Results 71 to 80 of about 1,472 (177)
Functional assessment of temperature-gated ion-channel activity using a real-time PCR machine
The functional activity of a number of ion channels is highly sensitive to large changes in temperature. Foremost among these are the thermosensing TRP channels which include cold- (TRPM8, TRPA1), warmth- (TRPV3, TRPV4), and heat-sensing (TRPV1, TRPV2 ...
Derek S. Reubish +5 more
doaj +1 more source
Florigen and Florigen‐Like Genes Regulate Temperature‐Responsive Flowering in Tomato
This study uncovers that FLOWERING LOCUS T‐Like 2 (FTL2) and SINGLE‐FLOWER TRUSS (SFT) antagonistically regulate temperature‐responsive flowering in the tomato shoot apical meristem. High temperature induces floral repressor FTL2, which directly inhibits SFT to delay short‐day floral transition, while SFT reciprocally inhibits FTL2 to promote flowering.
Jia Song +8 more
wiley +1 more source
Flame‐Retardant Ionogel Enabled by Lignin Molecular Networks for Fire Rescue
Wearable sensors for harsh, high‐temperature, fire‐prone environments face challenges in heat resistance and stability. This study introduces a flame‐retardant, waterproof glycol lignin ionogel (GLI) with a robust 3D network, exceptional tensile strength, strong adhesion, biocompatibility, eco‐safety, and dual temperature‐motion sensing, even after ...
Zewei Ye +10 more
wiley +1 more source
Phytochromes (Phys) encompass a diverse collection of bilin-containing photoreceptors that help plants and microorganisms perceive light through photointerconversion between red light (Pr) and far-red light (Pfr)-absorbing states.
E. Sethe Burgie +8 more
doaj +1 more source
Climate change is driving earlier spring leaf‐out across temperate regions, but the genetic mechanisms and environmental interactions underlying this variability are poorly understood. We conducted a controlled growth chamber experiment using excised northern red oak (Quercus rubra) branches, testing the influence of temperature and photoperiod on leaf
Theresa Caso‐McHugh +3 more
wiley +1 more source
Intergenic regions often contain regulatory elements that control the expression of flanking genes. Using a deep-sequencing approach, we identified numerous new transcription start sites in Escherichia coli, yielding a new thermosensing regulatory RNA ...
Rahul Raghavan, Alan Sage, Howard Ochman
core +1 more source
Genetics‐Based Targeting Strategies for Precise Neuromodulation
In this Review, the fundamental principles and implementation protocols of genetics‐based precision neuromodulation are first introduced. Then, wireless and low‐invasive strategies based on nano‐transducing materials are highlighted, along with a dissection and analysis of the strengths and weaknesses of representative studies.
Yuyuan He +11 more
wiley +1 more source
Noise in different micro-bolometer configurations with Silicon-Germanium thermosensing layer [PDF]
We have studied noise in four configurations of un-cooled micro-bolometers: three of them were built in a planar structure with a) a-Six Ge y, y = 0.88, b) a-SixGeyBz:H, y = 0.67 and z = 0.26; c) y = 0.71, z = 0.23 and the fourth d) sandwich structure ...
MARIO MORENO MORENO +3 more
core
Thermosensation and the TRPV channel in Rhodnius prolixus
The thermal sense of triatomine bugs, vectors of Chagas disease, is unique among insects. Not only do these bugs exhibit the highest sensitivity to heat known in any animal up to date, but they can also perceive the infrared radiation emitted by the body of their warm-blooded hosts.
Zermoglio, Paula F. +4 more
openaire +5 more sources
Daytime temperature is sensed by phytochrome B in Arabidopsis through a transcriptional activator HEMERA [PDF]
Ambient temperature sensing by phytochrome B (PHYB) in Arabidopsis is thought to operate mainly at night. Here we show that PHYB plays an equally critical role in temperature sensing during the daytime.
Li, Meina +4 more
core +1 more source

