Tef作物苗期根际定殖植物生长促进菌(PGP)的分离及生化特性

Z. Tsegaye, JBirhanu Gizaw, G. Tefera, A. Feleke, J. N. Qureshi, S. Chaniyalew, T. Alemu, F. Assefa
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Among these 40.5% isolates were positive for phosphate solubilization. 36% were positive for IAA production, 4.5% were positive for ammonia production, 19 % were positive for (EXPS), 15.5% were positive for protease production, 12.5% were positive for HCN productions, 9.5 % were positive for cellulase production, 4% were positive for amylase production, 3.5% were positive for chitinase production. For abiotic stress tolerance test, all of the isolates were grown well at 20oc and 30oc and neutral pH, 27% isolates were grown well at 4oc, 25.5% grew at 40oc, 25.5% were grown well on pH-9 and pH-11, 23.5% were tolerated pH-5, 3.5% grew at 50oc and 60oc, 13.5% were grown well on 5% NaCl (w/v), 3.5% were grown well on 10 and 15% NaCl (w/v), which indicated these isolates can survive in some extreme conditions. Totally 15 bacterial species having PGP traits, biocontrol properties, and abiotic stress tolerance ability were identifi ed using the Biolog bacterial identifi cation system. 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引用次数: 36

摘要

使用新型PGPR作为生物接种剂是一种可替代的可持续农业实践,可以改善土壤健康,提高粮食质量,提高作物生产力,保护生物多样性。本研究的目的是分离和鉴定在苗期定植在根际的PGP细菌。为此,在奥罗米亚州东谢瓦地区采集了426份tef (Eragrostis tef)根际土壤和根系样本。分离了200个形态不同的细菌纯菌落,并对其PGP性状和生物防治性能进行了筛选。其中40.5%的菌株对磷酸盐增溶呈阳性。IAA产酶阳性率为36%,氨产酶阳性率为4.5%,(EXPS)产酶阳性率为19%,蛋白酶产酶阳性率为15.5%,HCN产酶阳性率为12.5%,纤维素酶产酶阳性率为9.5%,淀粉酶产酶阳性率为4%,几丁质酶产酶阳性率为3.5%。在非生物胁迫耐受性试验中,所有菌株在20℃、30℃和中性pH条件下均能良好生长,27%的菌株在4℃条件下生长良好,25.5%的菌株在40℃条件下生长良好,25.5%的菌株在pH-9和pH-11条件下生长良好,23.5%的菌株在pH-5条件下生长良好,3.5%的菌株在50℃和60℃条件下生长良好,13.5%的菌株在5% NaCl (w/v)条件下生长良好,3.5%的菌株在10和15% NaCl (w/v)条件下生长良好,表明这些菌株在一些极端条件下都能存活。利用Biolog细菌鉴定系统,共鉴定出15种具有PGP性状、生物防治性能和非生物胁迫耐受能力的细菌。其中,大多数鉴定的PGPR利用了植物根系分泌物的主要成分碳水化合物、羧酸和氨基酸。上述结果表明,PGPR可以作为生物肥料和生物防治剂,取代农药,提高作物生产力。因此,这些品种可以进一步配制并用于温室和田间应用。Zerihun Tsegaye*, Birhanu Gizaw, Genene Tefera, Adey Feleke, Solomon Chaniyalew, Tesfaye Alemu和Fasil Assefa,埃塞俄比亚亚的斯亚贝巴大学微生物、细胞和分子生物学学系和创新与技术部,埃塞俄比亚*Zerihun Tsegaye,埃塞俄比亚生物多样性研究所微生物、细胞和分子生物学系,埃塞俄比亚,电话:251+936451046;传真:# 0116613722;邮箱:zerihuntsegaye1970@gmail.com提交时间:2019年2月1日批准时间:2019年3月27日发布时间:2019年3月28日版权所有:©2019 Tsegaye Z, et al.。这是一篇在知识共享署名许可下发布的开放获取文章,该许可允许在任何媒体上不受限制地使用、分发和复制,只要原始作品被适当引用
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Isolation and biochemical characterization of Plant Growth Promoting (PGP) bacteria colonizing the rhizosphere of Tef crop during the seedling stage
The use of novel PGPR as bio inoculant is an alternative sustainable agricultural practice to improve soil health, grain quality, increase crop productivity, and conserve biodiversity. The aim of this study is to isolate, and characterized PGP bacteria colonizing tef rhizosphere during the seedling stage. For this concern, 426 samples of tef (Eragrostis tef) rhizosphere soils and roots were collected from East Shewa zone, Oromia regional state. 200 morphologically different bacterial pure colonies were isolated and screened for their PGP traits and biocontrol properties. Among these 40.5% isolates were positive for phosphate solubilization. 36% were positive for IAA production, 4.5% were positive for ammonia production, 19 % were positive for (EXPS), 15.5% were positive for protease production, 12.5% were positive for HCN productions, 9.5 % were positive for cellulase production, 4% were positive for amylase production, 3.5% were positive for chitinase production. For abiotic stress tolerance test, all of the isolates were grown well at 20oc and 30oc and neutral pH, 27% isolates were grown well at 4oc, 25.5% grew at 40oc, 25.5% were grown well on pH-9 and pH-11, 23.5% were tolerated pH-5, 3.5% grew at 50oc and 60oc, 13.5% were grown well on 5% NaCl (w/v), 3.5% were grown well on 10 and 15% NaCl (w/v), which indicated these isolates can survive in some extreme conditions. Totally 15 bacterial species having PGP traits, biocontrol properties, and abiotic stress tolerance ability were identifi ed using the Biolog bacterial identifi cation system. Among these, the majority of the identifi ed PGPR have utilized carbohydrate, carboxylic acid, and amino acid, which are the main components of plant root exudates. The above results indicated that thus PGPR can be used as biofertilizers as well as biocontrol agents to replace agrochemicals to improve crop productivity. Hence, these species can be further formulated and used for greenhouse and fi eld applications. Research Article Isolation and biochemical characterization of Plant Growth Promoting (PGP) bacteria colonizing the rhizosphere of Tef crop during the seedling stage Zerihun Tsegaye*, Birhanu Gizaw, Genene Tefera, Adey Feleke, Solomon Chaniyalew, Tesfaye Alemu and Fasil Assefa Addis Ababa University, Department of Microbial, Cellular and Molecular Biology and Ministry of Innovation and Technology, Ethiopia *Address for Correspondence: Zerihun Tsegaye, Department of Microbial, Cellular and Molecular Biology, Ethiopian Biodiversity Institute, Ethiopia, Tel: 251+936451046; Fax: #0116613722; Email: zerihuntsegaye1970@gmail.com Submitted: 01 February 2019 Approved: 27 March 2019 Published: 28 March 2019 Copyright: © 2019 Tsegaye Z, et al. This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited
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