The Experts below are selected from a list of 99 Experts worldwide ranked by ideXlab platform
Ana Zuniga - One of the best experts on this subject based on the ideXlab platform.
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an Engineered Device for indoleacetic acid production under quorum sensing signals enables cupriavidus pinatubonensis jmp134 to stimulate plant growth
ACS Synthetic Biology, 2018Co-Authors: Francisco De La Fuente, Corinne Lionne, Victor De Lorenzo, Ana Zuniga, Fernan Federici, Jerome Bonnet, Bernardo GonzalezAbstract:The environmental effects of chemical fertilizers and pesticides have encouraged the quest for new strategies to increase crop productivity with minimal impacts on the natural medium. Plant growth promoting rhizobacteria (PGPR) can contribute to this endeavor by improving fitness through better nutrition acquisition and stress tolerance. Using the neutral (non PGPR) rhizobacterium Cupriavidus pinatubonensis JMP134 as the host, we Engineered a regulatory forward loop that triggered the synthesis of the phytohormone indole-3-acetic acid (IAA) in a manner dependent on quorum sensing (QS) signals. Implementation of the Device in JMP134 yielded synthesis of IAA in an autoregulated manner, improving the growth of the roots of inoculated Arabidopsis thaliana. These results not only demonstrated the value of the designed genetic module, but also validated C. pinatubonensis JMP134 as a suitable vehicle for agricultural applications, as it is amenable to genetic manipulations.
Bernardo Gonzalez - One of the best experts on this subject based on the ideXlab platform.
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an Engineered Device for indoleacetic acid production under quorum sensing signals enables cupriavidus pinatubonensis jmp134 to stimulate plant growth
ACS Synthetic Biology, 2018Co-Authors: Francisco De La Fuente, Corinne Lionne, Victor De Lorenzo, Ana Zuniga, Fernan Federici, Jerome Bonnet, Bernardo GonzalezAbstract:The environmental effects of chemical fertilizers and pesticides have encouraged the quest for new strategies to increase crop productivity with minimal impacts on the natural medium. Plant growth promoting rhizobacteria (PGPR) can contribute to this endeavor by improving fitness through better nutrition acquisition and stress tolerance. Using the neutral (non PGPR) rhizobacterium Cupriavidus pinatubonensis JMP134 as the host, we Engineered a regulatory forward loop that triggered the synthesis of the phytohormone indole-3-acetic acid (IAA) in a manner dependent on quorum sensing (QS) signals. Implementation of the Device in JMP134 yielded synthesis of IAA in an autoregulated manner, improving the growth of the roots of inoculated Arabidopsis thaliana. These results not only demonstrated the value of the designed genetic module, but also validated C. pinatubonensis JMP134 as a suitable vehicle for agricultural applications, as it is amenable to genetic manipulations.
Chen Cao - One of the best experts on this subject based on the ideXlab platform.
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bipolar blue host emitter with unity quantum yield allows full exciton radiation in single emissive layer hybrid white organic light emitting diodes
ACS Applied Materials & Interfaces, 2019Co-Authors: Chen Cao, Wen-cheng Chen, Jia-xiong Chen, Lei Yang, Xue-zhi Wang, Hu Yang, Bin Huang, Ze-lin ZhuAbstract:Phosphorescence/fluorescence hybrid white organic light-emitting diodes (OLEDs) are highly appealing for solid-state lighting. One major challenge is how to fully utilize the electrically generated excitons for light output. Herein, an efficient strategy to realize full exciton radiation is successfully revealed by a judicious molecular design and suitable Device engineering. A blue host emitter TP-PPI is designed and synthesized, exhibiting a near 100% photoluminescence quantum yield and a high triplet energy level, enabling high-performance blue fluorescence and sensitization of a yellow phosphorescent dopant. Full exciton radiation in hybrid white OLEDs is demonstrated with a single emitting layer formed by doping a yellow phosphor (PO-01) into TP-PPI. Near 100% exciton utilization and state-of-the-art external quantum efficiency of 27.5% are achieved with the high-efficiency blue-emitting host and an electron-trap Engineered Device architecture.
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Bipolar Blue Host Emitter with Unity Quantum Yield Allows Full Exciton Radiation in Single-Emissive-Layer Hybrid White Organic Light-Emitting Diodes
2019Co-Authors: Chen Cao, Wen-cheng Chen, Jia-xiong Chen, Lei Yang, Xue-zhi Wang, Hu Yang, Bin Huang, Ze-lin Zhu, Qing-xiao Tong, Chun-sing LeeAbstract:Phosphorescence/fluorescence hybrid white organic light-emitting diodes (OLEDs) are highly appealing for solid-state lighting. One major challenge is how to fully utilize the electrically generated excitons for light output. Herein, an efficient strategy to realize full exciton radiation is successfully revealed by a judicious molecular design and suitable Device engineering. A blue host emitter TP-PPI is designed and synthesized, exhibiting a near 100% photoluminescence quantum yield and a high triplet energy level, enabling high-performance blue fluorescence and sensitization of a yellow phosphorescent dopant. Full exciton radiation in hybrid white OLEDs is demonstrated with a single emitting layer formed by doping a yellow phosphor (PO-01) into TP-PPI. Near 100% exciton utilization and state-of-the-art external quantum efficiency of 27.5% are achieved with the high-efficiency blue-emitting host and an electron-trap Engineered Device architecture
Victor De Lorenzo - One of the best experts on this subject based on the ideXlab platform.
