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The dynamics of H2A.Z on SMALL AUXIN UP RNAs regulate abscisic acid-auxin signaling crosstalk in Arabidopsis. | LitMetric

The dynamics of H2A.Z on SMALL AUXIN UP RNAs regulate abscisic acid-auxin signaling crosstalk in Arabidopsis.

J Exp Bot

Joint Center for Single Cell Biology, School of Agriculture and Biology, Shanghai Jiao Tong University, Shanghai 200240, China.

Published: August 2023

AI Article Synopsis

  • Extreme environmental changes are putting plants and global food production at risk, leading to an important role for the plant hormone abscisic acid (ABA) in managing stress responses while limiting growth.
  • A study of the H2A.Z-knockdown mutant in Arabidopsis revealed significant alterations in ABA signaling and activation of numerous stress-related genes.
  • The research also showed that ABA influences the presence of histone variant H2A.Z on specific RNAs related to auxin and represses H2A.Z gene transcription, highlighting a complex interplay between ABA and auxin signaling in plant stress responses.

Article Abstract

Extreme environmental changes threaten plant survival and worldwide food production. In response to osmotic stress, the plant hormone abscisic acid (ABA) activates stress responses and restricts plant growth. However, the epigenetic regulation of ABA signaling and crosstalk between ABA and auxin are not well known. Here, we report that the histone variant H2A.Z-knockdown mutant in Arabidopsis Col-0, h2a.z-kd, has altered ABA signaling and stress responses. RNA-sequencing data showed that a majority of stress-related genes are activated in h2a.z-kd. In addition, we found that ABA directly promotes the deposition of H2A.Z on SMALL AUXIN UP RNAs (SAURs), and that this is involved in ABA-repression of SAUR expression. Moreover, we found that ABA represses the transcription of H2A.Z genes through suppressing the ARF7/19-HB22/25 module. Our results shed light on a dynamic and reciprocal regulation hub through H2A.Z deposition on SAURs and ARF7/19-HB22/25-mediated H2A.Z transcription to integrate ABA/auxin signaling and regulate stress responses in Arabidopsis.

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Source
http://dx.doi.org/10.1093/jxb/erad131DOI Listing

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