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Long-Term Efficacy and Safety of RNAi-Mediated Virus Resistance in 'HoneySweet' Plum.
Singh, Khushwant; Callahan, Ann M; Smith, Brenda J; Malinowski, Tadeusz; Scorza, Ralph; Jarosová, Jana; Beoni, Eva; Polák, Jaroslav; Kundu, Jiban Kumar; Dardick, Chris.
Afiliación
  • Singh K; Innovative Fruit Production, Improvement and Protection, Appalachian Fruit Research Station, Agricultural Research Service (USDA), Kearneysville, WV, United States.
  • Callahan AM; Division of Crop Protection and Plant Health, Crop Research Institute, Prague, Czech Republic.
  • Smith BJ; Innovative Fruit Production, Improvement and Protection, Appalachian Fruit Research Station, Agricultural Research Service (USDA), Kearneysville, WV, United States.
  • Malinowski T; Department of Nutritional Sciences, Oklahoma State University, Stillwater, OK, United States.
  • Scorza R; Innovative Fruit Production, Improvement and Protection, Appalachian Fruit Research Station, Agricultural Research Service (USDA), Kearneysville, WV, United States.
  • Jarosová J; The National Research Institute of Horticulture, Skierniewice, Poland.
  • Beoni E; Innovative Fruit Production, Improvement and Protection, Appalachian Fruit Research Station, Agricultural Research Service (USDA), Kearneysville, WV, United States.
  • Polák J; Division of Crop Protection and Plant Health, Crop Research Institute, Prague, Czech Republic.
  • Kundu JK; Division of Crop Protection and Plant Health, Crop Research Institute, Prague, Czech Republic.
  • Dardick C; Division of Crop Protection and Plant Health, Crop Research Institute, Prague, Czech Republic.
Front Plant Sci ; 12: 726881, 2021.
Article en En | MEDLINE | ID: mdl-34712254
ABSTRACT
Interfering RNA technology has been established as an effective strategy to protect plants against viral infection. Despite this success, interfering RNA (RNAi) has rarely been applied due to the regulatory barriers that confront genetically engineered plants and concerns over possible environmental and health risks posed by non-endogenous small RNAs. 'HoneySweet' was developed as a virus-resistant plum variety that is protected by an RNAi-mediated process against Sharka disease caused by the plum pox virus. 'HoneySweet' has been approved for cultivation in the United States but not in countries where the plum pox virus is endemic. In this study, we evaluated the long-term efficacy of virus resistance in 'HoneySweet,' the nature and stability of its sRNA profile, and the potential health risks of consuming 'HoneySweet' plums. Graft-challenged 'HoneySweet' trees carrying large non-transgenic infected limbs remained virus-free after more than 10 years in the field, and the viral sequences from the non-transgenic infected limbs showed no evidence of adaptation to the RNAi-based resistance. Small RNA profiling revealed that transgene-derived sRNA levels were stable across different environments and, on average, were more than 10 times lower than those present in symptom-less fruits from virus-infected trees. Comprehensive 90-day mouse feeding studies showed no adverse health impacts in mice, and there was no evidence for potential siRNA off-target pathologies predicted by comparisons of the most abundant transgene-derived sRNAs to the mouse genome. Collectively, the data confirmed that RNAi provides a highly effective, stable, and safe strategy to combat virus diseases in crop plants.
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Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Tipo de estudio: Prognostic_studies Idioma: En Revista: Front Plant Sci Año: 2021 Tipo del documento: Article País de afiliación: Estados Unidos

Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Tipo de estudio: Prognostic_studies Idioma: En Revista: Front Plant Sci Año: 2021 Tipo del documento: Article País de afiliación: Estados Unidos