly found to be up-regulated and 24 were down-regulated. Two proteins, namely cytosolic ascorbate peroxidase (APx2) and putative F-box protein were newly detected on 2-DE maps of WD-treated plants. We identified several proteins including agamous-like 65, albumin b-32, inward rectifying potassium channel, and auxin-independent growth promoter. The identified proteins are involved in a variety of cellular functions including calcium signaling, abacisic acid (ABA) biosynthesis, reactive oxygen species (ROS) regulation, transcription/translation, antioxidant/detoxification/stress defense, energy metabolism, signal transduction, and storage. These results indicate the potential candidates were responsible for adaptive response in alfalfa roots.
出处 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2016年第6期1275-1285,共11页 农业科学学报(英文版)
基金 supported by the National Research Foundation of Korea (NRF) Grant (NRF-2011-616-F00013) supported by post-doctoral grant supported by the scholarship from BK21Plus program, Ministry of Education, Republic of Korea
关键词 ALFALFA PROTEOME ROOT water deficit stress alfalfa, proteome, root, water deficit stress
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  • 1Alam I, Sharmin S A, Kim K H, Kim Y G, Lee J, Lee B H. 2013. An improved plant leaf protein extraction methodfor high resolution two-dimensional polyacrylamide gel electrophoresis and comparative proteomics. Biotechnic & Histochemistry, 88, 61-75.
  • 2Alam I, Sharmin S A, Kim K H, Yang J, Choi M, Lee B H. 2010. Proteome analysis of soybean roots subjected to short-term drought stress. Plant and Soil, 333,491-505.
  • 3Ali A, Ali Z, Quraishi U M, Kazi A G, Malik R N, Sher H, M ujeeb-Kazi A. 2014. Integrating Physiological and Genetic Approaches for Improving Drought Tolerance in Crops. Emerging Technologies and Management of Crop Stress Tolerance Academic Press, USA. pp. 320-345.
  • 4Babady N E, Pang Y P, Elpeleg O, Isaya G. 2007. Cryptic proteolytic activity of dihydrolipoamide dehydrogenase. Proceedings of the National Academy of Sciences of the United States of America, 104. 6158-6163.
  • 5Bevan M, Bancroft I, Bent E, Love K, Goodman H, Dean C, Bergkamp R, Dirkse W, Van Staveren M, Stiekerna W, Drost L, Ridley P, Hudson S A, Patel K, Murphy G, Piffanelli P, Wedier H, Wedler E, Wambutt R, Weitzenegger T, et al. 1998. Analysis of l.gMb of contiguous sequence from chromosome 4 of Arabidopsis thaliana. Nature, 391, 485-488.
  • 6Cramer G, Van Sluyter S, Hopper D, Pascovici D, Keighley T, Haynes P. 2013. Proteomic analysis indicates massive changes in metabolism prior to the inhibition of growth and photosynthesis of grapevine (Vitis vinifera L.) in response to water deficit. BMC Plant Biology, 13, 1-22.
  • 7Dalai A, Kumar A, Yadav D, Gudla T, Viehhauser A, Dietz K J, Kirti P B. 2014. Alleviation of methyl viologen-mediated oxidative stress by Brassicajuncea annexin-3 in transgenic Arabidopsis. Plant Science, 219-220, 9-18.
  • 8Deeba F, Pandey A K, Ranjan S, Mishra A, Singh R, Sharma Y K, Shirke P A, Pandey V. 2012. Physiological and proteomic responses of cotton (Gossypium herbaceum L.) to drought stress. Plant Physiology and Biochemistry, 53, 6-18.
  • 9Espartero J, Pintor-Toro J, Pardo J. 1994. Differential accumulation of S-adenosylmethionine synthetase transcripts in response to salt stress. Plant Molecular Biology, 25, 217-227.
  • 10Farooq M, Wahid A, Kobayashi N, Fujita D, Basra S M A. 2009. Plant drought stress: Effects, mechanisms and management. Agronomy for Sustainable Development, 29. 185-212.

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