Rungjindamai, Nattawut
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Preferred name
Rungjindamai, Nattawut
Alternative Name
Rungjindamai, N.
Main Affiliation
Email
nattawut.ru@kmitl.ac.th
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Item type:Publication, A novel strategy to reduce overwintering inoculum of Monilinia laxa(2014-10-02); ;Jeffries, PeterXu, Xiang MingBrown rot on cherry and plum, caused by Monilinia laxa, is an important disease, for which overwintered mummified fruit is a significant inoculum source for infection of flowers and fruit in the spring. Experiments were conducted to assess the potential of applying plant protection products in winter and/or early spring to suppress sporulation on mummified fruit. Products tested included Indar 5 EW (a commercial fungicide, a.i. fenbuconazole), Aureobasidium pullulans Y126 [a candidate biocontrol agent (BCA)]), Bacillus sp. B91 (a candidate BCA) and Serenade (a commercially formulated BCA of Bacillus subtilis strain QST 713) in addition to control treated with tap water. Indar and A. pullulans Y126 significantly reduced sporulation when applied once in winter. Overall, a single treatment in early spring (February) was slightly more effective than single treatment in winter (November). Application of all products in both winter and early spring led to significant reduction in sporulation. Indar had the highest efficacy, reducing the number of spores from 9 × 10<sup>5</sup> to 5 × 10<sup>3</sup> per mummified plum when applied twice. Of the three BCAs applied on both occasions, A. pullulans Y126 had the highest efficacy, reducing the number of spores from 9 × 10<sup>5</sup> to 5 × 10<sup>4</sup> per mummified plum. There were no synergistic but additive effects between the two applications in winter and early spring based on the Bliss independence test. These results suggest that reducing overwintering inoculum in dormant season is effective and may be part of an integrated management strategy for brown rot on stone fruit. - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Efficacy of biopesticides and fungicides against brown rot on cherry (Prunus avium) and plum (Prunus domestica)(2025-01-01); ;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.
