In this study, the pond-cultivated Anguilla japonica was induced to mature by artificially controlling temperature at 18 +/- 2 degrees C in high temperature season (from June to September), with injection of hCG and CPE. The results showed that both the male and the female eel could be induced to mature, and the artificial maturation induction rate was 73.33% and 67.77%, while under non-controlling temperature 25 approximately 32 degrees C, the maturation induction rate was 0 and 33.33%, respectively. In an ovulation induction test, the matured female eels were induced, with a spawning inducement rate of 70%, and a fertilization rate of 32%, which approached or reached the levels in low temperature season (with an average of 62.1% and 34.2%, respectively), and the zygote developed normally. At the temperature 22 and 24 degrees C, the zygote hatched to fry in about 39 h 15 min and 34 h 9 min. The experiment proved that it was possible to induce the eel to mature by controlling temperature in high temperature season, which provided some theoretical foundations for the techniques of artificially breeding eel in whole year.
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Curr Pain Headache Rep
January 2025
Department of Physical Medicine & Rehabilitation, New York University Langone Health, New York, NY, USA.
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Department of Biology, Memorial University of Newfoundland, St. John's, NL, Canada.
Mosquitoes are important vectors for the transmission of some major infectious diseases of humans, i.e., malaria, dengue, West Nile Virus and Zika virus.
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Department of Tea Science, College of Horticulture Science, South China Agricultural University, Guangzhou, 510642, China.
Integration of resistance indicators, metabolomes, and transcriptomes to elucidate that there is a positive correlation between disease susceptibility and cold tolerance in tea plants. The flavonoid pathway was found to be the major metabolic and transcriptional enrichment pathway. A key domain NB-ARC was identified through joint analysis, along with analysis of key domains within the NB-ARC protein.
View Article and Find Full Text PDFNanoscale
January 2025
Dept. of Chemical and Biomolecular Engineering, Lehigh University, Bethlehem, PA 18015, USA.
Identifying facile strategies for hierarchically structuring crystalline porous materials is critical for realizing diffusion length scales suitable for broad applications. Here, we elucidate synthesis-structure-function relations governing how room temperature catalytic conditions can be exploited to tune covalent organic framework (COF) growth and thereby access unique hierarchical morphologies without the need to introduce secondary templates or structure directing molecules. Specifically, we demonstrate how scandium triflate, an efficient catalyst involved in the synthesis of imine-based COFs, can be exploited as an effective growth modifier capable of selectively titrating terminal amines on 2D COF layers to facilitate anisotropic crystal growth.
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January 2025
Echocardiography Laboratory, Instituto Dante Pazzanese de Cardiologia, São Paulo, Brazil.
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