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利用拮抗和内生伯克霍尔德菌 Cs5 对灰霉病菌进行生物防治,保护葡萄种苗。

Biological control of Botrytis cinerea using the antagonistic and endophytic Burkholderia cepacia Cs5 for vine plantlet protection.

机构信息

Equipe « Biopesticides » L.P.A.P., Centre de Biotechnologie de Sfax, Université de Sfax, Tunisie.

出版信息

Can J Microbiol. 2011 Nov;57(11):896-901. doi: 10.1139/w11-081. Epub 2011 Oct 17.

Abstract

Antifungal activity of the Burkholderia cepacia Cs5 was tested in vitro and in vivo for the control of Botrytis cinerea . Bacterial biomass was significantly improved by the amendment of ZnSO(4), Mo(7)(NH(4))(6)O(24), and mannitol to the NBY medium; consequently, the amount of the secreted fungicides was increased. The quantification of B. cinerea inhibition, in liquid and solid conditions, showed an important sensitivity of this fungus to the strain Cs5 fungicides. Microscopic monitoring impact of these fungicides on mycelium structure showed an important increase in their diameter and ramifications in the presence of 0.75% supernatant. For the in vivo application of the strain Cs5, Vitis vinifera plantlets were inoculated with a Cs5 bacterial suspension, then with B. cinerea spores. The plantlets protection was total and durable when these two inoculations were made 3 weeks apart, which is the time for the endophytic bacterium to colonize the plantlets up to the top leaves. This protection is due to Cs5 antagonism and the elicitation of the plantlets self-defense via the root overgrowth.

摘要

生防细菌伯克霍尔德氏菌 Cs5 对灰葡萄孢的抑菌活性的研究

为了控制灰葡萄孢,我们在体外和体内测试了生防细菌伯克霍尔德氏菌 Cs5 的抑菌活性。在 NBY 培养基中添加 ZnSO4、Mo(7)(NH4)(6)O24 和甘露醇可以显著提高细菌生物量,从而增加了分泌的杀菌剂的数量。在液体和固体条件下,定量分析灰葡萄孢的抑制作用,结果表明该真菌对 Cs5 菌株杀菌剂高度敏感。显微镜监测这些杀菌剂对菌丝体结构的影响表明,在存在 0.75%上清液的情况下,其直径和分枝明显增加。为了在体内应用 Cs5 菌株,我们将葡萄幼苗接种 Cs5 细菌悬浮液,然后再接种灰葡萄孢孢子。当这两次接种相隔 3 周时,幼苗的保护是完全和持久的,这是内生细菌定植到幼苗顶端叶片所需的时间。这种保护是由于 Cs5 的拮抗作用和通过根过度生长引发植物自身防御。

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