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AtRD22 and AtUSPL1, members of the plant-specific BURP domain family involved in Arabidopsis thaliana drought tolerance. | LitMetric

AI Article Synopsis

  • - Crop plants face various environmental stresses that hinder growth and reduce yield, prompting a stress response that affects about 4% of their genes.
  • - The study focused on two genes, AtRD22 and AtUSPL1, from the Arabidopsis thaliana BURP gene family, which are activated during moisture stress mediated by abscisic acid (ABA).
  • - Loss of function of either gene improved the plants' tolerance to drought by enhancing their defense response, revealing AtUSPL1's additional role in stress tolerance beyond its known function in seed development.

Article Abstract

Crop plants are regularly challenged by a range of environmental stresses which typically retard their growth and ultimately compromise economic yield. The stress response involves the reprogramming of approximately 4% of the transcriptome. Here, the behavior of AtRD22 and AtUSPL1, both members of the Arabidopsis thaliana BURP (BNM2, USP, RD22 and polygalacturonase isozyme) domain-containing gene family, has been characterized. Both genes are up-regulated as part of the abscisic acid (ABA) mediated moisture stress response. While AtRD22 transcript was largely restricted to the leaf, that of AtUSPL1 was more prevalent in the root. As the loss of function of either gene increased the plant's moisture stress tolerance, the implication was that their products act to suppress the drought stress response. In addition to the known involvement of AtUSPL1 in seed development, a further role in stress tolerance was demonstrated. Based on transcriptomic data and phenotype we concluded that the enhanced moisture stress tolerance of the two loss-of-function mutants is a consequence of an enhanced basal defense response.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4198191PMC
http://journals.plos.org/plosone/article?id=10.1371/journal.pone.0110065PLOS

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