



- Công bố khoa học và công nghệ Việt Nam
Bảo vệ thực vật
Phạm Hồng Hiển(2), Diêm Đăng Trường, Dương Văn Hoàn, Trần Thị Đào, Nguyễn Thị Thu, Nguyễn Xuân Cảnh(1)
Phân lập, xác định vi khuẩn gây bệnh thối mềm trên lan phi điệp (Dendrobium anosmum) và đánh giá hiệu quả ức chế của một số chủng xạ khuẩn
Isolation and identification of soft rot bacteria on Dendrobium anosmum orchid and evaluation of inhibitory effects of some actinomycetes
Khoa học Nông nghiệp Việt Nam
2022
1
74-81
2588-1299
TTKHCNQG, CTv 169
- [1] Vũ Thị Hoàn, Phan Quốc Hưng & Vũ Thị Xuân Hương (2020), Phân lập, tuyển chọn vi khuẩn đối kháng với vi khuẩn gây bệnh thối mềm trên cây lan Hồ điệp,Tạp chí Nông nghiệp và Phát triển nông thôn. 3 + 4: 5-12.
- [2] Sudarsono S., Elina J., Giyanto & Sukma D. (2018), Pathogen Causing Phalaenopsis Soft Rot Disease - 16S rDNA and Virulence C-haracterisation,Plant Protection Science. 54(1): 1-8.
- [3] Simone G.W. & Burnett H.C. (2002), Diseases caused by bacteria and fungi. Orchid pests and diseases,American Orchid Society, Delray Beach. pp. 50-73.
- [4] Shimizu M., Yazawa S. & Ushijima Y. (2008), A promising strain of endophytic Streptomyces sp. for biological control of cucumber anthraxcnose.,Journal of General Plant Pathology. 75(1): 27-36.
- [5] Pulawska J., Mikicinski A. & Orlikowski L.B. (2013), Acidovorax cattleyae the causal agent of bacterial brown spot of Phalaenopsis lueddemanniana in Poland,Journal of Plant Pathology. pp. 407-410
- [6] Peng Q., Yuan Y. & Gao M. (2013), Bacillus pumilus, a novel ginger rhizome rot pathogen in china,Plant Disease. 97(10): 1308-1315
- [7] Palma M.A., Chen Y.J., Hall C., Bessler D. & Leatham D. (2010), Consumer preferences for potted orchids in the Hawaiian market,Hortechnology. 20(1): 239-244.
- [8] Nuryani W., Hanudin H., Yusuf E.S. & Budiarto K (2018), Physico-Chemical, Viability Evaluations and Efficacy Assessment of Bacillus subtilis Against Soft Rot Disease in Phalaenopsis.,AGRIVITA, Journal of Agricultural Science. 40(3): 425-433.
- [9] Masoomi A.F., Jabbari L., Khayam N.R. & Aalami A (2016), A simple and rapid system for DNA and RNA isolation f-rom diverse plants using handmade kit. Protocol Exchange,
- [10] Lin Y.H., Lee P.J., Shie W.T., Chern L.L. & Chao Y.C (2015), Pectobacterium chrysanthemi as the dominant causal agent of bacterial soft rot in Oncidium “Grower Ramsey”,European Journal of Plant Pathology. 142(2); 331-343.
- [11] Liau C.H., Lu J.C., Prasad V., Hsiao H.H., You S.J., Lee J.T., Yang N.S., Huang H.E., Feng T.Y., Chen W.H. & Chan M.T. (2003), The sweet pepper ferredoxin-like protein (pflp) conferred resistance against soft rot disease in Oncidium orchid.,Transgenic Research. 12(3): 329-336.
- [12] Lemjiber N., Naamani K., Merieau A., Dihazi A., Zhar N., Jediyi H. & Boukerb A.M. (2021), Identification and Genomic C-haracterization of Pathogenic Bacillus altitudinis f-rom Common Pear Trees in Morocco.,Agronomy. 11(7): 1344.
- [13] Keith L.M., Sewake K.T. & Zee F.T (2005), Isolation and c-haracterization of Burkholderia gladioli f-rom orchids in Hawaii. Plant Dis. 89: 1273-1278.,
- [14] Joo G.J. (2005), Production of an anti-fungal substance for biological control of Phytophthora capsici causing Phytophthora blight in red peppers Streptomyces halstedii.,Biotechnology Letter. 27(3): 201-205.
- [15] Joko T., Kiswanti D., Hanudin & Subandiyah S. (2011), Occurence of bacterial soft-rot of Phalaenopsis orchids in Yogyakarta and West Java, Indonesia,In Proceeding of Internasional Seminar on Natural Resources, Climate Change dan-Food Security in Developing Countries. pp. 27-28.
- [16] Eum S.M., Gale S., Yukawa T. & Lee N.S. (2011), Phylogenetic and conservation status of the endangered terrestrial orchid Nervilia nipponica (Orchidaceae) in Korea,Biochem Syst Ecol. 39(4-6): 635-642.
- [17] Elbanna K., Elnaggar S. & Bakeer A. (2014), C-haracterization of Bacillus altitudinis as a new causative agent of bacterial soft rot.,Journal of Phytopathology. 162(11-12): 712-722.
- [18] Đào Thanh Vân & Đặng Thị Tố Nga (2008), Giáo trình Hoa lan.,Truy cập từ http://tailieudientu.lrc.tnu. edu.vn/Upload/Collection/brief/brief_1308_10008 _Small_09.Giaotrinhhoalan.pdf ngày 24/08/2021.
- [19] Chang Y.Y., Chu Y.W., Chen C.W., Leu W.M., Hsu H.F. & Yang C.H. (2011), C-haracterization of oncidium „gower ramsey‟ transcriptomes using 454 GS-FLX pyrosequencing and their application to the identification of genes associated with flowering time.,Plant and Cell Physiology. 52(9): 1532-1545.
- [20] Cating R.A. & Palmateer A.J. (2011), Bacterial soft rot of Oncidium orchids caused by a Dickeya sp. (Pectobacterium chrysanthemi) in Florida,Plant Dis. 95(1): 74-74.
- [21] Cating R.A., Hoy M.A., & Palmateer A.J (2012), A comparison of standard and high-fidelity PCR: evaluating quantification and detection of pathogen DNA in the presence of orchid host tissue,Plant Disease. 96(4): 480-485.
- [22] Bathily H., Babana A.H. & Samaké F. (2010), Bacillus pumilus, a new pathogen on potato tubers in storage in Mali,African Journal of Microbiology Research. 4(20): 2067-2071.
- [23] Balouiri M., Sadiki M. & Ibnsouda S.K. (2015), Methods for in vitro evaluating antimicrobial activity: A review,Journal of Pharmaceutical Analysis. 6(2): 71-79.
- [24] Babana A.H., Bathily H., Samaké F., Maïga K., Traoré D. & Dicko A. (2011), Microbiological control of bacterial soft rot caused by Bacillus pumilus OD23 on potato,British Microbiology Research Journal. 1(3): 41-48
- [25] Alic S., Naglic T., Znidaric M.T., Peterka M., Ravnikar M. & Dreo T (2017), Putative new species of the genus Dickeya as major soft rot pathogens in Phalaenopsis orchid production,Plant Pathology. 66(8): 1357-1368.