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Data from: Imposed work of breathing for flow meters with in-line versus flow-through technique during simulated neonatal breathing
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关键词:
DOI:
doi:10.5061/dryad.2ps14
摘要:
ted with an Infant Flow CPAP system at 3, 5 and 8 cm H2O pressure using flow through technique. The quality of the recorded signals was compared graphically. Result
Data from: Identification of four novel stu-miR169s and their target genes in Solanum tuberosum and expression profiles response to drought stress
负责人:
关键词:
Bioinformatics analysis;potato;alignment;Full-length Amino Acid Sequences;NF-YA genes;Solanum tuberosum;Expression pattern;NF-YA;stu-miR169;drought stress
DOI:
doi:10.5061/dryad.3s057
摘要:
in response to the drought stress. There were some targeted StNF-YA genes that exhibited a negative expression pattern with mature stu-miR169 duri
Data from: Sequencing-based gene network analysis provides a core set of gene resource for understanding thermal adaptation in Zhikong scallop
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关键词:
marine bivalve;EcoP15I-tagged digital gene expression;Chlamys farreri;thermal stress;weighted gene coexpression network analysis
DOI:
doi:10.5061/dryad.53j13
摘要:
ponded to chronic heat stress, suggesting that the scallops might have acclimated to elevated temperature within 3 days. This study represents the first sequencing-based
Data from: Metabolic costs imposed by hydrostatic pressure constrain bathymetric range in the lithodid crab Lithodes maja
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关键词:
Heart rate;Respiration rate;Lithodes maja;Metabolic theory;Hydrostatic pressure;Hyperbaric physiology;Biogeographic range limitation
DOI:
doi:10.5061/dryad.2538d
摘要:
to 12.5 MPa, before decreasing as hydrostatic pressure increased to 20.0 MPa: oxygen consumption was significantly higher at 7.5-17.5 MPa than at 0.1 MPa
Data from: Oxidative stress delays development and alters gene expression in the agricultural pest moth, Helicoverpa armigera
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关键词:
Chronic;development;Hormesis;Invertebrate;Oxidative stress;RNAseq;Helicoverpa armigera conferta
DOI:
doi:10.5061/dryad.d7wm37pz2
摘要:
. Collectively, our findings provide new insights into physiological and gene expression responses to oxidative stress in invertebrates.
Data from: Machine learning-based differential network analysis: a study of stress-responsive transcriptomes in Arabidopsis thaliana
负责人:
关键词:
Systems biology;Arabidopsis thaliana;abiotic\/environmental stress;differential network;bioinformatics;transcriptome analysis;gene coexpression network;Random Forest;Machine Learning
DOI:
doi:10.5061/dryad.41b9g
摘要:
prior to network construction, through learning the patterns of 32 expression characteristics of known stress-related genes. The retained “informative
Data from: The bHLH family member ZmPTF1 regulates drought tolerance in maize by promoting root development and ABA synthesis
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关键词:
ABA synthesis;root development;drought stress;transcriptional regulation;ZmPTF1;Maize
DOI:
doi:10.5061/dryad.7nr377v
摘要:
Drought stress is the most important environmental stress limiting maize production. ZmPTF1, a phosphate starvation-induced basic helix-loop-helix
Data from: Stress for invasion success? Temperature stress of preceding generations modifies the response to insecticide stress in an invasive pest insect
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关键词:
species range;pyrethroids;sub-lethal effects;stress tolerance;Leptinotarsa decemlineata;adaptive phenotypic plasticity;invasive species;cross-generational effect;carry-over
DOI:
doi:10.5061/dryad.qm009
摘要:
by exposure to other stressors experienced by the preceding generations. We studied whether parental temperature stress affects tolerance to insecticide
Data from: Trophic structure modulates community rescue following acidification
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关键词:
foodweb;Zooplankton;phytoplankton;Dispersal;acidification;evolutionary rescue
DOI:
doi:10.5061/dryad.7qt30vf
摘要:
Community rescue occurs when a community that experiences a lethal stress persists only through the spread of rare types, either genotypes or species
Data from: Dissecting molecular stress networks: identifying nodes of divergence between life-history phenotypes
负责人:
关键词:
Thamnophis elegans;Life History Evolution;Transcriptomics;Phenotypic Plasticity;Comparative Physiology;Ecological Genetics;Adaptation
DOI:
doi:10.5061/dryad.sb30r
摘要:
The complex molecular network that underlies physiological stress response is comprised of nodes (proteins, metabolites, mRNAs, etc.) whose

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