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161
Unexpected Main-Chain-Mediated and Neutral-Intermediate-Involved Catalytic Reaction in a High-Fidelity <i>ent</i>-Neoabietadiene Synthase
Έκδοση 2024“…So far, the catalytic mechanisms of LRD diTPSs still remain largely unknown. …”
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162
Unexpected Main-Chain-Mediated and Neutral-Intermediate-Involved Catalytic Reaction in a High-Fidelity <i>ent</i>-Neoabietadiene Synthase
Έκδοση 2024“…So far, the catalytic mechanisms of LRD diTPSs still remain largely unknown. …”
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163
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164
Dataset - Research Project: AI and the Far-Right riots in the UK
Έκδοση 2025“…<p dir="ltr">This dataset was used for the research project <b>AI and the Far-Right Riots in the UK</b>, funded by the LSE Urgency Grant Scheme and hosted by the Department of Media and Communications. …”
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165
Immunofluorescence staining of the Quarter-DMEK graft with focus on far periphery.
Έκδοση 2019“…Grafts were imaged after 17(±3) days in gel culture and subsequent gel removal 200x magnification.</p>…”
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166
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167
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169
Data_Sheet_2_The ABCB7-Like Transporter PexA in Rhodobacter capsulatus Is Involved in the Translocation of Reactive Sulfur Species.PDF
Έκδοση 2019“…We further suggest that this ABC-transporter in R. capsulatus is involved in the formation and export of polysulfide species to the periplasm.…”
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170
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174
Image_3_A Rice Autophagy Gene OsATG8b Is Involved in Nitrogen Remobilization and Control of Grain Quality.TIF
Έκδοση 2020“…The autophagic role of OsATG8b was experimentally confirmed, and it was concluded that OsATG8b-mediated autophagy is involved in N recycling to grains and contributes to the grain quality, indicating that OsATG8b may be a potential gene for molecular breeding and cultivation of rice.…”
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175
Image_1_A Rice Autophagy Gene OsATG8b Is Involved in Nitrogen Remobilization and Control of Grain Quality.TIF
Έκδοση 2020“…The autophagic role of OsATG8b was experimentally confirmed, and it was concluded that OsATG8b-mediated autophagy is involved in N recycling to grains and contributes to the grain quality, indicating that OsATG8b may be a potential gene for molecular breeding and cultivation of rice.…”
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176
Image_2_A Rice Autophagy Gene OsATG8b Is Involved in Nitrogen Remobilization and Control of Grain Quality.TIF
Έκδοση 2020“…The autophagic role of OsATG8b was experimentally confirmed, and it was concluded that OsATG8b-mediated autophagy is involved in N recycling to grains and contributes to the grain quality, indicating that OsATG8b may be a potential gene for molecular breeding and cultivation of rice.…”
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177
Image_8_A Rice Autophagy Gene OsATG8b Is Involved in Nitrogen Remobilization and Control of Grain Quality.JPEG
Έκδοση 2020“…The autophagic role of OsATG8b was experimentally confirmed, and it was concluded that OsATG8b-mediated autophagy is involved in N recycling to grains and contributes to the grain quality, indicating that OsATG8b may be a potential gene for molecular breeding and cultivation of rice.…”
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178
Image_7_A Rice Autophagy Gene OsATG8b Is Involved in Nitrogen Remobilization and Control of Grain Quality.TIF
Έκδοση 2020“…The autophagic role of OsATG8b was experimentally confirmed, and it was concluded that OsATG8b-mediated autophagy is involved in N recycling to grains and contributes to the grain quality, indicating that OsATG8b may be a potential gene for molecular breeding and cultivation of rice.…”
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Image_9_A Rice Autophagy Gene OsATG8b Is Involved in Nitrogen Remobilization and Control of Grain Quality.TIF
Έκδοση 2020“…The autophagic role of OsATG8b was experimentally confirmed, and it was concluded that OsATG8b-mediated autophagy is involved in N recycling to grains and contributes to the grain quality, indicating that OsATG8b may be a potential gene for molecular breeding and cultivation of rice.…”
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Table_1_A Rice Autophagy Gene OsATG8b Is Involved in Nitrogen Remobilization and Control of Grain Quality.DOC
Έκδοση 2020“…The autophagic role of OsATG8b was experimentally confirmed, and it was concluded that OsATG8b-mediated autophagy is involved in N recycling to grains and contributes to the grain quality, indicating that OsATG8b may be a potential gene for molecular breeding and cultivation of rice.…”