Page 217 - 《水产学报》2025年第11期
P. 217
葛辉,等 水产学报, 2025, 49(11): 119417
of virus species: the intertwine of nanotechnology with sensing ceedings of the National Academy of Sciences of the United
strategies[J]. TrAC Trends in Analytical Chemistry, 2021, 145: States of America, 2023, 120(29): e2304378120.
116460. [41] Ina-Salwany M Y, Al-Saari N, Mohamad A, et al. Vibriosis in
[34] 徐文娟, 宋丹, 陈丹, 等. 基于 CRISPR/Cas 生物传感原理的病 fish: a review on disease development and prevention[J].
原菌检测技术研究进展 [J]. 中国生物工程杂志, 2021, 41(8):
Journal of Aquatic Animal Health, 2019, 31(1): 3-22.
67-74. [42] Sanches-Fernandes G M M, Califano G, Keller-Costa T, et al.
Xu W J, Song D, Chen D, et al. Research progress of pathogen
Draft genome sequence of Vibrio chagasii 18LP, isolated from
detection technologies based on CRISPR/Cas biosensor[J].
gilthead seabream (Sparus aurata) larvae reared in
China Biotechnology, 2021, 41(8): 67-74 (in Chinese).
aquaculture[J]. Microbiology Resource Announcements, 2021,
[35] Fu R J, Xianyu Y. Gold nanomaterials-implemented CRISPR-
10(37): e0065821.
cas systems for biosensing[J]. Small, 2023, 19(21): 2300057.
[43] Yang X G, Zeng X Y, Chen X, et al. Development of a
[36] Guo J C, Chen S Q, Guo J H, et al. Nanomaterial labels in lat-
CRISPR/Cas12a-recombinase polymerase amplification assay
eral flow immunoassays for point-of-care-testing[J]. Journal of
for visual and highly specific identification of the Congo Basin
Materials Science & Technology, 2021, 60: 90-104.
and West African strains of mpox virus[J]. Journal of Medical
[37] Wu J H, Mukama O, Wu W, et al. A CRISPR/Cas12a based
Virology, 2023, 95(5): e28757.
universal lateral flow biosensor for the sensitive and specific
[44] Feng J X, Xue G H, Cui X H, et al. Development of a loop-
detection of african swine-fever viruses in whole blood[J]. Bio-
mediated isothermal amplification method for rapid and visual
sensors (Basel), 2020, 10(12): 203.
detection of monkeypox virus[J]. Microbiology Spectrum,
[38] 侯雅超, 邢微微, 王亚楠, 等. 针对副溶血性弧菌 toxR 基因的
2022, 10(5): e0271422.
RPA-CRISPR/Cas13a 荧光快速检测方法的建立及应用 [J].
[45] Li S J, Huang J F, Ren L J, et al. A one-step, one-pot CRISPR
中华医院感染学杂志, 2024, 34(14): 2081-2086.
nucleic acid detection platform (CRISPR-top): application for
Hou Y C, Xing W W, Wang Y N, et al. Establishment and
the diagnosis of COVID-19[J]. Talanta, 2021, 233: 122591.
application of RPA-CRISPR/Cas13a fluorescent rapid assay tar-
[46] Zhu X J, Fan B C, Zhou J M, et al. A high-throughput method
geting Vibrio parahaemolyticus toxR gene[J]. Chinese Journal
to analyze the interaction proteins with p22 protein of african
of Nosocomiology, 2024, 34(14): 2081-2086 (in Chinese).
swine fever virus in vitro[J]. Frontiers in Veterinary Science,
[39] 王相洪, 张婷, 涂飞, 等. 霍乱弧菌 ToxS 蛋白间的互作增强
ToxR 蛋白诱导毒力基因的表达 [J]. 微生物学报, 2019, 2021, 8: 719859.
[47] Vuono E A, Ramirez-Medina E, Pruitt S, et al. Evaluation of
59(5): 832-840.
Wang X H, Zhang T, Tu F, et al. ToxS homodimerization the function of the ASFV KP177R gene, encoding for struc-
enhances ToxR acitivating virulence gene expression in Vibrio tural protein p22, in the process of virus replication and in
cholerae[J]. Acta Microbiologica Sinica, 2019, 59(5): 832-840 swine virulence[J]. Viruses, 2021, 13(6): 986.
(in Chinese). [48] Peng L, Zhou J, Yin L J, et al. Integration of logic gates to
[40] Canals A, Pieretti S, Muriel-Masanes M, et al. ToxR activates CRISPR/Cas12a system for rapid and sensitive detection of
the Vibrio cholerae virulence genes by tethering DNA to the pathogenic bacterial genes[J]. Analytica Chimica Acta, 2020,
membrane through versatile binding to multiple sites[J]. Pro- 1125: 162-168.
https://www.china-fishery.cn 中国水产学会主办 sponsored by China Society of Fisheries
12

