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Updated: Aug 12, 2026

Development of a Cabbage Protoplast System for Studying Hypoxia Tolerance in Brassica
Published on: September 20, 2024
Integrated transcriptomic and hormonal analysis suggests a trade-off between salt/drought tolerance and
Mei Zheng1,2,3,4, Peirong Li1,2,3,4, Xiaoyun Xin1,2,3,4
1State Key Laboratory of Vegetable Biobreeding, Beijing Vegetable Research Center (BVRC), Beijing Academy of Agriculture and Forestry Science (BAAFS), Beijing, China.
Introduction:
Brassica rapa plants often face combined or sequential abiotic stresses, but the potential negative association between salt/drought tolerance and thermotolerance remains poorly understood. Most studies have focused on individual stress responses, leaving the regulatory networks that may constrain broad-spectrum resilience largely unexplored.
Methods:
Here, we propose a hormone- and anthocyanin-centered framework for understanding this apparent negative association in B. rapa, based on integrated physiological, transcriptomic, hormonal and metabolic analyses across diverse inbred lines.
Results:
Physiological characterization of 11 lines revealed an apparent negative association (salt vs. heat: r = -0.555; drought vs. heat: r = -0.339). Time-resolved transcriptomics uncovered stress-specific temporal patterns: a triphasic response under salt stress, a 'rapid response-readjustment-reactivation' pattern under drought, and a biphasic mechanism under heat stress. Hormonal profiling identified ABA and ethylene biosynthesis-related metabolites as correlates of osmotic adaptation. The chalcone synthase gene BraA10g024990.3C (CHS) showed genotype- and stress-specific expression and correlated with anthocyanin accumulation. Exogenous hormone treatments indicated that ABA and ethylene induce, while GA represses, CHS-mediated anthocyanin production.
Discussion:
Despite the correlative nature of these data, this study provides a candidate regulatory axis and suggests that hormone-directed anthocyanin metabolism may contribute to the negative association between osmotic tolerance and thermotolerance in B. rapa, offering targets for breeding multi-stress-resilient crops.
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Transcription
Transcription is the process of synthesizing RNA from a DNA sequence by RNA polymerase. It is the first step in producing a protein from a gene sequence. Additionally, many other proteins and regulatory sequences are involved in the proper synthesis of messenger RNA (mRNA). Regulation of transcription is responsible for the differentiation of all the different types of cells and often for the proper cellular response to environmental signals.
Transcription Can Produce Different Kinds...
Regulation of Transpiration by Stomata
