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PXD078023-1

PXD078023 is an original dataset announced via ProteomeXchange.

Dataset Summary
TitleIntegrating physiological and proteomics signatures for understanding drought, salinity and alkalinity stress tolerance mechansisms in lentil
DescriptionAbiotic stresses—such as drought, salinity, and alkalinity severely limit global lentil production by impairing physiological processes including osmolytes accumulation, chlorophyll synthesis, H2O2 production and antioxidant activities. However, no proteomic signature studies have dissected the molecular mechanisms underlying tolerance to drought, salinity and alkalinity in lentil. In this study, proteomic profiling revealed differentially abundant proteins (DAPs) distinguishing tolerant from sensitive lines under multiple abiotic stress conditions including drought, salinity and alkalinity. Furthermore, the aforementioned physiological traits were phenotyped to compare the responses of tolerant versus sensitive genotypes toward these stresses. By integrating proteomics and physiological analyses, this study provides new insights into the physiological and molecular regulatory mechanisms of lentil in response to multiple abiotic stresses.Physiological analysis revealed genotypic differences in osmolyte regulation, chlorophyll content, H2O2 production and antioxidant activities. Ultra performance liquid chromatography with tandem mass spectrometery (UPLC-MS/MS) analysis identified 707 differentially abundant proteins (DAPs) between tolerant v/s sensitive genotypes across stresses, with 283, 213 and 211 DAPs under drought, salinity and alkalinity, respectively. Ninety-five DAPs involved in protein biogenesis, cellular transport, photosynthesis, RNA regulation, defense and detoxification were common across stresses. Proteomic findings were validated by quantitative real-time polymerase chain reaction (qRT-PCR) of five DAPs at 1, 2 and 3 days post-stress. Functional annotation revealed enrichment in photosynthesis/energy metabolism, transcription/translational, protein folding/degradation, and antioxidative defense. Integrative transcriptomic and proteomic analysis highlighted superoxide dismutase and monodehydroascorbate reductase as central components of antioxidative defense. This represents the first proteomics study of lentil seedling response toward drought, salinity and alkalinity stresses.The differential abundance of proteins involved in varied regulatory pathways suggests a wide, yet complex network of proteins mediating lentil’s metabolic adaptation to drought, salinity and alkalinity stresses. Proteins identified in this study will provide new insight to lentil’s interconnected regulatory mechanisms against abiotic stresses.
HostingRepositoryPRIDE
AnnounceDate2026-06-15
AnnouncementXMLSubmission_2026-06-15_04:20:14.648.xml
DigitalObjectIdentifier
ReviewLevelPeer-reviewed dataset
DatasetOriginOriginal dataset
RepositorySupportUnsupported dataset by repository
PrimarySubmitterDharmendra Singh
SpeciesList scientific name: Lens culinaris; NCBI TaxID: NEWT:3864;
ModificationListNo PTMs are included in the dataset
InstrumentQ Exactive HF
Dataset History
RevisionDatetimeStatusChangeLog Entry
02026-05-05 12:40:23ID requested
12026-06-15 04:20:15announced
Publication List
Dataset with its publication pending
Keyword List
submitter keyword: proteomics,Abiotic stress, differentially abundant proteins, lentil, regulatory mechanisms
Contact List
SINGH DHARMENDRA
contact affiliationLab no. 54, Division of Genetics, ICAR-Indian Agricultural Research Institute
contact emaildharmendrapbg@rediffmail.com
lab head
Dharmendra Singh
contact affiliationPrincipal Scientist (Plant Breeding & Genetics), Division of Genetics, Indian Agriculture Research Institute (IARI), New Delhi-110012
contact emaildharmendrapbg@rediffmail.com
dataset submitter
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