Advances in the production of bioactive substances from marine unicellular microalgae Porphyridium spp.

S Li, L Ji, Q Shi, H Wu, J Fan - Bioresource technology, 2019 - Elsevier
Porphyridium spp. are a group of unicellular marine microalgae belonging to the
Rhodophyta, which evolved over one billion years and are a source of a variety of natural …

[HTML][HTML] Gene delivery technologies with applications in microalgal genetic engineering

S Gutiérrez, KJ Lauersen - Biology, 2021 - mdpi.com
Simple Summary Microalgae and cyanobacteria are considered intriguing microbes for
sustainable biotechnological production of a wide array of high-value metabolites from …

[HTML][HTML] Group II intron and repeat-rich red algal mitochondrial genomes demonstrate the dynamic recent history of autocatalytic RNAs

D Kim, JM Lee, CH Cho, EJ Kim, D Bhattacharya… - BMC biology, 2022 - Springer
Background Group II introns are mobile genetic elements that can insert at specific target
sequences, however, their origins are often challenging to reconstruct because of rapid …

[HTML][HTML] Exploration of space to achieve scientific breakthroughs

B Prasad, P Richter, N Vadakedath, R Mancinelli… - Biotechnology …, 2020 - Elsevier
Living organisms adapt to changing environments using their amazing flexibility to remodel
themselves by a process called evolution. Environmental stress causes selective pressure …

[HTML][HTML] Physiological and transcriptome analysis elucidates the metabolic mechanism of versatile Porphyridium purpureum under nitrogen deprivation for …

L Ji, S Li, C Chen, H Jin, H Wu, J Fan - Bioresources and Bioprocessing, 2021 - Springer
Porphyridium purpureum is a mesophilic, unicellular red alga rich in phycoerythrin, sulfate
polysaccharides, and polyunsaturated fatty acids. Nitrogen deficiency inhibited the growth of …

Biological and technical aspects on valorization of red microalgae genera Porphyridium

A Bayu, DR Noerdjito, SI Rahmawati, MY Putra… - Biomass Conversion …, 2023 - Springer
Red microalgae genera Porphyridium are photoautotrophic microalgae with potential
application as a natural source of high-value chemicals, including sulfated …

Efficient Agrobacterium tumefaciens-mediated stable genetic transformation of green microalgae, Chlorella sorokiniana

PK Sharma, VV Goud, Y Yamamoto, L Sahoo - 3 Biotech, 2021 - Springer
The green oleaginous microalgae, Chlorella sorokiniana, is a highly productive Chlorella
species and a potential host for the production of biofuel, nutraceuticals, and recombinant …

[HTML][HTML] Agrobacterium tumefaciens-Mediated Nuclear Transformation of a Biotechnologically Important Microalga—Euglena gracilis

I Becker, B Prasad, M Ntefidou, V Daiker… - International Journal of …, 2021 - mdpi.com
Euglena gracilis (E. gracilis) is an attractive organism due to its evolutionary history and
substantial potential to produce biochemicals of commercial importance. This study …

Cytoskeletal diversification across 1 billion years: What red algae can teach us about the cytoskeleton, and vice versa

HV Goodson, JB Kelley, SH Brawley - Bioessays, 2021 - Wiley Online Library
The cytoskeleton has a central role in eukaryotic biology, enabling cells to organize
internally, polarize, and translocate. Studying cytoskeletal machinery across the tree of life …

Genetic engineering of microalgae for enhanced photosynthetic efficiency, CO2 fixation, and fuel-based products

A Ganesan, P Nawkarkar, S Ali, S Kajlaand, S Kumar - 2022 - books.rsc.org
The most well-known greenhouse gas contributing to global warming is carbon dioxide
(CO2). Other combustion products such as nitrogen oxides, sulphur oxides, methane, and …