Logo Lanfrica
  • Home
  • Atlas
  • Insights
  • Docs
  • Sign in

© 2026 Lanfrica. All rights reserved. All copyrights of the resources shown on the Lanfrica website belong to the original copyright holders, unless explicitly stated otherwise.

A Computational Systems Biology Study for Understanding Salt Tolerance Mechanism in Rice

Domain:

agriculture

Record type:

paper
Creator:
JueLiaYanJin
Host:avatar

Salinity is one of the most common abiotic stresses in agriculture production. Salt tolerance of rice (Oryza sativa) is an important trait controlled by various genes. The mechanism of rice salt tolerance, currently with limited understanding, is of great interest to molecular breeding in improving grain yield. In this study, a gene regulatory network of rice salt tolerance is constructed using a systems biology approach with a number of novel computational methods. We developed an improved volcano plot method in conjunction with a new machine-learning method for gene selection based on gene expression data and applied the method to choose genes related to salt tolerance in rice. The results were then assessed by quantitative trait loci (QTL), co-expression and regulatory binding motif analysis. The selected genes were constructed into a number of network modules based on predicted protein interactions including modules of phosphorylation activity, ubiquity activity, and several proteinase activities such as peroxidase, aspartic proteinase, glucosyltransferase, and flavonol synthase. All of these discovered modules are related to the salt tolerance mechanism of signal transduction, ion pump, abscisic acid mediation, reactive oxygen species scavenging and ion sequestration. We also predicted the three-dimensional structures of some crucial proteins related to the salt tolerance QTL for understanding the roles of these proteins in the network. Our computational study sheds some new light on the mechanism of salt tolerance and provides a systems biology pipeline for studying plant traits in general.

Visit

figshare.com

Tags

MedicineChemistryBiological SciencesInformation and Computing SciencescropscerealsriceBiochemistryproteinsProtein interactions+16

Licenses

CC BY 4.0

Similar

Submergence tolerance in Rice- SUB1A independent mechanism in African rice and allotetraploids speciesComputational-Biology-Aachen/HackathonEmbu2023DifFUZZY: a novel clustering algorithm for systems biologyA Tunisian wild grape leads to metabolic fingerprints of salt toleranceGenomic, transcriptomic, and proteomic approaches towards understanding the molecular mechanisms of salt tolerance in Frankia strains isolated from Casuarina treesDoes Rice Quality Matter? Understanding Consumer Preferences for Rice in Nigeria

Submergence tolerance in Rice- SUB1A independent mechanism in African rice and allotetraploids species

Computational-Biology-Aachen/HackathonEmbu2023

Material for the 2023 Hackathon Workshop on Computational Modeling to Unleash the Computational Po

DifFUZZY: a novel clustering algorithm for systems biology

Current studies of the highly complex pathobiology and molecular signatures of human disease require

A Tunisian wild grape leads to metabolic fingerprints of salt tolerance

Abstract Soil salinity is progressively impacting agriculture, including viticultur

Genomic, transcriptomic, and proteomic approaches towards understanding the molecular mechanisms of salt tolerance in Frankia strains isolated from Casuarina trees

International audience Background: Soil salinization is a worldwide problem that is i

Does Rice Quality Matter? Understanding Consumer Preferences for Rice in Nigeria

Abstract Rice is a staple crop in Nigeria. Even with a push to increase domestic production, little