Proteomics

Dataset Information

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Heat stress induced proteomes in tomato pollen mother cells and microspores


ABSTRACT: During the reproductive stage, tomatoes require nighttime temperatures below 21°C and daytime temperatures below 32°C for healthy flower development and fruit set. Prolonged exposure to temperatures above the optimal range can cause abnormalities in pollen development, leading to reduced fertility or sterility. This project aims to identify alterations in proteome expression and elucidate heat tolerance mechanisms affecting pollen development under elevated temperature conditions. Two tomato varieties—the heat-tolerant ‘Black Vernissage’ and the heat-sensitive ‘Micro-Tom’—were exposed to three temperature treatments: 26 °C (control), 32 °C, and 37 °C (heat-treated). Flower buds containing meiotic pollen mother cells prior to the tetrad stage and free microspores were harvested, and single cell type samples were collected using laser microdissection. Tandem mass tag (TMT) proteomics was employed to identify differential proteomic responses in pollen mother cells and free microspores between stress-treated and non-treated plants.

INSTRUMENT(S): LTQ Orbitrap

ORGANISM(S): Solanum Lycopersicum

TISSUE(S): Plant Cell, Flower Bud

SUBMITTER: Ted Thannhauser  

LAB HEAD: Theodore Thannhauser

PROVIDER: PXD060801 | Pride | 2025-05-07

REPOSITORIES: Pride

Dataset's files

Source:
Action DRS
13July2022_SP_TomatoE1_F1.raw Raw
13July2022_SP_TomatoE1_F10.raw Raw
13July2022_SP_TomatoE1_F11.raw Raw
13July2022_SP_TomatoE1_F12.raw Raw
13July2022_SP_TomatoE1_F2.raw Raw
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Publications

Cell-Type-Specific Heat-Induced Changes in the Proteomes of Pollen Mother Cells and Microspores Provide New Insights into Tomato Pollen Production Under Elevated Temperature.

Thapa Priya P   Guo Jun J   Pradhan Kajol K   Thapa Dibya D   Madhavarapu Sudhakar S   Zou Jing J   Potts Jesse J   Li Hui H   O'Hair Joshua J   Wang Chen C   Zhou Suping S   Yang Yong Y   Fish Tara T   Thannhauser Theodore W TW  

Proteomes 20250325 2


<h4>Background</h4>Tomatoes are self-pollinating plants, and successful fruit set depends on the production of functional pollen within the same flower. Our previous studies have shown that the 'Black Vernissage' tomato variety exhibits greater resilience to heat stress in terms of pollen productivity compared to the 'Micro-Tom' variety. Pollen productivity is determined by meiotic activity during microsporogenesis and the development of free microspores during gametogenesis. This study focused  ...[more]

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