Results 201 to 210 of about 35,316 (244)
SiDT1 Defines Plant Architecture Reminiscent of Green Revolution in Foxtail Millet
SiDT1 encodes a GA3‐oxidase that creates a semi‐dwarf, lodging‐resistant architecture reminiscent of the rice Green Revolution. The resulting ideotype performs well under dense planting and provides a valuable genetic resource for high‐yield, mechanized foxtail millet production. ABSTRACT Foxtail millet (Setaria italica) is a drought‐tolerant C4 cereal
Jianzhen Lv +13 more
wiley +1 more source
Optimized Lipid Nanoparticles with Tail‐Modified Ionizable Lipids for Safer mRNA Delivery
Systematic engineering of hydrophobic tail architecture in vitamin B5‐derived ionizable lipids establishes a comprehensive structure–activity relationship framework for mRNA delivery. Combined lipidtail and formulation optimization identifies TM1‐OPT3‐C, a lipid nanoparticle platform that improves efficacy–safety balance through efficient mRNA delivery,
Seo‐Hyeon Bae +27 more
wiley +1 more source
Single‐cell transcriptomics of soybean roots soon after rhizobial inoculation reveals epidermal and cortical cell‐specific programs and gene‐regulatory networks acting in symbiosis establishment. We identify an ethylene‐driven regulatory circuit involving WRKY6.3/6.4 transcription factors targeting select Nod19 genes that promotes infection‐thread ...
Yongbin Zhuang +17 more
wiley +1 more source
A Pan‐Methylome Framework for Population‐Scale Bacterial Epigenomics
A scalable quantitative framework unlocks population‐level comparative epigenomics in bacteria. By transforming site‐level data into standardized traits, this approach reconstructs methylation‐informed phylogenies and defines the core epigenome.
Bin Ma +22 more
wiley +1 more source
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Biocomputing Based on DNA Strand Displacement Reactions
ChemPhysChem, 2021AbstractThe high sequence specificity and precise base complementary pairing principle of DNA provides a rich orthogonal molecular library for molecular programming, making it one of the most promising materials for developing bio‐compatible intelligence. In recent years, DNA has been extensively studied and applied in the field of biological computing.
Qian Li, Chunhai Fan, Jiye Shi
exaly +3 more sources
ACS Nano, 2021
Strand displacement reactions are important bricks for the construction of various DNA nanodevices, among which the toehold-mediated strand displacement reaction is the most prevalently adopted. However, only a limited number of tools could be used to finely regulate the toehold reaction, thus restricting DNA nanodevices from being more multifunctional
Hongbo Wang, Longjie Li, Liu Liquan
exaly +3 more sources
Strand displacement reactions are important bricks for the construction of various DNA nanodevices, among which the toehold-mediated strand displacement reaction is the most prevalently adopted. However, only a limited number of tools could be used to finely regulate the toehold reaction, thus restricting DNA nanodevices from being more multifunctional
Hongbo Wang, Longjie Li, Liu Liquan
exaly +3 more sources
Robustness of Localized DNA Strand Displacement Cascades
ACS Nano, 2014Colocalization can strongly alter the kinetics and efficiency of chemical processes. For instance, in DNA-templated synthesis unfavorable reactions are sped up by placing reactants into close proximity onto a DNA scaffold. In biochemistry, clustering of enzymes has been demonstrated to enhance the reaction flux through some enzymatic cascades.
Enzo Kopperger, Friedrich Simmel
exaly +3 more sources
The neuronal perceptron with DNA strand displacement
2018 Tenth International Conference on Advanced Computational Intelligence (ICACI), 2018In the field of biologic computing and neural networks, DNA strand displacement technology performs well in computing, programming and information processing. In this paper, based on two-domain DNA strand displacement, the neural DNA perceptron is proposed to implement Boolean operations. Some operation instances are simulated by Visual DSD (DNA strand
Lanlan Shi +2 more
openaire +1 more source
Heterochiral DNA Strand-Displacement Circuits
Journal of the American Chemical Society, 2017The absence of a straightforward strategy to interface native d-DNA with its enantiomer l-DNA-oligonucleotides of opposite chirality are incapable of forming contiguous Watson-Crick base pairs with each other-has enforced a "homochiral" paradigm over the field of dynamic DNA nanotechnology.
Adam M. Kabza +2 more
openaire +2 more sources
DNA Strand-Displacement Timer Circuits
ACS Synthetic Biology, 2016Chemical circuits can coordinate elaborate sequences of events in cells and tissues, from the self-assembly of biological complexes to the sequence of embryonic development. However, autonomously directing the timing of events in synthetic systems using chemical signals remains challenging.
Joshua, Fern +5 more
openaire +2 more sources

