Plants (Apr 2023)

Strategies for Engineering Virus Resistance in Potato

  • Jiecai Liu,
  • Jianying Yue,
  • Haijuan Wang,
  • Lingtai Xie,
  • Yuanzheng Zhao,
  • Mingmin Zhao,
  • Hongyou Zhou

DOI
https://doi.org/10.3390/plants12091736
Journal volume & issue
Vol. 12, no. 9
p. 1736

Abstract

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Potato (Solanum tuberosum L.) is an important vegetable crop that plays a pivotal role in the world, especially given its potential to feed the world population and to act as the major staple food in many developing countries. Every year, significant crop loss is caused by viral diseases due to a lack of effective agrochemical treatments, since only transmission by insect vectors can be combated with the use of insecticides, and this has been an important factor hindering potato production. With the rapid development of molecular biology and plant genetic engineering technology, transgenic approaches and non-transgenic techniques (RNA interference and CRISPR-cas9) have been effectively employed to improve potato protection against devastating viruses. Moreover, the availability of viral sequences, potato genome sequences, and host immune mechanisms has remarkably facilitated potato genetic engineering. In this study, we summarize the progress of antiviral strategies applied in potato through engineering either virus-derived or plant-derived genes. These recent molecular insights into engineering approaches provide the necessary framework to develop viral resistance in potato in order to provide durable and broad-spectrum protection against important viral diseases of solanaceous crops.

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