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Item type:Publication, Efficacy of biopesticides and fungicides against brown rot on cherry (Prunus avium) and plum (Prunus domestica)(2025-01-01) ;Rungjindamai, Nattawut ;Jeffries, PeterXu, XiangmingCherry and plum are prone to brown rot diseases. Synthetic fungicides are still the main management tool to control brown rot but there is a need to develop eco-friendly methods. Five commercial biopesticides including BioPK (Trichoderma viride, T. harzianum and T. longibranchum), BoniProtect (Aureobasidium pullulans), Trianum (T. harzianum), PreStop (Gliocladium catenulatum) and Serenade (Bacillus subtilis) along with Indar (fenbuconazole, a synthetic fungicide) were tested against Monilinia laxa which products applied before and after pathogen inoculation. Indar completely inhibited brown rot development. Serenade partially inhibited M. laxa when applied before pathogen inoculation. The efficacy of two indigenous strains (B. subtilis B91 and A. pullulans Y126) were evaluated under ambient conditions or 1°C; Indar and Serenade were used as control treatments. Cherry and plum were first treated with specific products, then wounded and inoculated with M. laxa. Indar completely inhibited M. laxa under both conditions. Under ambient conditions, only B91 reduced the incidence of disease. When stored at 1°C for 4 weeks, all biocontrol treatments reduced the incidence of disease. However, when fruits were left under ambient conditions for an additional 1 week, the incidence of disease did not differ between treatments. Post-harvest application of biopesticides under 1°C was studied with Rovral used as a control. Cherry and plum were submerged into individual treatments and stored at 1°C for 6 weeks. Rovral reduced the incidence of disease, whilst all biopesticides did not. In conclusion, Serenade, B91 and Y126 can partially inhibit M. laxa when applied before pathogen infection. The present study supports that these biocontrol proeducts should be used pre-harvest to reduce the extent of fruit latent infection by M. laxa, and an effective post-harvest cold chain management should be implemented to delay/minimise rot development. - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Natural product nanofibers derived from Trichoderma hamatum K01 to control citrus anthracnose caused by Colletotrichum gloeosporioides(2023-01-01) ;Phal, Pheaktra ;Soytong, KasemPoeaim, SupattraThe antifungal activity of Trichoderma hamatum K01 to control Colletotrichum gloeosporioides C01 was recorded. Pathogenicity of C. gloeosporioides C01 on citrus leaves was confirmed by the Koch postulate. T. hamatum K01 inhibited the colony growth and conidia production of C. gloeosporioides C01 by 70.55 and 79.07%, respectively. Crude extracts from T. hamatum K01 expressed an antifungal activity against C. gloeosporioides C01. The crude TK01-MeOH showed the most potent inhibitory effect on the colony growth and conidia production at the ED50 values of 273 and 355 ppm, respectively. Nanofiber TK01M gave the highest inhibition on the colony growth and conidia production at the ED50 values of 13 and 3 ppm, respectively. Control mechanism was related to the major pyrone metabolite group (6-pentyl-2H-pyran-2-one), organic compounds (benzoic acid, hexadecane, tetracosane), fatty acids (palmitic acid, linoleic acid, tetradecanoic acid, pentadecanoic acid, hexadecenoic acid, ethyl ester, linoleic acid ethyl ester, and ethyl oleate), and sorbicillin from GC-MS analysis, which were produced by T. hamatum K01. It is reported for the first time to isolate secondary metabolite pyrone (6-pentyl-2H-pyran-2-one) from T. hamatum K01, and the first report of nanofibers constructed from T. hamatum K01 against C. gloeosporioides. - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Isolation and evaluation of biocontrol agents in controlling anthracnose disease of mango in Thailand(2016-07-01)Rungjindamai, NattawutThe agricultural based economy is a core business in Thailand and food export is one of the main sources of income for the Thai population. However, pesticides are overused and misused. As a result there is an urgent need to reduce the use of synthetic chemicals. Biological control offers an alternative to the use of pesticides. Mango (Mangifera indica L.) is widely planted in Thailand and is one of the major cash crops for international export. However, mango suffers from various diseases especially anthracnose, a fungal disease caused by Colletotrichum gloeosporioides. One hundred and twelve isolates of epiphytic microbes were isolated from healthy leaves and fruits of mangoes; this included 93 and 19 isolates of epiphytic bacteria and yeasts, respectively. They were screened for bioactivity against a pathogenic strain of C. gloeosporioides isolated from diseased mangoes using a dual culture technique. Out of 112 isolates, eight isolates exhibited at least 60% inhibition. These isolates were further screened for their inhibition on mango using fruit inoculation. Two isolates reduced the lesion sizes caused by C. gloeosporioides compared to control treatment. These two isolates, based on phenotypical and biochemical tests, were identified as Bacillus sp. MB61 and Bacillus sp. LB72.
