Two bacterial strains, 01-96(T) and 15-51(T), isolated from rhizosphere soil of Chinese cabbage (Brassica campestris) were characterized by using a polyphasic approach. 16S rRNA gene sequence analysis showed that strain 01-96(T) was phylogenetically related most closely to Pedobacter suwonensis 15-52(T) and Pedobacter roseus CL-GP80(T) (96.7 and 96.7% similarity, respectively), and strain 15-51(T) to Pedobacter borealis G-1(T) and P. suwonensis 15-52(T) (97.2 and 97.1%, respectively). However, levels of DNA-DNA relatedness between strain 15-51(T) and P. borealis KACC 14287(T) and P. suwonensis KACC 11317(T) were low (<50%). The G+C content of the genomic DNA was 37.8 mol% for strain 01-96(T) and 38.6 mol% for strain 15-51(T). The major fatty acids of the two strains were iso-C(17:0) 3-OH, iso-C(15:0) and summed feature 3 (iso-C(15:0) 2-OH and/or C(16:1)ω7c). The results of DNA-DNA hybridization and phenotypic data showed that strains 01-96(T) and 15-51(T) could be distinguished from their closest phylogenetic relatives, and that these strains represented two novel species of the genus Pedobacter, for which the names Pedobacter rhizosphaerae sp. nov. (type strain 01-96(T) =KACC 14938(T) =NBRC 107690(T)) and Pedobacter soli sp. nov. (type strain 15-51(T) =KACC 14939(T) =NBRC 107691(T)) are proposed.
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http://dx.doi.org/10.1099/ijs.0.026781-0 | DOI Listing |
Plants (Basel)
December 2024
Plant Physiology, Pharmaceutical and Health Sciences Department, Faculty of Pharmacy, San Pablo-CEU Universities, 28668 Boadilla del Monte, Spain.
An alkaline pH in soils reduces Fe availability, limiting Fe uptake, compromising plant growth, and showing chlorosis due to a decrease in chlorophyll content. To achieve proper Fe homeostasis, dicotyledonous plants activate a battery of strategies involving not only Fe absorption mechanisms, but also releasing phyto-siderophores and recruiting siderophore-producing bacterial strains. A screening for siderophore-producing bacterial isolates from the rhizosphere of was carried out, resulting in two strains, Z8.
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December 2024
Laboratorio de Fisiología Molecular de Plantas, Centro de Investigación en Biotecnología, Universidad Autónoma del Estado de Morelos, Av. Universidad No. 1001, Col Chamilpa, Cuernavaca 62209, Mexico.
Bacteria associated with plants, whether rhizospheric, epiphytic, or endophytic, play a crucial role in plant productivity and health by promoting growth through complex mechanisms known as plant growth promoters. This study aimed to isolate, characterize, identify, and evaluate the potential of endophytic bacteria from the resurrection plant in enhancing plant growth, using ecotype Col. 0 as a model system.
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December 2024
Departamento de Microbiología, Escuela Nacional de Ciencias Biológicas, Instituto Politécnico Nacional, Prol. Carpio y Plan de Ayala S/N, Mexico City CP 11430, Mexico.
is a genus of Gram-positive bacteria with high GC content. It remains attractive for studying and discovering new antibiotics, antifungals, and chemotherapeutics. genomes can contain more than 30 cryptic and expressed biosynthetic gene clusters (BGC) encoding secondary metabolites.
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December 2024
Department of Plant Pathology and Crop Physiology, Louisiana State University Agricultural Center, Baton Rouge, LA 70803, USA.
Drought stress has a significant impact on agricultural productivity, affecting key crops such as soybeans, the second most widely cultivated crop in the United States. Endophytic and rhizospheric microbial diversity analyses were conducted with soybean plants cultivated during the 2023 growing season amid extreme weather conditions of prolonged high temperatures and drought in Louisiana. Specifically, surviving and non-surviving soybean plants were collected from two plots of a Louisiana soybean field severely damaged by extreme heat and drought conditions in 2023.
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December 2024
Center for Molecular and Cellular Biology, 121205 Moscow, Skolkovo, Russia.
In our large-scale search for antimicrobial-producing bacteria, we isolated an actinomycete strain from rhizospheric soil of . The strain designated BP-8 showed noticeable antibacterial activity. BP-8 was subjected to a whole-genome analysis via a polyphasic taxonomy approach, and its antibacterial metabolite was identified by HRLS-MS.
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