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an Engineered Device for indoleacetic acid production under quorum sensing signals enables cupriavidus pinatubonensis jmp134 to stimulate plant growth
ACS Synthetic Biology, 2018Co-Authors: Francisco De La Fuente, Corinne Lionne, Victor De Lorenzo, Ana Zuniga, Fernan Federici, Jerome Bonnet, Bernardo GonzalezAbstract:The environmental effects of chemical fertilizers and pesticides have encouraged the quest for new strategies to increase crop productivity with minimal impacts on the natural medium. Plant growth promoting rhizobacteria (PGPR) can contribute to this endeavor by improving fitness through better nutrition acquisition and stress tolerance. Using the neutral (non PGPR) rhizobacterium Cupriavidus pinatubonensis JMP134 as the host, we Engineered a regulatory forward loop that triggered the synthesis of the phytohormone indole-3-acetic acid (IAA) in a manner dependent on quorum sensing (QS) signals. Implementation of the Device in JMP134 yielded synthesis of IAA in an autoregulated manner, improving the growth of the roots of inoculated Arabidopsis thaliana. These results not only demonstrated the value of the designed genetic module, but also validated C. pinatubonensis JMP134 as a suitable vehicle for agricultural applications, as it is amenable to genetic manipulations.
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An Engineered Device for Indoleacetic Acid Production under Quorum Sensing Signals Enables Cupriavidus pinatubonensis JMP134 To Stimulate Plant Growth
2018Co-Authors: Ana Zúñiga, Francisco De La Fuente, Fernán Federici, Corinne Lionne, Jérome Bônnet, Victor De Lorenzo, Bernardo GonzálezAbstract:The environmental effects of chemical fertilizers and pesticides have encouraged the quest for new strategies to increase crop productivity with minimal impacts on the natural medium. Plant growth promoting rhizobacteria (PGPR) can contribute to this endeavor by improving fitness through better nutrition acquisition and stress tolerance. Using the neutral (non PGPR) rhizobacterium Cupriavidus pinatubonensis JMP134 as the host, we Engineered a regulatory forward loop that triggered the synthesis of the phytohormone indole-3-acetic acid (IAA) in a manner dependent on quorum sensing (QS) signals. Implementation of the Device in JMP134 yielded synthesis of IAA in an autoregulated manner, improving the growth of the roots of inoculated Arabidopsis thaliana. These results not only demonstrated the value of the designed genetic module, but also validated C. pinatubonensis JMP134 as a suitable vehicle for agricultural applications, as it is amenable to genetic manipulations
Francisco De La Fuente - One of the best experts on this subject based on the ideXlab platform.
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an Engineered Device for indoleacetic acid production under quorum sensing signals enables cupriavidus pinatubonensis jmp134 to stimulate plant growth
ACS Synthetic Biology, 2018Co-Authors: Francisco De La Fuente, Corinne Lionne, Victor De Lorenzo, Ana Zuniga, Fernan Federici, Jerome Bonnet, Bernardo GonzalezAbstract:The environmental effects of chemical fertilizers and pesticides have encouraged the quest for new strategies to increase crop productivity with minimal impacts on the natural medium. Plant growth promoting rhizobacteria (PGPR) can contribute to this endeavor by improving fitness through better nutrition acquisition and stress tolerance. Using the neutral (non PGPR) rhizobacterium Cupriavidus pinatubonensis JMP134 as the host, we Engineered a regulatory forward loop that triggered the synthesis of the phytohormone indole-3-acetic acid (IAA) in a manner dependent on quorum sensing (QS) signals. Implementation of the Device in JMP134 yielded synthesis of IAA in an autoregulated manner, improving the growth of the roots of inoculated Arabidopsis thaliana. These results not only demonstrated the value of the designed genetic module, but also validated C. pinatubonensis JMP134 as a suitable vehicle for agricultural applications, as it is amenable to genetic manipulations.
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An Engineered Device for Indoleacetic Acid Production under Quorum Sensing Signals Enables Cupriavidus pinatubonensis JMP134 To Stimulate Plant Growth
2018Co-Authors: Ana Zúñiga, Francisco De La Fuente, Fernán Federici, Corinne Lionne, Jérome Bônnet, Victor De Lorenzo, Bernardo GonzálezAbstract:The environmental effects of chemical fertilizers and pesticides have encouraged the quest for new strategies to increase crop productivity with minimal impacts on the natural medium. Plant growth promoting rhizobacteria (PGPR) can contribute to this endeavor by improving fitness through better nutrition acquisition and stress tolerance. Using the neutral (non PGPR) rhizobacterium Cupriavidus pinatubonensis JMP134 as the host, we Engineered a regulatory forward loop that triggered the synthesis of the phytohormone indole-3-acetic acid (IAA) in a manner dependent on quorum sensing (QS) signals. Implementation of the Device in JMP134 yielded synthesis of IAA in an autoregulated manner, improving the growth of the roots of inoculated Arabidopsis thaliana. These results not only demonstrated the value of the designed genetic module, but also validated C. pinatubonensis JMP134 as a suitable vehicle for agricultural applications, as it is amenable to genetic manipulations