Bindu Poudel-Ward
- Associate Agent, Plant Pathology
Contact
- (928) 782-5879
- Yuma County/ Ag Ext, Rm. 102
- Yuma, AZ 85364
- bpoudel@arizona.edu
Work Experience
- University of Arizona (2019 - Ongoing)
- University of Florida (2017 - 2018)
Interests
No activities entered.
Courses
2023-24 Courses
-
Intro Plant Pathology
PLP 305 (Fall 2023)
2021-22 Courses
-
Intro Plant Pathology
MIC 305 (Fall 2021) -
Intro Plant Pathology
PLP 305 (Fall 2021)
Scholarly Contributions
Journals/Publications
- Murcia Bermudez, J., Singh, N., Furr, J., Ramirez, R., Porchas Jr., M., & Poudel-Ward, B. (2023). Evaluation of different soil amendments to manage Fusarium wilt of lettuce in Yuma, AZ, 2022. Plant Disease management report, 17.
- Singh, N. S., Poudel-Ward, B., & Klingenberg, J. (2023). First Report of Charcoal Rot Caused by Macrophomina phaseolina on Stevia rebaudiana in Arizona, U.S.A.. Plant Disease.
- Singh, N., Klingenberg, J., & Poudel-Ward, B. (2023).
First Report of Charcoal Rot Caused by Macrophomina phaseolina on Stevia rebaudiana in Arizona, U.S.A.
. Plant Disease, 107(9), 2863. doi:10.1094/pdis-03-23-0539-pdn - Poudel-Ward, B., Singh, N., Porchas, M., & Furr, J. (2022). Evaluation of fungicides for control of powdery mildew on melon, Yuma, AZ, 2021. Plant Disease Management Report.
- Singh, N., Furr, J., & Poudel-Ward, B. (2022). First Report of Powdery Mildew Caused by Golovinomyces latisporus on Helianthus annuus in the Arizona. Plant Disease. doi:https://doi.org/10.1094/PDIS-08-22-1875-PDN
- Singh, N., Porchas, M., Furr, J., & Poudel-Ward, B. (2022). Assessment of fungicides for control of downy mildew on spinach, Yuma, AZ, 2021. Plant Disease Management Report, 16. doi:https://doi.org/10.1094/PDMR16
- Singh, N., Porchas, M., Furr, J., & Poudel-Ward, B. (2022). Evaluation of different soil amendments to manage Fusarium wilt of lettuce in Yuma, AZ, 2021. Plant Disease Management Report, 16.
- Singh, N., Porchas, M., Furr, J., & Poudel-Ward, B. (2022). Evaluation of fungicides for control of powdery mildew on Lettuce, Yuma, AZ, 2021. Plant Disease Management Report.
- Singh, N., Porchas, M., Furr, J., & Poudel-Ward, B. (2022). Evaluation of fungicides for management of Sclerotinia drop of lettuce, Yuma, AZ, 2021. Plant Disease Management Report.
- Singh, N., Porchas, M., Furr, J., & Poudel-Ward, B. (2022). Evaluation of fungicides to control downy mildew of lettuce in Yuma, AZ, 2021. Plant Disease Management report.
- Singh, N., Porchas, M., Ramirez, R., & Poudel-Ward, B. (2022). Assessment of fungicides for control of downy mildew on spinach, Yuma, AZ, 2020. Plant Disease Management Report, 16. doi:https://doi.org/10.1094/PDMR16
- Singh, N., Porchas, M., Ramirez, R., & Poudel-Ward, B. (2022). Evaluation of fungicides for control of powdery mildew on Lettuce, Yuma, AZ, 2020. Plant Disease Management Report, 16. doi:https://doi.org/10.1094/PDMR16
- Singh, N., Porchas, M., Ramirez, R., & Poudel-Ward, B. (2022). Evaluation of fungicides for control of powdery mildew on melon. Plant Disease Management Report. doi:https://doi.org/10.1094/PDMR16
- Singh, N., Porchas, M., Ramirez, R., & Poudel-Ward, B. (2022). Evaluation of fungicides for management of Sclerotinia Drop of lettuce, Yuma, AZ, 2020. Plant Disease Management Report, 16. doi:https://doi.org/10.1094/PDMR16
- Singh, N., Porchas, M., Ramirez, R., & Poudel-Ward, B. (2022). Evaluation of fungicides to control downy mildew of lettuce in Yuma, AZ, 2020. Plant Disease Management Report, 16. doi:https://doi.org/10.1094/PDMR16
