Induced freezing tolerance and free amino acids perturbation of spinach by exogenous prolineInduced freezing tolerance and free amino acids perturbation of spinach by exogenous proline
- Other Titles
- Induced freezing tolerance and free amino acids perturbation of spinach by exogenous proline
- Authors
- Shin, H.; Oh, S.; Kim, D.; Hong, J.K.; Yun, J.G.; Lee, S.W.; Son, K.-H.
- Issue Date
- Dec-2018
- Publisher
- 한국식물생명공학회
- Keywords
- Arginine; Aspartate; Freezing stress; Glutamate; Spinacia oleraceae; Valine
- Citation
- Journal of Plant Biotechnology, v.45, no.4, pp 357 - 363
- Pages
- 7
- Indexed
- SCOPUS
KCI
- Journal Title
- Journal of Plant Biotechnology
- Volume
- 45
- Number
- 4
- Start Page
- 357
- End Page
- 363
- URI
- https://scholarworks.gnu.ac.kr/handle/sw.gnu/13001
- DOI
- 10.5010/JPB.2018.45.4.357
- ISSN
- 1229-2818
2384-1397
- Abstract
- The objective of this study was to investigate whether exogenous proline (Pro) could confer freezing tolerance of spinach and determine fluctuations of free amino acids in spinach leaf tissues under freeze-induced stress. Treatment with Pro (10 mM) resulted in more accumulation of Pro (~2.6-fold) in Pro-treated spinaches compared to untreated ones. These Pro-pretreated spinaches were more freezing-tolerant, showing more turgid leaves and petioles compared to untreated controls. However, when spinaches pre-treated with or without Pro were subjected to freezing, there was no significant difference in overall amino acid contents, emphasizing the role of Pro as an osmo-protectant. Freezing stress prompted intensification of total amino acid contents irrespective of pretreatment with Pro. Asp, Glu, Ala, and Val were the most abundant free amino acids due to increased protein degradation and nitrogen mobilization for plant survival under freezing stress. Arg, a precursor for the synthesis of polyamines in plants, was profoundly enhanced under freezing stress. This implies that Arg plays an important role in modulating freezing tolerance. Gly, Leu, and Ile were maintained at relatively low levels in all treatments. However, Ser, Tyr, and Lys as primary constituents of dehydrins were accumulated under freezing stress, suggesting that they might play a role in increasing cryoprotective activity under freezing stress. ? Korean Society for Plant Biotechnology.
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Collections - 농업생명과학대학 > 원예과학부 > Journal Articles

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