Difference between revisions of "Main Page"
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− | We are currently looking for a new postdoc. See our [[Maeda_Lab: | + | We are currently looking for a new postdoc. See our [[Maeda_Lab:Lab_Members | '''Team''' page]]. |
<h3><font>Harnessing the Power of Plants to Combat Climate Change</font></h3> | <h3><font>Harnessing the Power of Plants to Combat Climate Change</font></h3> | ||
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<h3><font>Lab News</font></h3> | <h3><font>Lab News</font></h3> | ||
+ | *<font face=arial color=orangered size=1.9> '''''NEW''''' </font> Our COVID project by '''Drew, Madelyn, Caroline, Anika, Megan and Elaine''', with [https://thebustalab.github.io/ '''the Luke Busta group'''], is finally published at [http://doi.org/10.1111/tpj.16906 '''''Plant J.''''']! We generated the first version of '''phylochemical map'''! | ||
*<font face=arial color=orangered size=1.9> '''''NEW''''' </font> 2024 June '''Kaan''''s aminotransferase evolution paper is now pubished in [https://doi.org/10.1073/pnas.2405524121 '''''PNAS''''']! | *<font face=arial color=orangered size=1.9> '''''NEW''''' </font> 2024 June '''Kaan''''s aminotransferase evolution paper is now pubished in [https://doi.org/10.1073/pnas.2405524121 '''''PNAS''''']! | ||
*<font face=arial color=orangered size=1.9> '''''NEW''''' </font> 2024 March '''Soyoung''''s Syn Biol paper on push-pull TyrA-betalain production is now at [https://academic.oup.com/plphys/advance-article-abstract/doi/10.1093/plphys/kiae166/7631229?redirectedFrom=fulltext '''''Plant Physiol.'''''] ! | *<font face=arial color=orangered size=1.9> '''''NEW''''' </font> 2024 March '''Soyoung''''s Syn Biol paper on push-pull TyrA-betalain production is now at [https://academic.oup.com/plphys/advance-article-abstract/doi/10.1093/plphys/kiae166/7631229?redirectedFrom=fulltext '''''Plant Physiol.'''''] ! | ||
*2023 Nov '''Jorge''''s paper on grass DHS and TyrA regulation is now at [https://www.nature.com/articles/s41467-023-42587-7?utm_source=rct_congratemailt&utm_medium=email&utm_campaign=oa_20231109&utm_content=10.1038/s41467-023-42587-7#Sec25 '''''Nature Commun.''''']! | *2023 Nov '''Jorge''''s paper on grass DHS and TyrA regulation is now at [https://www.nature.com/articles/s41467-023-42587-7?utm_source=rct_congratemailt&utm_medium=email&utm_campaign=oa_20231109&utm_content=10.1038/s41467-023-42587-7#Sec25 '''''Nature Commun.''''']! | ||
− | *2023 Aug The Maeda lab will be a part of a [https://plantresilience.msu.edu/pri-news/072023_PMN_NSF_PR.aspx '''new NSF PGRP grant'''], with Drs. Sue Rhee (MSU) and Phillip Zerbe (UC Davis) groups to expand the [https://plantcyc.org/ '''Plant Metabolic Network (PMN)''] | + | *2023 Aug The Maeda lab will be a part of a [https://plantresilience.msu.edu/pri-news/072023_PMN_NSF_PR.aspx '''new NSF PGRP grant'''], with Drs. Sue Rhee (MSU) and Phillip Zerbe (UC Davis) groups to expand the [https://plantcyc.org/ '''Plant Metabolic Network (PMN)''], where we will characterize aminotransferase enzyme family from multiple plant species. |
*2022 Nov Our team has been nominated to the 2022 WARF Innovation Awards and selected to the six finalists. Here it the [https://www.warf.org/videos/supercharging-photosynthesis-to-increase-carbon-storage-aromatics-production-2022-warf-innovation-awards-nominee/ nomination video at WARF]. | *2022 Nov Our team has been nominated to the 2022 WARF Innovation Awards and selected to the six finalists. Here it the [https://www.warf.org/videos/supercharging-photosynthesis-to-increase-carbon-storage-aromatics-production-2022-warf-innovation-awards-nominee/ nomination video at WARF]. | ||
*2022 June '''Kaan''''s Aminotransferase method paper is on [https://www.sciencedirect.com/science/article/abs/pii/S0076687922002981?via%3Dihub '''''Meth. Enzymol.''''']! | *2022 June '''Kaan''''s Aminotransferase method paper is on [https://www.sciencedirect.com/science/article/abs/pii/S0076687922002981?via%3Dihub '''''Meth. Enzymol.''''']! |
Revision as of 10:33, 8 July 2024
We are currently looking for a new postdoc. See our Team page. Harnessing the Power of Plants to Combat Climate ChangePlants are quiet but amazing. Every year, plants absorb an astonishing amount of carbon dioxide (CO2) from the air. This process, known as plant metabolism, allows them to harness the power of sunlight and convert CO2 into a wide range of essential chemicals. The impact of plant metabolism goes beyond just cleaning our air. The chemicals produced by plants serve as vital ingredients in our everyday lives. They contribute to our food, animal feed, energy sources, fabrics, medicines, and countless other materials we depend on. The Maeda lab fosters collaboration among diverse students and scientists to unravel the intricate workings of plant metabolism. By understanding these complex processes in various plants, we strive to discover innovative solutions to combat climate change. Harnessing the remarkable abilities of plant metabolism will pave the way for a greener, more sustainable future.Read more about our research projects here.
Lab News
Maeda Lab Contact
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