Grant Information
| Knowledge Area | Subject of Investigation | Field of Science | Percent |
|---|---|---|---|
| 204 - Plant Product Quality and Utility (Preharvest) | 920 - Orange | 1080 - Genetics (excludes breeding) | 40% |
| 203 - Plant Biological Efficiency and Abiotic Stresses Affecting Plants | 910 - Grapefruit | 1000 - Biochemistry and biophysics | 30% |
| 212 - Pathogens and Nematodes Affecting Plants | 999 - Citrus, general/other | 1160 - Pathology | 30% |
Lab, greenhouse, and field studies of each exogenous peptide and transgenic construct will utilize the mature and efficient protocols in use at our lab by our unit. In brief, with all studies replicated and using two sets of controls; 1) Candidatus Liberibacter asiaticus (CLas)-containing Asian citrus psyllid (ACP)-homogenate assays will be used to screen peptides (for use as transgenes for exoegenous application) for CLas-killing activity; 2) initial lab studies will screen transgenic lines with a high-throughput detached tissue assay measuring CLas survival in leaves and ACP, as well as ACP mortality; 3) greenhouse studies will assess CLas titer in transgenics following no choice feeding of CLas positive ACP maintained at our facility, and exogenous CLas-killing peptides will be assessed by application to small CLas infected trees ; and 4) field studies will be conducted through graft inoculation and/or field exposure at our farm location. All greenhouse and field testing will be conducted in accordance with newly established common protocols. All analysis tools and required experience for these studies are available in house, including citrus transformation and regeneration, transgene and vector design, Real time quantitative polymerase chain reaction (RT-qPCR) analysis of transgene and CLas gene expression, protein isolation, plant maintenance in greenhouse and field conditions and disease symptom characterization, as well as Asian citrus psyllid (ACP) mortality studies. This is possible through the use of core facility equipment from the USDA-ARS and a diverse brain-trust of specialists in each aspect of the project. Expertise includes conventional breeding/screening, horticultural, genetics, proteomics, structural biology, entomology, and plant pathology. All contributors have strong familiarity with the needs of this research due to cooperative involvement on the preceding work to design, create and test anti-HLB constructs.