- Wintermantel, W. M., Slinski, S., Putman, A. I., Poudel, B., Palumbo, J., Hladky, L. J., Hasegawa, D. K., & Barman, A. K. (2022). First Report of Impatiens Necrotic Spot Virus Infecting Lettuce in Arizona and Southern Desert Regions of California.. Plant disease, 106(8), 2274. doi:10.1094/pdis-09-21-2118-pdnMore infoImpatiens necrotic spot virus (INSV; family Tospoviridae, genus Orthotospovirus) is a thrips-borne pathogen that infects a wide range of ornamental and vegetable crops. INSV was first reported in lettuce (Lactuca sativa) in the Salinas Valley of CA (Monterey County) in 2006 (Koike et al. 2008). Since then, the pathogen has continued to impact lettuce production in the region, causing severe economic losses with increasing incidence and severity in recent years. Tomato spotted wilt virus (TSWV), another tospovirus, also infects lettuce, but its occurrence is much less frequent than INSV (Kuo et al. 2014). While INSV has not been reported in the desert areas of CA and AZ, there are concerns that the virus could become established in this region. In early March 2021, symptoms resembling those caused by orthotospovirus infection were observed in several romaine and iceberg lettuce fields in the Yuma and Tacna regions of Yuma County, AZ. Symptoms included leaves that exhibited tan to dark brown necrotic spots, distorted leaf shapes, and stunted plant growth. Similar symptoms were also reported in romaine fields and one green leaf and iceberg lettuce field in the neighboring Imperial and Riverside Counties of CA. A total of 14 samples (5 from Tacna, 4 from Yuma, 4 from Imperial, 1 from Riverside) were tested using ImmunoStrips (Agdia, Elkhart, IN) for INSV and TSWV. Results confirmed the presence of INSV in 13 out of 14 samples, and the absence of INSV in one sample originating from Yuma. All 14 samples tested negative for TSWV. The 13 INSV positive samples were processed for RT-PCR validation. Total RNA was extracted from each sample using the RNeasy Plant Mini Kit (Qiagen, Valencia, CA). RT-PCR was performed with OneStep Ahead RT-PCR Kit (Qiagen) with primers to the N gene of INSV S RNA (Accession KF745140.1; INSV F = CCAAATACTACTTTAACCGCAAGT; INSV R = ACACCCAAGACACAGGATTT). All reactions generated a single amplicon at the correct size of 524 bp. One sample each from Yuma, Tacna, and Brawley (Imperial County), as well as a romaine lettuce sample collected from the Salinas Valley in March 2021, were sent for Sanger bi-directional sequencing (Eton Biosciences, San Diego, CA). Sequence analysis revealed that all three desert samples (Yuma, Tacna, and Brawley with Accessions OK340696, OK340697, OK340698, respectively) shared 100% sequence identity and 99.43% identity to the Salinas Valley 2021 sample (SV-L2, Accession OK340699). Additionally, all desert samples shared 99.24% sequence identity to the Salinas Valley lettuce isolate previously described in 2014 (SV-L1, Accession KF745140.1; Kuo et al. 2014), while the SV-L2 and SV-L1 sequences shared 99.43% identity. By the end of the season (April 2021) a total of 43 lettuce fields in Yuma County, AZ, and 9 fields in Imperial and Riverside Counties, CA were confirmed to have INSV infection using ImmunoStrips. Impacted fields included romaine, green leaf, red leaf, and head lettuce varieties, and both direct-seeded and transplanted lettuce, under conventional and organic management regimes. In AZ, INSV incidence in fields ranged between 0.2% and 33%, while in Imperial and Riverside Counties, CA, field incidence remained low at less than 0.1%. It is possible that INSV was introduced from the Salinas Valley of CA through the movement of infected lettuce transplants and/or thrips vectors. To our knowledge, this is the first report of INSV infecting lettuce in Arizona and the southern desert region of California.
- Zima, H. V., Clark, K. J., Poudel-Ward, B., Slinski, S. L., Klosterman, S. J., & Correll, J. C. (2022). Evaluation of spinach cultivars for downy mildew resistance in Yuma, AZ 2022. Plant Disease Management Report, 16.
Others
- Dixon, W. A., Poudel-Ward, B., & Fournier, A. J. (2021, May). Famoxadone Use and Benefits in Arizona, Southeastern California and New Mexico. Docket ID: EPA-HQ-OPP-2015-0094. US EPA Public Comment / Expert Testimony. https://acis.cals.arizona.edu/docs/default-source/ipm-assessment-documents/arid-swpmc-info-requests/comment-reponses/famoxadone_pid_5-7-21_vf.pdf
- Dixon, W. A., Poudel-Ward, B., & Fournier, A. J. (2021, May). Mancozeb Use and Benefits in Arizona and Southeastern California. Docket ID: EPA-HQ-OPP-2015-0291. US EPA Public Comment / Expert Testimony. https://acis.cals.arizona.edu/docs/default-source/default-document-library/mancozeb_ra_5-22-21.pdf