4.7 Article

The E3 Ligase GmPUB21 Negatively Regulates Drought and Salinity Stress Response in Soybean

Journal

Publisher

MDPI
DOI: 10.3390/ijms23136893

Keywords

abscisic acid; abiotic stress; GmPUB21; ubiquitination; stomata

Funding

  1. Jiangsu Collaborative Innovation Center for Modern Crop Production (JCIC-MCP)
  2. Core Technology Development for Breeding Program of Jiangsu Province [JBGS-2021-014]
  3. National Soybean Industrial Technology System of China [CARS-004]

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In this study, it was found that the expression of the GmPUB21 gene was significantly up-regulated in response to drought, salinity, and ABA treatments. Overexpression of GmPUB21 made plants more sensitive to osmotic, salinity stress, and ABA, while silencing of GmPUB21 enhanced the tolerance to drought and salinity stresses.
E3-ubiquitin ligases are known to confer abiotic stress responses in plants. In the present study, GmPUB21, a novel U-box E3-ubiquitin ligase-encoding gene, was isolated from soybean and functionally characterized. The expression of GmPUB21, which possesses E3-ubiquitin ligase activity, was found to be significantly up-regulated by drought, salinity, and ABA treatments. The fusion protein GmPUB21-GFP was localized in the cytoplasm, nucleus, and plasma membrane. Transgenic lines of the Nicotiana benthamiana over-expressing GmPUB21 showed more sensitive to osmotic, salinity stress and ABA in seed germination and inhibited mannitol/NaCl-mediated stomatal closure. Moreover, higher reactive oxygen species accumulation was observed in GmPUB21 overexpressing plants after drought and salinity treatment than in wild-type (WT) plants. Contrarily, silencing of GmPUB21 in soybean plants significantly enhanced the tolerance to drought and salinity stresses. Collectively, our results revealed that GmPUB21 negatively regulates the drought and salinity tolerance by increasing the stomatal density and aperture via the ABA signaling pathway. These findings improved our understanding of the role of GmPUB21 under drought and salinity stresses in soybean.

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