4.6 Article

The SikCuZnSOD3 gene improves abiotic stress resistance in transgenic cotton

期刊

MOLECULAR BREEDING
卷 41, 期 3, 页码 -

出版社

SPRINGER
DOI: 10.1007/s11032-021-01217-0

关键词

Saussurea involucrata; SikCuZnSOD3; Cold stress; Drought stress; NaCl stress; Transgenic cotton

资金

  1. Xinjiang 2019 Postgraduate Scientific Research Innovation Project [XJ2019G084, ZZZC202082B]
  2. National GMO Major Project [2016ZX080005004-009]
  3. Key Scientific and Technological Projects for the Cultivation of New Varieties of Genetically Modified Organisms [2018ZX0800501B-005]

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The overexpression of SikCuZnSOD3 gene has been shown to enhance the resistance of cotton to abiotic stress by increasing the activity of antioxidant enzymes, maintaining ROS homeostasis, and reducing cell membrane damage, leading to improved growth conditions.
The expression of a gene encoding peroxisomal Cu-Zn superoxide dismutase from Saussurea involucrata Kar. et Kir. was induced by low temperature, PEG6000 treatment, and NaCl stress. To investigate the role of SikCuZnSOD3 in the mitigation of abiotic stress, we used Agrobacterium-mediated transformation to create transgenic cotton that overexpressed SikCuZnSOD3. Phenotypic analysis of T-4 generation transgenic lines showed that they generally grew better than wild-type cotton under low temperature, PEG6000 treatment, and NaCl stress. Although there were no significant differences under control conditions, transgenic plants exhibited greater survival, fresh weight, and dry weight than wild-type plants under all three stress treatments. Additional physiological analyses demonstrated that the transgenic cotton had higher relative water content, proline and soluble sugar contents, and activity of antioxidant enzymes (superoxide dismutase, catalase, and peroxidase), as well as lower relative conductivity, malondialdehyde content, and H2O2 and O-2(-) accumulation. More importantly, overexpression of SikCuZnSOD3 increased the yield of cotton fiber. Our results confirm that the overexpression of SikCuZnSOD3 can improve the abiotic stress resistance of cotton by increasing the activity of antioxidant enzymes, maintaining ROS homeostasis, and reducing cell membrane damage.

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