Butyrate Activation inRhodopseudomonas palustrisNo. 82
OGATA, Takayuki, YAMANAKA, Kei
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It is well-known that non-sulfur photosynthetic bacteria such as Rhodopseudomonas palustris produces bioH2 through a photo-fermentation process.
Cristina Pintucci +3 more
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Synthetic Biology Tool Development Advances Predictable Gene Expression in the Metabolically Versatile Soil Bacterium Rhodopseudomonas palustris. [PDF]
Immethun CM, Kathol M, Changa T, Saha R.
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Optimisation of use of waste materials by Rhodopseudomonas palustris
A major challenge facing humanity is to combat anthropogenic climate change, and decrease our dependence on fossil fuels. One approach that has gained increasing popularity over the last few decades has been the generation of power by biodiesel, derived ...
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Harnessing Rhodopseudomonas palustris strains for salt stress mitigation in Arabidopsis thaliana. [PDF]
Roy S, Lin PY, Lu TJ, Chen JC, Liu CT.
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Phasin proteins expressed by <i>Rhodopseudomonas palustris</i> for bioplastic production. [PDF]
Brown BJ, Pechanova O, Pechan T.
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Improvement of Nutrient Uptake, Yield of Black Sesame (Sesamum indicum L.), and Alluvial Soil Fertility in Dyke by Spent Rice Straw from Mushroom Cultivation as Biofertilizer Containing Potent Strains of Rhodopseudomonas palustris. [PDF]
Khuong NQ +6 more
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Effects of <i>Rhodopseudomonas palustris</i> on the Rumen Microbiota of Leizhou Goats. [PDF]
Zheng L +5 more
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Complete Genome Sequence of Rhodopseudomonas palustris RCB100, an Anoxygenic Phototroph That Degrades 3-Chlorobenzoate. [PDF]
Haq IU, Fixen KR.
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Effects of Phosphorus-Solubilizing <i>Rhodopseudomonas palustris</i> VNW64, VNS89, TLS06, and VNW02 on Phosphorus Nutrient Dynamics and Yield of Hybrid Maize Grown in In-Dyke Alluvial Soil. [PDF]
Khuong NQ, Thao PTP.
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