Results 1 to 10 of about 488 (105)

Model‐Guided Systematic Metabolic Engineering for Enhanced Spinosad Biosynthesis in Saccharopolyspora spinosa NHF132 [PDF]

open access: yesAdvanced Science
Spinosad (a mixture of spinosyns A and D) is a macrocyclic lactone green bioinsecticide produced by Saccharopolyspora spinosa. It is known for its high efficiency, low toxicity, and broad‐spectrum activity. Although numerous strategies have been employed
Shuliu Wang   +9 more
doaj   +3 more sources

Systematic Engineering of Proteases in Saccharopolyspora Spinosa Reveals Synergistic Enhancement of Spinosad Biosynthesis via Substrate Flux Optimization [PDF]

open access: yesAdvanced Science
Natural product biosynthesis is tightly coupled to nitrogen allocation. However, scalable strategies to amplify pathway outputs remain limited. Here, atmospheric and room temperature plasma (ARTP) mutagenesis of Saccharopolyspora spinosa yielded a high ...
Duo Jin   +9 more
doaj   +3 more sources

Effects of acuC on the growth development and spinosad biosynthesis of Saccharopolyspora spinosa [PDF]

open access: yesMicrobial Cell Factories, 2021
Background Acetoin utilization protein (acuC) is a type I histone deacetylase which is highly conserved in bacteria. The acuC gene is related to the acetylation/deacetylation posttranslational modification (PTM) system in S. spinosa.
Zhudong Liu   +9 more
doaj   +2 more sources

Comparative transcriptomic analysis of two Saccharopolyspora spinosa strains reveals the relationships between primary metabolism and spinosad production [PDF]

open access: yesScientific Reports, 2021
Saccharopolyspora spinosa is a well-known actinomycete for producing the secondary metabolites, spinosad, which is a potent insecticides possessing both efficiency and safety.
Yunpeng Zhang   +7 more
doaj   +2 more sources

Deciphering the Metabolic Pathway Difference Between Saccharopolyspora pogona and Saccharopolyspora spinosa by Comparative Proteomics and Metabonomics [PDF]

open access: yesFrontiers in Microbiology, 2020
Butenyl-spinosyn, a secondary metabolite produced by Saccharopolyspora pogona, exhibits strong insecticidal activity than spinosyn. However, the low synthesis capacity and unknown metabolic characteristics of butenyl-spinosyn in wild-type S. pogona limit
Jie Rang   +13 more
doaj   +2 more sources

rpoB and efp are stable candidate reference genes for quantitative real-time PCR analysis in Saccharopolyspora spinosa

open access: yesBiotechnology and Biotechnological Equipment, 2021
Spinosad (spinosyn A and spinosyn D), the secondary metabolite produced by Saccharopolyspora spinosa, is a potent insecticide with low effects on the environment and mammals.
Xiaomeng Liu   +7 more
exaly   +2 more sources

Enhancement of spinosad production in Saccharopolyspora spinosa by overexpression of the complete 74-kb spinosyn gene cluster [PDF]

open access: yesMicrobial Cell Factories
Background Spinosad, a secondary metabolite produced by Saccharopolyspora spinosa, is a polyketide macrolide insecticide with low toxicity and environmental friendliness.
Lu Gan   +6 more
doaj   +2 more sources

Chemical composition and bioinsecticidal activity of bioinputs produced by Saccharopolyspora spinosa [PDF]

open access: yesApplied Microbiology and Biotechnology
The growing demand for sustainable agricultural pest control solutions has increased the use of microbial bioinput. This study characterized an industrial bioinput produced by Saccharopolyspora spinosa, focusing on identifying metabolites and quantifying
Luís Felipe Rodrigues Costa   +12 more
doaj   +2 more sources

CRISPRi-mediated multigene downregulating redirects the metabolic flux to spinosad biosynthesis in Saccharopolyspora spinosa [PDF]

open access: yesSynthetic and Systems Biotechnology
Microorganisms are often likened to complex production workshops. In Saccharopolyspora spinosa (S. spinosa), the biosynthesis of spinosad is a production line within its intricate workshop.
Zirong Zhu   +9 more
doaj   +2 more sources

Enhanced triacylglycerol metabolism contributes to the efficient biosynthesis of spinosad in Saccharopolyspora spinosa [PDF]

open access: yesSynthetic and Systems Biotechnology
Triacylglycerol (TAG) is crucial for antibiotic biosynthesis derived from Streptomyces, as it serves as an important carbon source. In this study, the supplementation of exogenous TAG led to a 3.92-fold augmentation in spinosad production.
Li Cao   +9 more
doaj   +2 more sources

Home - About - Disclaimer - Privacy