Identification of phosphorus starvation inducible SnRK genes in tomato (Solanum lycopersicum L.)

被引:0
作者
Ashima Khurana
Abhishek Akash
机构
[1] University of Delhi,Botany Department, Zakir Husain Delhi College
[2] University of Hyderabad,Department of Plant Sciences
来源
Journal of Plant Biochemistry and Biotechnology | 2021年 / 30卷
关键词
Phosphate starvation; Protein–protein interaction; SnRK gene family; Sucrose; Tomato;
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摘要
The sucrose non-fermenting 1-related protein kinases (SnRKs) mediate plant signalling pathways in response to different cues by phosphorylating target proteins. While full complement of these genes has been reported in several families, such information remains obscure in Solanaceae to date. Through a genome-wide identification approach, we report 40 SnRK members in the tomato genome. Multiple alignments and phylogenetic analysis grouped the identified genes in SnRK1, SnRK2, and SnRK3 subfamilies. SnRK1 subfamily comprises only two members, whereas SnRK3 being the largest category, is constituted by 30 members in tomato. Ten members of the SnRK3 subfamily are present in four tandemly duplicated chromosomal blocks. Transcript profiling of these genes during tomato development identified SlSnRK2.9 and SlSnRK3.3 with root-specific and SlSnRK2.7b with ripening-preferential mRNA abundance. The mRNA profiling of these genes by RNA-sequencing and qPCR revealed that SlSnRK3.10a, SlSnRK3.15a, and SlSnRK3.26 are activated at varying levels under phosphate (Pi) starvation. In-silico analysis anticipated a common set of proteins interacts with the selected phosphorus starvation inducible (PSI) SlSnRK genes. Overall, the present study identifies a set of PSI SnRKs in tomato and provides a comprehensive framework for their functional characterization in Solanaceae in the future.
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页码:987 / 998
页数:11
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共 85 条
[1]  
Akash AP(2021)Identification, evolutionary profiling, and expression analysis of F-box superfamily genes under phosphate deficiency in tomato Plant Physiol Biochem 162 349-362
[2]  
Parida M(2007)Different phosphorylation mechanisms are involved in the activation of sucrose non-fermenting 1 related protein kinases 2 by osmotic stresses and abscisic acid Plant Mol Biol 63 491-503
[3]  
Boudsocq MJ(2020)An abscisic acid-responsive protein interaction network for sucrose non-fermenting related kinase1 in abiotic stress response Commun Biol 3 1-5
[4]  
Droillard H(2017)SCFAtPP2-B11modulates ABA signaling by facilitating SnRK2.3 degradation in Arabidopsis thaliana PLoS Genet 13 e1006947-2132
[5]  
Barbier-Brygoo C(2008)The SNF1-type serine-threonine protein kinase SAPK4 regulates stress-responsive gene expression in rice BMC Plant Biol 8 49-748
[6]  
Laurière CS(2009)Three SnRK2 protein kinases are the main positive regulators of abscisic acid signaling in response to water stress in arabidopsis Plant Cell 50 2123-109
[7]  
Carianopol AL(1998)SNF1-related protein kinases: Global regulators of carbon metabolism in plants? Plant Mol Biol 37 735-680
[8]  
Chan S(2008)Sucrose transport in the phloem: Integrating root responses to phosphorus starvation J Exp Bot 59 93-4697
[9]  
Dong C(2003)The Arabidopsis CDPK-SnRK superfamily of protein kinases Plant Physiol 132 666-918
[10]  
Cheng Z(2015)SCF E3 ligase PP2-B11 plays a positive role in response to salt stress in Arabidopsis J Exp Bot 66 4683-1177