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从辣椒植株中分离出的细菌对 的胞外酶活性及其生物防治效果的体外评价

In Vitro Evaluation of Extracellular Enzyme Activity and Its Biocontrol Efficacy of Bacterial Isolates from Pepper Plants for the Management of .

机构信息

Department of Microbial, Cellular and Molecular Biology), Addis Ababa University, Addis Ababa, Ethiopia.

Department of Zoological Science, Addis Ababa University, Addis Ababa, Ethiopia.

出版信息

Biomed Res Int. 2022 Sep 26;2022:6778352. doi: 10.1155/2022/6778352. eCollection 2022.

Abstract

is one of the most devastating fungal pathogens, causing severe diseases that lead to economic loss in the pepper industry. As a result of the infections, the chemical approach is becoming more popular. Biological control, on the other hand, is better suited to controlling fungal pathogens. The biological control approach significantly reduces the problems associated with chemical applications while restoring natural environmental balance. As a result, the overall findings indicate that certain bacterial isolates play a beneficial role in lytic enzyme production and biocontrol activities against . Bacterial isolates obtained from the pepper plants were screened for lytic enzyme and anti-oomycete activity against in Ethiopia. Sixty bacterial isolates were isolated and tested against . From these bacterial isolates, different inhibition zones and hydrolytic enzyme production were detected. Biochemical tests using an automated machine (MALDI-TOF, VITEK 2 compact and 16S rRNA) revealed that three of them, AAUSR23, AAULE41, and AAULE51, showed a high inhibition zone and high production of hydrolytic enzymes and were identified as (AAUSR23), (AAULE41), and undetermined (AAULE51). The effects of diffusable metabolite isolate AAULE51 has a 66.7% inhibition zone against , followed by AAULE41 and AAUSR23, which have 59.7% and 14.1% inhibition zones, respectively. These bacterial isolates showed high production of hydrolytic enzymes like protease, cellulase, chitinase, and lipase (5-34 diameter of inhibition zone). As a result, the overall findings show that selected bacterial isolates play a beneficial role in lytic enzyme production and for their biocontrol activities against .

摘要

是一种极具破坏性的真菌病原体,可导致严重疾病,给辣椒产业造成经济损失。因此,化学方法变得越来越流行。另一方面,生物防治更适合控制真菌病原体。生物防治方法在很大程度上减少了与化学应用相关的问题,同时恢复了自然环境的平衡。因此,总体研究结果表明,某些细菌分离株在溶菌酶的产生和对 的生物防治活性方面发挥了有益作用。从埃塞俄比亚的辣椒植物中筛选出具有溶菌酶和抗卵菌活性的细菌分离株,以对抗 。从这些细菌分离株中,检测到不同的抑菌圈和水解酶产生。使用自动机器(MALDI-TOF、VITEK 2 compact 和 16S rRNA)进行的生化测试表明,其中 3 种,AAUSR23、AAULE41 和 AAULE51,表现出高抑菌圈和高水解酶产生能力,并被鉴定为 (AAUSR23)、 (AAULE41)和未确定(AAULE51)。扩散代谢物分离株 AAULE51 的作用对 有 66.7%的抑制圈,其次是 AAULE41 和 AAUSR23,它们的抑制圈分别为 59.7%和 14.1%。这些细菌分离株表现出高水解酶的产生,如蛋白酶、纤维素酶、几丁质酶和脂肪酶(抑制圈直径为 5-34)。因此,总体研究结果表明,所选的细菌分离株在溶菌酶的产生和对 的生物防治活性方面发挥了有益作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e647/9529479/41e0a6ff8858/BMRI2022-6778352.001.jpg

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