Author:
Liu Wei,Wang Yubin,Zhang Yanwei,Li Wei,Wang Caijie,Xu Ran,Dai Haiying,Zhang Lifeng
Abstract
Abstract
Background
As a key regulatory enzyme in the glycolysis pathway, pyruvate kinase (PK) plays crucial roles in multiple physiological processes during plant growth and is also involved in the abiotic stress response. However, little information is known about PKs in soybean.
Results
In this study, we identified 27 PK family genes against the genome of soybean cultivar Zhonghuang13. They were classified into 2 subfamilies including PKc and PKp. 22 segmental duplicated gene pairs and 1 tandem duplicated gene pair were identified and all of them experienced a strong purifying selective pressure during evolution. Furthermore, the abiotic stresses (especially salt stress) and hormone responsive cis-elements were present in the promoters of GmPK genes, suggesting their potential roles in abiotic stress tolerance. By performing the qRT-PCR, 6 GmPK genes that continuously respond to both NaCl and ABA were identified. Subsequently, GmPK21, which represented the most significant change under NaCl treatment was chosen for further study. Its encoded protein GmPK21 was localized in the cytoplasm and plasma membrane. The transgenic Arabidopsis overexpressing GmPK21 exhibited weakened salinity tolerance.
Conclusions
This study provides genomic information of soybean PK genes and a molecular basis for mining salt tolerance function of PKs in the future.
Funder
National Natural Science Foundation of China
Agricultural Variety Improvement Project of Shandong Province
China Agriculture Research System
Publisher
Springer Science and Business Media LLC
Cited by
2 articles.
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