4.6 Article

Transcriptional Variability Associated With CRISPR-Mediated Gene Replacements at the Phytophthora sojae Avr1b-1 Locus

期刊

FRONTIERS IN MICROBIOLOGY
卷 12, 期 -, 页码 -

出版社

FRONTIERS MEDIA SA
DOI: 10.3389/fmicb.2021.645331

关键词

Phytophthora sojae; RXLR effector; clustered regularly interspaced short palindromic repeat; gene replacement; transcriptional variation

资金

  1. National Natural Science Foundation of China [31301644]
  2. China Postdoctoral Science Foundation [2015M582716]
  3. Changjiang Scholars Program of China [T2016106]
  4. Agriculture and Food Research Initiative of the USDA NIFA [2018-67013-28438]
  5. Oregon State University

向作者/读者索取更多资源

Transcriptional plasticity allows oomycetes to adapt to environmental challenges, such as host resistance, through natural silencing of effector genes. Using CRISPR/Cas9 system, targeted genes can be mutated for functional studies. In this study, Avr1b-1 gene was successfully deleted from P. sojae genome and replaced with mCherry. Results suggest that Avr1b-1 may be highly susceptible to transcriptional variation.
Transcriptional plasticity enables oomycetes to rapidly adapt to environmental challenges including emerging host resistance. For example, the soybean pathogen Phytophthora sojae can overcome resistance conferred by the host resistance gene Rps1b through natural silencing of its corresponding effector gene, Avr1b-1. With the Phytophthora CRISPR/Cas9 genome editing system, it is possible to generate site-specific knock-out (KO) and knock-in (KI) mutants and to investigate the biological functions of target genes. In this study, the Avr1b-1 gene was deleted from the P. sojae genome using a homology-directed recombination strategy that replaced Avr1b-1 with a gene encoding the fluorescent protein mCherry. As expected, all selected KO transformants gained virulence on Rps1b plants, while infection of plants lacking Rps1b was not compromised. When a sgRNA-resistant version of Avr1b-1 was reintroduced into the Avr1b-1 locus of an Avr1b KO transformant, KI transformants with a well-transcribed Avr1b-1 gene were unable to infect Rps1b-containing soybeans. However, loss of expression of the incoming Avr1b-1 gene was frequently observed in KI transformants, which resulted in these transformants readily infecting Rps1b soybeans. A similar variability in the expression levels of the incoming gene was observed with AVI- or mCherry-tagged Avr1b-1 constructs. Our results suggest that Avr1b-1 may be unusually susceptible to transcriptional variation.

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