9 results match your criteria: "BASF Belgium Coordination Center CommV[Affiliation]"

Article Synopsis
  • Recent research indicates that enhancing photosynthesis and stomatal traits can improve crop performance, but traditional phenotyping tools are limited in their efficiency.
  • A new gas exchange chamber was developed to measure key traits in bread wheat genotypes, revealing significant variations in photosynthetic CO2 uptake and stomatal characteristics.
  • The study emphasizes the role of stomatal conductance and leaf temperature management in photosynthesis, suggesting that there is valuable genetic variability in wheat that can be utilized for future breeding efforts.
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The agricultural industry and regulatory organizations define strategies and build tools and products for plant protection against pests. To identify different plants and their related pests and avoid inconsistencies between such organizations, an agreed and shared classification is necessary. In this regard, the European and Mediterranean Plant Protection Organization (EPPO) has been working on defining and maintaining a harmonized coding system (EPPO codes).

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Companion cells and sieve elements play an essential role in vascular plants, and yet the details of the metabolism that underpins their function remain largely unknown. Here, we construct a tissue-scale flux balance analysis (FBA) model to describe the metabolism of phloem loading in a mature Arabidopsis (Arabidopsis thaliana) leaf. We explore the potential metabolic interactions between mesophyll cells, companion cells, and sieve elements based on the current understanding of the physiology of phloem tissue and through the use of cell type-specific transcriptome data as a weighting in our model.

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Systematic optimization of Cas12a base editors in wheat and maize using the ITER platform.

Genome Biol

January 2023

Department of Plant Biotechnology and Bioinformatics, Ghent University, Technologiepark-Zwijnaarde 71, 9052, Ghent, Belgium.

Background: Testing an ever-increasing number of CRISPR components is challenging when developing new genome engineering tools. Plant biotechnology has few high-throughput options to perform iterative design-build-test-learn cycles of gene-editing reagents. To bridge this gap, we develop ITER (Iterative Testing of Editing Reagents) based on 96-well arrayed protoplast transfections and high-content imaging.

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The ability of plants to respond to changes in the environment is crucial to their survival and reproductive success. The impact of increasing the atmospheric CO2 concentration (a[CO2]), mediated by behavioral and developmental responses of stomata, on crop performance remains a concern under all climate change scenarios, with potential impacts on future food security. To identify possible beneficial traits that could be exploited for future breeding, phenotypic variation in morphological traits including stomatal size and density, as well as physiological responses and, critically, the effect of growth [CO2] on these traits, was assessed in six wheat relative accessions (including Aegilops tauschii, Triticum turgidum ssp.

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Sensing of neighbours via the Red to Far-Red light ratio (R:FR) may exert a cap to yield potential in wheat. The effects of an increased R:FR inside the canopy were studied in dense wheat mini canopies grown in controlled environments by lowering FR. To distinguish between effects exerted by light sensing and assimilate supply, the treatments were complemented with elevated CO , applied between different developmental timepoints to specifically impact tillering, spike growth, floret fertility and grain filling, in different combinations.

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Organ development in plants predominantly occurs postembryonically through combinatorial activity of meristems; therefore, meristem and organ fate are intimately connected. Inflorescence morphogenesis in grasses (Poaceae) is complex and relies on a specialized floral meristem, called spikelet meristem, that gives rise to all other floral organs and ultimately the grain. The fate of the spikelet determines reproductive success and contributes toward yield-related traits in cereal crops.

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Article Synopsis
  • Chlamydia abortus and Chlamydia psittaci are pathogens affecting livestock and birds, with the former evolving from the latter, indicating a close evolutionary link.
  • The study focused on the parrot-derived strain 84/2334, analyzing its genome, which showed that it clusters closely with C. abortus, particularly in genomic structure and evolutionary lineage.
  • Findings indicate strain 84/2334 possesses characteristics and diversity from both species, including an extrachromosomal plasmid typical of C. psittaci, supporting its classification as an intermediary strain between C. psittaci and C. abortus.
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Biosafety and Biosecurity in Containment: A Regulatory Overview.

Front Bioeng Biotechnol

June 2020

PERSEUS bv, Sint-Martens-Latem, Belgium.

When biosafety for contained use is addressed in international fora and discussions, often the topic is limited to working with genetically modified organisms (GMOs) in facilities such as laboratories, animal facilities, and greenhouses. However, the scope of biosafety in containment encompasses many other types of biological materials, such as human, animal and plant pathogens, nucleic acids, proteins, human samples, animals or plants, or by-products thereof, and overlaps often with the topic of biosecurity. This is also reflected in the regulations that apply for activities with biological materials in contained facilities.

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