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1.
Zool Res ; 45(2): 284-291, 2024 Mar 18.
Artículo en Inglés | MEDLINE | ID: mdl-38485498

RESUMEN

Hereditary hearing loss (HHL), a genetic disorder that impairs auditory function, significantly affects quality of life and incurs substantial economic losses for society. To investigate the underlying causes of HHL and evaluate therapeutic outcomes, appropriate animal models are necessary. Pigs have been extensively used as valuable large animal models in biomedical research. In this review, we highlight the advantages of pig models in terms of ear anatomy, inner ear morphology, and electrophysiological characteristics, as well as recent advancements in the development of distinct genetically modified porcine models of hearing loss. Additionally, we discuss the prospects, challenges, and recommendations regarding the use pig models in HHL research. Overall, this review provides insights and perspectives for future studies on HHL using porcine models.


Asunto(s)
Oído Interno , Pérdida Auditiva Sensorineural , Pérdida Auditiva , Enfermedades de los Porcinos , Animales , Porcinos/genética , Calidad de Vida , Pérdida Auditiva Sensorineural/genética , Pérdida Auditiva Sensorineural/veterinaria , Pérdida Auditiva/genética , Pérdida Auditiva/terapia , Pérdida Auditiva/veterinaria , Modelos Animales
2.
Plant Cell ; 35(8): 2799-2820, 2023 08 02.
Artículo en Inglés | MEDLINE | ID: mdl-37132634

RESUMEN

Actinomorphic flowers usually orient vertically (relative to the horizon) and possess symmetric nectar guides, while zygomorphic flowers often face horizontally and have asymmetric nectar guides, indicating that floral symmetry, floral orientation, and nectar guide patterning are correlated. The origin of floral zygomorphy is dependent on the dorsoventrally asymmetric expression of CYCLOIDEA (CYC)-like genes. However, how horizontal orientation and asymmetric nectar guides are achieved remains poorly understood. Here, we selected Chirita pumila (Gesneriaceae) as a model plant to explore the molecular bases for these traits. By analyzing gene expression patterns, protein-DNA and protein-protein interactions, and encoded protein functions, we identified multiple roles and functional divergence of 2 CYC-like genes, i.e. CpCYC1 and CpCYC2, in controlling floral symmetry, floral orientation, and nectar guide patterning. CpCYC1 positively regulates its own expression, whereas CpCYC2 does not regulate itself. In addition, CpCYC2 upregulates CpCYC1, while CpCYC1 downregulates CpCYC2. This asymmetric auto-regulation and cross-regulation mechanism might explain the high expression levels of only 1 of these genes. We show that CpCYC1 and CpCYC2 determine asymmetric nectar guide formation, likely by directly repressing the flavonoid synthesis-related gene CpF3'5'H. We further suggest that CYC-like genes play multiple conserved roles in Gesneriaceae. These findings shed light on the repeated origins of zygomorphic flowers in angiosperms.


Asunto(s)
Magnoliopsida , Néctar de las Plantas , Néctar de las Plantas/genética , Filogenia , Magnoliopsida/genética , Flores/genética , Genes de Plantas/genética
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