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在生菜上测试的立枯丝核菌体外拮抗剂:根际竞争力、生物防治效率及根际微生物群落反应

In vitro antagonists of Rhizoctonia solani tested on lettuce: rhizosphere competence, biocontrol efficiency and rhizosphere microbial community response.

作者信息

Adesina Modupe F, Grosch Rita, Lembke Antje, Vatchev Tzenko D, Smalla Kornelia

机构信息

Julius Kühn-Institut - Federal Research Centre for Cultivated Plants (JKI), D-38104 Braunschweig, Germany.

出版信息

FEMS Microbiol Ecol. 2009 Jul;69(1):62-74. doi: 10.1111/j.1574-6941.2009.00685.x. Epub 2009 May 22.

DOI:10.1111/j.1574-6941.2009.00685.x
PMID:19486156
Abstract

The rhizosphere competence of 15 in vitro antagonists of Rhizoctonia solani was determined 4 weeks after sowing inoculated lettuce seeds into nonsterile soil. Based on the colonization ability determined by selective plating, eight strains were selected for growth chamber experiments to determine their efficacy in controlling bottom rot caused by R. solani on lettuce. Although in the first experiment all antagonists colonized the rhizosphere of lettuce with CFU counts above 2 x 10(6) g(-1) of root fresh weight, only four isolates significantly reduced disease severity. In subsequent experiments involving these four antagonists, only Pseudomonas jessenii RU47 showed effective and consistent disease suppression. Plate counts and denaturing gradient gel electrophoresis (DGGE) fingerprints of Pseudomonas-specific gacA genes amplified from total community DNA confirmed that RU47 established as the dominant Pseudomonas population in the rhizosphere of inoculated lettuce plants. Furthermore, the DGGE fingerprint revealed that R. solani AG1-IB inoculation severely affected the bacterial and fungal community structure in the rhizosphere of lettuce and that these effects were much less pronounced in the presence of RU47. Although the exact mechanism of antagonistic activity and the ecology of RU47 remain to be further explored, our results suggest that RU47 is a promising agent to control bottom rot of lettuce.

摘要

将接种了生菜种子的无菌土壤播种四周后,测定了15种茄丝核菌体外拮抗菌的根际竞争力。根据选择性平板培养法测定的定殖能力,选择了8个菌株进行生长室试验,以确定它们对生菜上由茄丝核菌引起的根腐病的防治效果。虽然在第一个实验中,所有拮抗菌都定殖在生菜根际,每克根鲜重的CFU计数高于2×10(6),但只有4个分离株显著降低了病害严重程度。在随后涉及这4种拮抗菌的实验中,只有耶氏假单胞菌RU47表现出有效且一致的病害抑制作用。从总群落DNA中扩增出的假单胞菌特异性gacA基因的平板计数和变性梯度凝胶电泳(DGGE)指纹图谱证实,RU47在接种生菜植株的根际中成为优势假单胞菌种群。此外,DGGE指纹图谱显示,接种茄丝核菌AG1-IB严重影响了生菜根际的细菌和真菌群落结构,而在RU47存在的情况下,这些影响则不那么明显。虽然RU47的拮抗活性的确切机制及其生态学仍有待进一步探索,但我们的结果表明,RU47是控制生菜根腐病的一种有前景的药剂。

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