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Yang, Y.-X.

Publications and source records attributed to Yang, Y.-X..

2 recordsLinked to original sources

Engineered Promoter System Enables High-efficiency Transgenic CRISPR Editing in Malaria Transmitting Mosquito Anopheles sinensis

The CRISPR/Cas9 system deployed through crosses of transgenic lines expressing Cas9 and gRNA facilitates efficient mutagenesis. However, its application in non-model insects remains limited, primarily due to a lack of well-characterized promoters capable of driving robust and stable expression of Cas9 and gRNA. In the malaria mosquito Anopheles sinensis, we evaluated several ovary-biased promoters--Asvasa2, Aszpg, and Asnanos--for driving Cas9 expression. Notably, the Asvasa2 promoter mediated mutagenesis in nearly 60% of G0 individuals following microinjection of gRNAAswhite. Among four RNA polymerase III promoters derived from AsU6 genes, AsU6-1 yielded the highest gRNA transcriptional output, enabling 62% editing efficiency in G0 offspring. In addition, hybrid crosses between established transgenic lines demonstrated that the Asvasa2-Cas9 and AsU6-1-gRNA combination enabled complete germline editing penetrance, where all F2 progeny inherited the intended mutations. This work provides a essential genetic toolkit for synthetic biology applications in Anopheles mosquitoes and a scalable framework for engineering other non-model insects.

genetics↗

Multiple-level organizational logic of the locus coeruleus-norepinephrine system in structure and function

The locus coeruleus (LC) regulates various neural processes through a limited number of norepinephrine (NE)-releasing neurons with widespread axon projections. However, how the LC is organized to exert brain-wide regulatory functions remain elusive. Utilizing larval zebrafish as a whole-brain-scale model, we reveal that morphologically heterogenous but physiologically comparable LC-NE neurons assemble complementarily to implement region-specific regulation of brain-wide neural dynamics. Individual LC-NE neurons exhibit diverse axon projections with ipsilateral bias and region preference, but share comparable electrophysiological properties, sensory responses and neural function-related genes expression. Moreover, population LC-NE neurons display bilaterally symmetrical yet regionally different axon projections and fire synchronously, causing regionally patterned NE release. Along with the regional comparability of NE receptor expression, these enable the LC to tune brain-wide neural dynamics in an inverted-U manner with region difference. Thus, our study provides a comprehensive understanding of the organizational logic of the LC system.

neuroscience↗