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少孢节丛孢菌生物防治对根际真菌和卵菌种群动态的影响。

Influence of Pythium oligandrum biocontrol on fungal and oomycete population dynamics in the rhizosphere.

作者信息

Vallance Jessica, Le Floch Gaétan, Déniel Franck, Barbier Georges, Lévesque C André, Rey Patrice

机构信息

Université Européenne de Bretagne, France.

出版信息

Appl Environ Microbiol. 2009 Jul;75(14):4790-800. doi: 10.1128/AEM.02643-08. Epub 2009 May 15.

Abstract

Fungal and oomycete populations and their dynamics were investigated following the introduction of the biocontrol agent Pythium oligandrum into the rhizosphere of tomato plants grown in soilless culture. Three strains of P. oligandrum were selected on the basis of their ability to form oospores (resting structures) and to produce tryptamine (an auxin-like compound) and oligandrin (a glycoprotein elicitor). Real-time PCR and plate counting demonstrated the persistence of large amounts of the antagonistic oomycete in the rhizosphere throughout the cropping season (April to September). Inter-simple-sequence-repeat analysis of the P. oligandrum strains collected from root samples at the end of the cropping season showed that among the three strains used for inoculation, the one producing the smallest amount of oospores was detected at 90%. Single-strand conformational polymorphism analysis revealed increases in the number of members and the complexity of the fungal community over time. There were no significant differences between the microbial ecosystems inoculated with P. oligandrum and those that were not treated, except for a reduction of Pythium dissotocum (ubiquitous tomato root minor pathogen) populations in inoculated systems during the last 3 months of culture. These findings raise interesting issues concerning the use of P. oligandrum strains producing elicitor and auxin molecules for plant protection and the development of biocontrol.

摘要

在将生防菌寡雄腐霉引入无土栽培的番茄植株根际后,对真菌和卵菌种群及其动态进行了研究。根据寡雄腐霉形成卵孢子(休眠结构)、产生色胺(一种生长素类化合物)和寡雄蛋白(一种糖蛋白激发子)的能力,选择了三株寡雄腐霉。实时荧光定量PCR和平板计数表明,在整个种植季节(4月至9月),根际中大量拮抗卵菌持续存在。对种植季节结束时从根样中收集的寡雄腐霉菌株进行简单序列重复区间分析表明,在用于接种的三株菌株中,产生卵孢子量最少的菌株检出率为90%。单链构象多态性分析显示,随着时间的推移,真菌群落的成员数量和复杂性增加。除了在培养的最后3个月接种系统中瓜果腐霉(常见的番茄根际次要病原菌)种群减少外,接种寡雄腐霉的微生物生态系统与未处理的微生物生态系统之间没有显著差异。这些发现引发了一些有趣的问题,涉及使用产生激发子和生长素分子的寡雄腐霉菌株进行植物保护和生物防治的开发。

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