Cross Kingdom Metabolic Engineering Paradigm Elevating Sustainable Protein Production
ABSTRACT Confronting the dual crisis of escalating global protein demand and unsustainable agriculture necessitates transformative solutions. Here, we pioneer evolutionary insights from maize nitrogen optimization via asparagine synthetase (ASNS) to rewire metabolism in Pichia pastoris.
Yuanyuan Du +4 more
wiley +1 more source
Effects of <i>Lactiplantibacillus plantarum</i>, combined with konjac flour or lignocellulose, on silage quality and bacterial diversity of high-moisture forage rape silage. [PDF]
Du E, Zhao N, Zhu W, Guo W, Wei J.
europepmc +1 more source
Unveiling Bacterial Diversity in Portuguese Red Wine Effluents Through a Metagenomic Approach. [PDF]
Gomes AG +5 more
europepmc +1 more source
Bacterial Diversity and Succession in the Presence of Steel and Effects on Corrosion. [PDF]
Nolan L +8 more
europepmc +1 more source
Molecular characterization, identification and enzyme-producing potential of thermophilic bacterial diversity isolated from the Kars sugar factory. [PDF]
Alkaşi Ü, Uluçay O.
europepmc +1 more source
<i>Bifidobacterium breve</i> MN15965 Improved Bacterial Diversity, Short-Chain Fatty Acid Production, and Immune Activation in a Cyclophosphamide-Induced Immunosuppression Mouse Model. [PDF]
Liu T +13 more
europepmc +1 more source
Formation and sustenance mechanism of bacterial diversity in nutrient-deficient environment of indoor stadium. [PDF]
Sun L +6 more
europepmc +1 more source
Bacterial diversity turnover estimates in a continental river system
Demeter K +13 more
europepmc +1 more source
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Diversity of Bacterial Chemosensory Arrays
Trends in Microbiology, 2020Chemotaxis is crucial for the survival of bacteria, and the signaling systems associated with it exhibit a high level of evolutionary conservation. The architecture of the chemosensory array and the signal transduction mechanisms have been extensively studied in Escherichia coli.
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The glycerophospholipids phosphatidylethanolamine, phosphatidylglycerol (PG), and cardiolipin (CL) are major structural components of bacterial membranes. In some bacteria, phosphatidylcholine or phosphatidylinositol and its derivatives form part of the membrane.
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