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- W2939542330 endingPage "497" @default.
- W2939542330 startingPage "479" @default.
- W2939542330 abstract "Plants are exposed to a number of adverse environmental stress conditions among which salt stress is of great concern. Salt stress reduces the crop productivity by inducing changes in physiological, molecular and biochemical processes operating in plants. To sustain the agricultural production it is, therefore, necessary to develop salt tolerant crops for which there is a need to understand the signaling pathways that get stimulated whenever plants are exposed to any kind of stress. The signaling process usually involves direct contact between different signaling components to transfer the signal from receptor to transcription factor (TF) or any other intracellular effector protein. Signal propagation involves protein changes at three different levels: regulated protein posttranslational modifications (PTMs), protein–protein interactions, and signal-induced protein expression change. A primary task of signaling research is, therefore, the measurement of PTMs, protein interactions, and proteome dynamics. Hence, the identification of protein complexes and posttranslational modifications of signaling proteins is essential to understand signal transduction cascades. Large-scale “precision proteomics” based on mass spectrometry now enables the genome-wide characterization of signaling events at the levels of posttranslational modifications, protein–protein interactions, and changes in protein expression. In this chapter, we will discuss advances in proteomics applications used to understand complex salt stress signaling processes in plants." @default.
- W2939542330 created "2019-04-25" @default.
- W2939542330 creator A5019350038 @default.
- W2939542330 creator A5076921459 @default.
- W2939542330 creator A5085301411 @default.
- W2939542330 date "2019-01-01" @default.
- W2939542330 modified "2023-10-18" @default.
- W2939542330 title "Proteomics Insights Into Salt Stress Signaling in Plants" @default.
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