4.7 Article

A Novel DUF569 Gene Is a Positive Regulator of the Drought Stress Response in Arabidopsis

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MDPI
DOI: 10.3390/ijms22105316

关键词

Arabidopsis; drought; DUF569; antioxidant activity

资金

  1. Next-Generation BioGreen 21 Program (SSAC), Rural Development Administration Republic of Korea [PJ01242501]

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Global environmental changes have increased abiotic stress on plants, with drought stress being a significant challenge. A novel gene, DUF569, was found to positively regulate drought stress in Arabidopsis, as shown by the sensitivity of the mutant plant and its reduced recovery ability compared to wild-type plants. This suggests that DUF569 is a key regulator in the response to drought in Arabidopsis.
In the last two decades, global environmental change has increased abiotic stress on plants and severely affected crops. For example, drought stress is a serious abiotic stress that rapidly and substantially alters the morphological, physiological, and molecular responses of plants. In Arabidopsis, several drought-responsive genes have been identified; however, the underlying molecular mechanism of drought tolerance in plants remains largely unclear. Here, we report that the domain of unknown function novel gene DUF569 (AT1G69890) positively regulates drought stress in Arabidopsis. The Arabidopsis loss-of-function mutant atduf569 showed significant sensitivity to drought stress, i.e., severe wilting at the rosette-leaf stage after water was withheld for 3 days. Importantly, the mutant plant did not recover after rewatering, unlike wild-type (WT) plants. In addition, atduf569 plants showed significantly lower abscisic acid accumulation under optimal and drought-stress conditions, as well as significantly higher electrolyte leakage when compared with WT Col-0 plants. Spectrophotometric analyses also indicated a significantly lower accumulation of polyphenols, flavonoids, carotenoids, and chlorophylls in atduf569 mutant plants. Overall, our results suggest that novel DUF569 is a positive regulator of the response to drought in Arabidopsis.

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