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利用响应面法筛选和优化根瘤菌属菌株吲哚-3-乙酸的产量

Screening and optimization of indole-3-acetic acid production by Rhizobium sp. strain using response surface methodology.

作者信息

Lebrazi Sara, Fadil Mouhcine, Chraibi Marwa, Fikri-Benbrahim Kawtar

机构信息

Laboratory of Microbial Biotechnology, Sciences and Technology Faculty, Sidi Mohamed Ben Abdellah University, P.O. Box 2202, Fez, Morocco.

Physico-chemical laboratory of inorganic and organic materials, Materials Science Center (MSC), Ecole Normale Supérieure, Mohammed V University in Rabat, Rabat, Morocco.

出版信息

J Genet Eng Biotechnol. 2020 Jul 20;18(1):21. doi: 10.1186/s43141-020-00035-9.

Abstract

BACKGROUND

The production of indole-3-acetic acid (IAA) is an essential tool for rhizobacteria to stimulate and facilitate plant growth. For this, eighty rhizobial bacteria isolated from root nodules of Acacia cyanophylla grown in different regions of Morocco were firstly screened for their ability to produce IAA. Then, IAA production by a combination of isolates and the inoculation effect on the germination of Acacia cyanophylla seeds was studied using the best performing isolates in terms of IAA production. The best IAA producer bacterial isolate (I69) was selected to optimize IAA production using response surface methodology based on the central composite design.

RESULTS

Results showed that the majority of tested isolates were able to produce IAA with a relatively higher concentration of 135 μg/ml for the isolate I69, followed by isolates I22 and I75 with respective concentrations of 116 μg/ml and 105 μg/ml IAA. The IAA production and the seed germination rate were relatively increased by the synergistic effect of I69 and I22. Later, response surface methodology was used to determine optimal operating conditions leading to IAA production optimization. Thus, an incubation temperature of 36 °C, a pH of 6.5, an incubation time of 1 day, and respective tryptophan and NaCl concentrations of 1 g/l and 0.1 g/l were optimal parameters leading to 166 μg/ml IAA which was the maximal produced concentration.

CONCLUSION

The present study highlighted that IAA-producing rhizobacteria could be harnessed to improve plant growth. Furthermore, their production can be easily controlled using response surface methodology, which represents a very useful tool for optimization.

摘要

背景

吲哚 - 3 - 乙酸(IAA)的产生是根际细菌刺激和促进植物生长的重要手段。为此,首先对从摩洛哥不同地区生长的蓝叶金合欢根瘤中分离出的80株根瘤菌进行了IAA产生能力的筛选。然后,使用在IAA产生方面表现最佳的分离株,研究了分离株组合产生IAA的情况以及对蓝叶金合欢种子萌发的接种效果。基于中心复合设计,采用响应面法选择了最佳IAA产生细菌分离株(I69)来优化IAA的产生。

结果

结果表明,大多数测试分离株能够产生IAA,分离株I69的IAA浓度相对较高,为135μg/ml,其次是分离株I22和I75,IAA浓度分别为116μg/ml和105μg/ml。I69和I22的协同作用使IAA产量和种子发芽率相对提高。后来,使用响应面法确定导致IAA产量优化的最佳操作条件。因此,孵育温度为36°C、pH为6.5、孵育时间为1天、色氨酸和NaCl浓度分别为1g/l和0.1g/l是导致IAA产量达到最大产生浓度166μg/ml的最佳参数。

结论

本研究强调了产IAA的根际细菌可用于促进植物生长。此外,使用响应面法可以轻松控制它们的产生,这是一种非常有用的优化工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bbbf/7305276/8fc34ab1079a/43141_2020_35_Fig1_HTML.jpg

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