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转录组分析结合抗氧化酶和土壤酶活性揭示了CFA菌株减轻黄瓜对羟基苯甲酸和阿魏酸胁迫的能力。

Transcriptome Profiling Combined With Activities of Antioxidant and Soil Enzymes Reveals an Ability of sp. CFA to Mitigate -Hydroxybenzoic and Ferulic Acid Stresses in Cucumber.

作者信息

Zhang Yue, Chen Chang-Xia, Feng Hui-Ping, Wang Xiu-Juan, Roessner Ute, Walker Robert, Cheng Zeng-Yan, An Yan-Qiu, Du Binghai, Bai Ji-Gang

机构信息

State Key Laboratory of Crop Biology, College of Life Sciences, Shandong Agricultural University, Tai'an, China.

Shandong Engineering Research Center of Plant-Microbial Restoration for Saline-Alkali Land, College of Life Sciences, Shandong Agricultural University, Tai'an, China.

出版信息

Front Microbiol. 2020 Oct 27;11:522986. doi: 10.3389/fmicb.2020.522986. eCollection 2020.

Abstract

Continuous-cropping leads to obstacles in crop productivity by the accumulation of -hydroxybenzoic acid (PHBA) and ferulic acid (FA). In this study, a strain CFA of was shown to have a higher PHBA- and FA-degrading ability in media and soil and the mechanisms underlying this were explored. Optimal conditions for PHBA and FA degradation by CFA were 0.2 g/l of PHBA and FA, 37°C, and pH 6.56. Using transcriptome analysis, complete pathways that converted PHBA and FA to acetyl coenzyme A were proposed in CFA. When CFA was provided with PHBA and FA, we observed upregulation of genes in the pathways and detected intermediate metabolites including vanillin, vanillic acid, and protocatechuic acid. Moreover, 4-hydroxybenzoate 3-monooxygenase and vanillate -demethylase were rate-limiting enzymes by gene overexpression. Knockouts of small non-coding RNA () genes, including , , , and , improved the degradation of PHBA and FA. When applied to cucumber-planted soil supplemented with PHBA and FA, CFA decreased PHBA and FA in soil. Furthermore, a reduction of superoxide radical, hydrogen peroxide, and malondialdehyde in cucumber was observed by activating superoxide dismutase, catalase, glutathione peroxidase, ascorbate peroxidase, glutathione reductase, dehydroascorbate reductase, and monodehydroascorbate reductase in seedlings, increasing the reduced glutathione and ascorbate in leaves, and inducing catalase, urease, and phosphatase in the rhizosphere. CFA has potential to mitigate PHBA and FA stresses in cucumber and alleviate continuous-cropping obstacles.

摘要

连作会因对羟基苯甲酸(PHBA)和阿魏酸(FA)的积累而导致作物生产力出现障碍。在本研究中,一株菌株CFA在培养基和土壤中表现出较高的PHBA和FA降解能力,并对其潜在机制进行了探究。CFA降解PHBA和FA的最佳条件为PHBA和FA浓度0.2 g/l、37°C以及pH 6.56。通过转录组分析,在CFA中提出了将PHBA和FA转化为乙酰辅酶A的完整途径。当为CFA提供PHBA和FA时,我们观察到该途径中的基因上调,并检测到包括香草醛、香草酸和原儿茶酸在内的中间代谢产物。此外,4-羟基苯甲酸3-单加氧酶和香草酸脱甲基酶是通过基因过表达的限速酶。敲除包括 、 、 和 在内的小非编码RNA()基因可提高PHBA和FA的降解率。当将CFA应用于添加了PHBA和FA的黄瓜种植土壤中时,CFA降低了土壤中的PHBA和FA。此外,通过激活幼苗中的超氧化物歧化酶、过氧化氢酶、谷胱甘肽过氧化物酶、抗坏血酸过氧化物酶、谷胱甘肽还原酶、脱氢抗坏血酸还原酶和单脱氢抗坏血酸还原酶,观察到黄瓜中超氧自由基、过氧化氢和丙二醛减少,叶片中还原型谷胱甘肽和抗坏血酸增加,根际中过氧化氢酶、脲酶和磷酸酶被诱导。CFA有潜力减轻黄瓜中PHBA和FA胁迫并缓解连作障碍。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/168d/7652996/3bbfbefa39e2/fmicb-11-522986-g001.jpg

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