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稳定剂对黑附球菌制剂保质期的影响及其与桃褐腐病菌对采后褐腐病生物防治的关系。

Effects of stabilizers on shelf-life of Epicoccum nigrum formulations and their relationship with biocontrol of postharvest brown rot by Monilinia of peaches.

作者信息

Larena I, De Cal A, Melgarejo P

机构信息

Departamento de Protección Vegetal, INIA, Madrid, Spain.

出版信息

J Appl Microbiol. 2007 Feb;102(2):570-82. doi: 10.1111/j.1365-2672.2006.03075.x.

Abstract

AIM

To find a formulation of Epicoccum nigrum conidia that maintains a high viability over time and which proves efficient to biocontrol peach rot caused by Monilinia spp.

METHODS AND RESULTS

We tested the effect of stabilizers and desiccants on the shelf-life of Epicoccum nigrum conidia. Conidial samples were dried for 40 min at 40 degrees C in a fluidized bed-dryer to obtain moisture contents <15%. The toxicity of additives was tested by assaying production of conidia in fermentations and germinability of the produced conidia: 50% PEG300, 10%-5% KCl (stabilizers) and 95.24% Cl(2)Ca (desiccant) significantly (P = 0.05) reduced conidial germination. To enhance shelf-life of dried conidia, nontoxic stabilizers were added at the following different stages of the production-drying process: (i) to substrate contained in bags before production, (ii) to conidial centrifuge pellets obtained after production, before filtering and drying, (iii) to conidial centrifuge pellets obtained after production, before adding talc and drying, and (iv) to conidial centrifuge pellets obtained after production, before adding silica powder and drying. Conidial germinability was tested at 0, 180 and 365 days after storage at room temperature. Shelf-life of formulations retaining the highest viability were conidia produced with 1% KCl or 50% PEG 8000, conidia dried with 2.5% methylcellulose, and conidia dried with 1% KCl + silica powder. All these formulations improved the shelf-life of E. nigrum conidia and significantly reduced brown rot on peaches.

CONCLUSIONS

Our results show that additives improve the shelf-life of E. nigrum and assist controlling brown rot on peaches.

SIGNIFICANCE AND IMPACT OF THE STUDY

New improved formulations of a biocontrol agent have been obtained which will improve the control of Monilinia on peach.

摘要

目的

找到一种黑附球菌分生孢子制剂,使其在较长时间内保持高活力,并证明其对防治由链核盘菌属引起的桃褐腐病有效。

方法与结果

我们测试了稳定剂和干燥剂对黑附球菌分生孢子保质期的影响。将分生孢子样品在流化床干燥器中于40℃干燥40分钟,以获得水分含量<15%。通过测定发酵中产孢量和所产分生孢子的发芽能力来测试添加剂的毒性:50%聚乙二醇300、10%-5%氯化钾(稳定剂)和95.24%氯化钙(干燥剂)显著(P = 0.05)降低了分生孢子的萌发率。为延长干燥分生孢子的保质期,在生产-干燥过程的以下不同阶段添加无毒稳定剂:(i)在生产前添加到袋装基质中,(ii)在生产后获得分生孢子离心沉淀物后,过滤和干燥前添加到其中,(iii)在生产后获得分生孢子离心沉淀物后,但在添加滑石粉和干燥前添加到其中,(iv)在生产后获得分生孢子离心沉淀物后,但在添加二氧化硅粉末和干燥前添加到其中。在室温下储存0、180和365天后测试分生孢子的发芽能力。保持最高活力的制剂的保质期是用1%氯化钾或50%聚乙二醇8000生产的分生孢子、用2.5%甲基纤维素干燥的分生孢子以及用1%氯化钾+二氧化硅粉末干燥的分生孢子。所有这些制剂都延长了黑附球菌分生孢子保质期,并显著减少了桃子上的褐腐病。

结论

我们的结果表明添加剂可延长黑附球菌的保质期,并有助于防治桃子上的褐腐病。

研究的意义和影响

已获得一种生物防治剂的新型改良制剂,这将改善对桃上链核盘菌的防治。

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