Assessing photosynthesis in plant systems: A cornerstone to aid in the selection of resistant and productive crops

PI Calzadilla, FEL Carvalho, R Gomez… - Environmental and …, 2022 - Elsevier
Photosynthesis is an essential metabolic pathway for plants, contributing to growth and
biomass production. Environmental adverse conditions have a negative impact on …

[HTML][HTML] Current advances in engineering cyanobacteria and their applications for photosynthetic butanol production

X Liu, H Xie, S Roussou, P Lindblad - Current Opinion in Biotechnology, 2022 - Elsevier
Highlights•Cyanobacteria can be engineered for chemical production from solar energy and
CO 2.•Recent progress has advanced cyanobacteria as green cell factories for …

Alternative photosynthesis pathways drive the algal CO2-concentrating mechanism

A Burlacot, O Dao, P Auroy, S Cuiné, Y Li-Beisson… - Nature, 2022 - nature.com
Global photosynthesis consumes ten times more CO2 than net anthropogenic emissions,
and microalgae account for nearly half of this consumption. The high efficiency of algal …

Emerging frontiers in microbe-mediated pesticide remediation: Unveiling role of omics and In silico approaches in engineered environment

MA Malla, A Dubey, A Raj, A Kumar, N Upadhyay… - Environmental …, 2022 - Elsevier
The overuse of pesticides for augmenting agriculture productivity always comes at the cost
of environment, biodiversity, and human health and has put the land, water, and …

[HTML][HTML] Increased ethylene production by overexpressing phosphoenolpyruvate carboxylase in the cyanobacterium Synechocystis PCC 6803

C Durall, P Lindberg, J Yu, P Lindblad - Biotechnology for biofuels, 2020 - Springer
Background Cyanobacteria can be metabolically engineered to convert CO 2 to fuels and
chemicals such as ethylene. A major challenge in such efforts is to optimize carbon fixation …

[HTML][HTML] Engineered cyanobacteria with additional overexpression of selected Calvin-Benson-Bassham enzymes show further increased ethanol production

S Roussou, A Albergati, F Liang, P Lindblad - Metabolic engineering …, 2021 - Elsevier
Cyanobacteria are one of the most promising microorganisms to produce biofuels and
renewable chemicals due to their oxygenic autotrophic growth properties. However, to rely …

[HTML][HTML] Methodological review of genetic engineering approaches for non-model algae

M Mosey, D Douchi, EP Knoshaug, LML Laurens - Algal Research, 2021 - Elsevier
Despite the tremendous potential of algae to contribute to a future bioeconomy, there are
practical and theoretical limitations to how well naturally sourced species can perform in an …

Deciphering the structure, function, and mechanism of lysine acetyltransferase cGNAT2 in cyanobacteria

K Jia, M Yang, X Liu, Q Zhang, G Cao, F Ge… - Plant …, 2024 - academic.oup.com
Lysine acetylation is a conserved regulatory posttranslational protein modification that is
performed by lysine acetyltransferases (KATs). By catalyzing the transfer of acetyl groups to …

[HTML][HTML] Membrane inlet mass spectrometry: a powerful tool for algal research

A Burlacot, F Burlacot, Y Li-Beisson… - Frontiers in Plant …, 2020 - frontiersin.org
Since the first great oxygenation event, photosynthetic microorganisms have continuously
shaped the Earth's atmosphere. Studying biological mechanisms involved in the interaction …

Splicing Indoles and 4,5-Dihydro-1H-pyrazoline Structure Gave Birth to Novel Antiviral Agents: Design, Synthesis, and Mechanism Study

L Bai, C Wei, Z Shen, H He, X Yang, S Shi… - Journal of Agricultural …, 2023 - ACS Publications
The specific conation of our research is to invent a series of indole derivatives containing a
4, 5-dihydro-1 H-pyrazoline motif with effective antiviral activity. The anti-potato virus Y (PVY) …