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Mimicking nature’s twist: time-evolving helicity in a polymer

A team of scientists developed a chlorophyll-based supramolecular polymer that can gradually evolve from nonhelical fibers into well-defined helical structures. The transformation occurs cooperatively and is driven by small energy differences between stable arrangements, offering a blueprint for designing dynamic helical structures.

SourceChiba University·JournalJournal of the American Chemical Society·TypeExperimental study·DateApr 27, 2026

Multi-scale plant defense strategies against antibiotic stress revealed

Researchers have discovered plant defense strategies against antibiotic stress, including chloroplast-centered adaptation and microbiome coordination. Plants accumulate antibiotics in roots, activate detoxification enzymes, and restructure endophytic bacterial communities to counter stress. These findings suggest plants as bioremediati...

SourceResearch·JournalResearch·TypeNews article·DateMar 10, 2026

Turbo Platform for Plant Research

Scientists have created a micro-algal platform that allows for automated and fast testing of chloroplast genetic modifications, opening up plant chloroplasts to high-throughput applications. This platform enables researchers to fine-tune genetic circuits and identify which modifications have real potential.

SourceMax-Planck-Gesellschaft·JournalNature Plants·DateNov 3, 2025

Were our blue oceans once green?

Research suggests the Earth's oceans were green 2.4 billion years ago due to iron precipitation, leading to a new understanding of ancient photosynthetic organisms and their potential for life beyond Earth. The discovery could aid in the search for extraterrestrial life by identifying green oceans as a possible indicator.

SourceNagoya University·JournalNature Ecology & Evolution·DateMar 25, 2025

Solar-powered animal cells

Scientists have successfully integrated chloroplasts from algae into hamster cells, allowing the cells to undergo photosynthesis and producing oxygen and energy. This breakthrough could lead to the development of artificial tissues that can grow in size without limitations due to low oxygen levels, paving the way for innovative biotech...

SourceUniversity of Tokyo·JournalProceedings of the Japan Academy·TypeExperimental study·DateOct 30, 2024

Marine algae implants could boost crop yields

Researchers have discovered the gene responsible for producing a unique type of chlorophyll in marine algae. This breakthrough could lead to improved crop yields on less land, making it a key step towards achieving a more sustainable food supply. The study also demonstrated that a land plant can produce this specific type of chlorophyll.

SourceUniversity of California - Riverside·JournalCurrent Biology·DateMar 6, 2024

Microalgae with unusual cell biology

Researchers studied Prorocentrum cordatum to understand its molecular processes, revealing a unique photosynthetic machinery that may help it adapt to changing light conditions. The findings could lead to improved understanding of harmful algal blooms and their role in climate change.

SourceUniversity of Oldenburg·JournalPLANT PHYSIOLOGY·TypeImaging analysis·DateMar 5, 2024

Researchers improve seed nitrogen content by reducing plant chlorophyll levels

By reducing chlorophyll levels in leaves, researchers found a 17% increase in seed nitrogen concentration without impacting canopy carbon assimilation. The study's results provide an alternative approach to improve crop yield and nutritional quality for global food security.

SourceCarl R. Woese Institute for Genomic Biology, University of Illinois at Urbana-Champaign·JournalPlant Cell & Environment·TypeExperimental study·DateJan 3, 2024

Theory can sort order from chaos in complex quantum systems

A new mathematical theory developed by scientists at Rice University and Oxford University can predict the nature of motions in complex quantum systems. The theory applies to any sufficiently complex quantum system and may give insights into building better quantum computers, designing solar cells, or improving battery performance.

SourceRice University·JournalProceedings of the National Academy of Sciences·TypeComputational simulation/modeling·DateFeb 23, 2023

Recreating the natural light-harvesting nanorings in photosynthetic bacteria

Researchers at Ritsumeikan University have successfully synthesized ring-shaped nanostructures via the self-assembly of chlorophyll derivatives, mimicking the arrangement of chlorophyll pigments observed in nature. This discovery enables efficient sunlight absorption and could lead to novel smart materials with tunable properties.

SourceRitsumeikan University·JournalChemical Communications·TypeExperimental study·DateJan 31, 2023

Tonga volcano eruption stimulates life: rapid, massive bloom of ocean phytoplankton

A recent study published in Geophysical Research Letters reveals that the Tonga volcano eruption stimulated a rapid and massive bloom of ocean phytoplankton, covering an area nearly 40 times the size of Oahu within just 48 hours. The bloom was triggered by the deposition of volcanic ash, which supplied nutrients for phytoplankton growth.

SourceUniversity of Hawaii at Manoa·JournalGeophysical Research Letters·TypeComputational simulation/modeling·DateOct 10, 2022

RIPE researchers report faster screening of photoprotection in crops

The study developed a high-throughput method for screening non-photochemical quenching rates in field-grown plants using pulse amplitude modulated chlorophyll fluorescence analysis. This approach enables testing hundreds of genotypes within a day, paving the way for genome-wide association studies.

SourceCarl R. Woese Institute for Genomic Biology, University of Illinois at Urbana-Champaign·JournalJournal of Visualized Experiments·TypeExperimental study·DateAug 29, 2022

Technique using light and artificial intelligence is effective in selecting immature soybean seeds

A team of Brazilian researchers has developed a novel technique using light and artificial intelligence to identify the maturity stages of soybean seeds. The method utilizes chlorophyll fluorescence and machine learning algorithms to classify commercial seeds with high accuracy. This innovation avoids destroying seeds, which are then c...

SourceFundação de Amparo à Pesquisa do Estado de São Paulo·JournalFrontiers in Plant Science·DateAug 25, 2022

Technique based on artificial intelligence permits automation of crop seed analysis

Researchers developed a non-invasive methodology using artificial intelligence to analyze crop seed quality. The technique uses light-based technology and machine learning to identify immature or poor-quality seeds, avoiding the need for destructive germination tests and providing more accurate results in less time.

SourceFundação de Amparo à Pesquisa do Estado de São Paulo·JournalFrontiers in Plant Science·DateMar 19, 2021

What makes peppers blush

Researchers discovered that peppers undergo a transformation from chlorophyll-rich chloroplasts to carotenoid-rich chromoplasts as they ripen. This process differs from tomatoes, which continue to ripen after harvesting due to an increased respiratory activity.

SourceRuhr-University Bochum·JournalThe Plant Journal·DateDec 14, 2020

OU-led study reveals dry season increase in photosynthesis in Amazon rain forest

A University of Oklahoma-led study found a significant increase in photosynthesis in the Amazon rainforest during the dry season, as measured by satellite-based solar-induced chlorophyll fluorescence. The study provides new insights into the dynamics of Amazonian photosynthesis and its impact on global atmospheric carbon concentrations.

SourceUniversity of Oklahoma·JournalProceedings of the National Academy of Sciences·DateOct 21, 2019

A forest 'glow' reveals awakening from hibernation

Researchers linked seasonal photosynthesis cycles to solar-induced fluorescence in evergreen forests, enabling large-scale monitoring of carbon dioxide uptake. The study found that fluctuations in photoprotective pigments affect both photosynthesis and fluorescence, providing a proxy for forest activity.

SourceUniversity of Utah·JournalProceedings of the National Academy of Sciences·DateMay 27, 2019

Light green plants save nitrogen without sacrificing photosynthetic efficiency

Researchers found that reducing chlorophyll content in plant leaves can save significant amounts of nitrogen, which can be reinvested to improve light use efficiency and increase yield. This strategy has the potential to enhance photosynthetic efficiency without sacrificing carbon gain.