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深色栗钙土来源酵母的促植物生长和抗真菌活性。

Plant growth-promoting and antifungal activity of yeasts from dark chestnut soil.

机构信息

Faculty of Biology and Biotechnology, al-Farabi Kazakh National University, Almaty 050038, Kazakhstan.

Research Institute of Biology and Biotechnology Problems, Almaty 050038, Kazakhstan.

出版信息

Microbiol Res. 2015 Jun;175:78-83. doi: 10.1016/j.micres.2015.03.008. Epub 2015 Mar 21.

Abstract

538 yeast strains were isolated from dark chestnut soil collected from under the plants of the legume family (Fabaceae). The greatest number of microorganisms is found at soil depth 10-20 cm. Among the 538 strains of yeast 77 (14.3%) strains demonstrated the ability to synthesize IAA. 15 strains were attributed to high IAA-producing yeasts (above 10 μg/ml). The most active strains were YA05 with 51.7 ± 2.1 μg/ml of IAA and YR07 with 45.3 ± 1.5 μg/ml. In the study of effect of incubation time on IAA production the maximum accumulation of IAA coincided with maximum rates of biomass: at 120 h for YR07 and at 144 h for strain YA05. IAA production increased when medium was supplemented with the L-tryptophan. 400 μg/ml of L-tryptophan showed maximum IAA production. 10 strains demonstrated the ability to inhibit the growth and development of phytopathogenic fungi. YA05 and YR07 strains formed the largest zones of inhibition compared to the other strains--from 21.6 ± 0.3 to 30.6 ± 0.5 mm. Maximum zone of inhibition was observed for YA05 against Phytophtora infestans and YR07 strains against Fusarium graminearum. YA05 and YR07 strains were identified as Aureobasidium pullulans YA05 (GenBank accession No JF160955) and Rhodotorula mucilaginosa YR07 (GenBank accession No JF160956).

摘要

从豆科植物(Fabaceae)下采集的暗栗色土壤中分离出 538 株酵母菌株。在 10-20cm 的土壤深处发现了最多的微生物。在 538 株酵母菌株中,有 77 株(14.3%)具有合成 IAA 的能力。15 株被归为高产 IAA 的酵母(高于 10μg/ml)。最活跃的菌株是 YA05,其 IAA 产量为 51.7±2.1μg/ml,YR07 的 IAA 产量为 45.3±1.5μg/ml。在研究培养时间对 IAA 产量的影响时,发现最大生物量时同时达到了 IAA 的最大积累量:YR07 为 120h,YA05 为 144h。当培养基中添加 L-色氨酸时,IAA 的产量增加。400μg/ml 的 L-色氨酸显示出最大的 IAA 产量。有 10 株菌株表现出抑制植物病原菌真菌生长和发育的能力。与其他菌株相比,YA05 和 YR07 菌株形成的抑制区最大,为 21.6±0.3 至 30.6±0.5mm。YA05 对马铃薯晚疫病菌和 YR07 对禾谷镰刀菌的抑制区最大。YA05 和 YR07 菌株被鉴定为出芽短梗霉 YA05(GenBank 登录号 JF160955)和粘红酵母 YR07(GenBank 登录号 JF160956)。

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