首页> 外文期刊>Chemical Senses >NaCl Taste Thresholds in 13 Inbred Mouse Strains
【24h】

NaCl Taste Thresholds in 13 Inbred Mouse Strains

机译:13种近交小鼠品系的NaCl味阈值

获取原文
获取原文并翻译 | 示例
           

摘要

Molecular mechanisms of salty taste in mammals are not completely understood. We use genetic approaches to study these mechanisms. Previously, we developed a high-throughput procedure to measure NaCl taste thresholds, which involves conditioning mice to avoid LiCI and then examining avoidance of NaCl solutions presented in 48-h 2-bottle preference tests. Using this procedure, we measured NaCl taste thresholds of mice from 13 genealogically divergent inbred stains: 129P3/J, A/J, BALB/cByJ, C3H/HeJ, C57BL/6ByJ, C57BL/6J, CBA/J, CE/J, DBA/2J, FVB/NJ, NZB/BINJ, PWK/PhJ, and SJL/J. We found substantial strain variation in NaCl taste thresholds: mice from the A/J and 129P3/J strains had high thresholds (were less sensitive), whereas mice from the BALB/cByJ, C57BL/6J, C57BLV6ByJ, CE/J, DBA/2J, NZB/BINJ, and SJL/J had low thresholds (were more sensitive). NaCl taste thresholds measured in this study did not significantly correlate with NaCl preferences or amiloride sensitivity of chorda tympani nerve responses to NaCl determined in the same strains in other studies. To examine whether strain differences in NaCl taste thresholds could have been affected by variation in learning ability or sensitivity to toxic effects of LiCI, we used the same method to measure citric acid taste thresholds in 4 inbred strains with large differences in NaCl taste thresholds but similar acid sensitivity in preference tests (129P3/J, A/J, C57BL/6J, and DBA/2J). Citric acid taste thresholds were similar in these 4 strains. This suggests that our technique measures taste quality-specific thresholds that are likely to represent differences in peripheral taste responsiveness. The strain differences in NaCl taste sensitivity found in this study provide a basis for genetic analysis of this phenotype.
机译:哺乳动物咸味的分子机制尚未完全了解。我们使用遗传方法来研究这些机制。以前,我们开发了一种高通量的程序来测量NaCl味阈值,该过程包括调理小鼠避免LiCl,然后检查在48小时2瓶偏好测试中避免的NaCl溶液。使用此程序,我们测量了13种遗传差异近交染色的小鼠的NaCl味阈值:129P3 / J,A / J,BALB / cByJ,C3H / HeJ,C57BL / 6ByJ,C57BL / 6J,CBA / J,CE / J, DBA / 2J,FVB / NJ,NZB / BINJ,PWK / PhJ和SJL / J。我们发现NaCl味觉阈值存在很大的差异:来自A / J和129P3 / J菌株的小鼠具有较高的阈值(敏感性较低),而来自BALB / cByJ,C57BL / 6J,C57BLV6ByJ,CE / J,DBA / 2J,NZB / BINJ和SJL / J具有较低的阈值(更敏感)。在本研究中测量的NaCl味觉阈值与在其他研究中确定的相同菌株中的NaCl偏好或鼓室鼓膜神经对NaCl的阿米洛利敏感性没有显着相关性。为了检验NaCl味道阈值的菌株差异是否可能受学习能力的变化或对LiCI毒性作用的敏感性的影响,我们使用相同的方法来测量4个NaCl味道阈值差异较大的近交菌株的柠檬酸味道阈值,但相似偏好测试(129P3 / J,A / J,C57BL / 6J和DBA / 2J)中的酸敏感性。这4个菌株的柠檬酸味阈值相似。这表明我们的技术测量的是特定于口味质量的阈值,该阈值可能代表了周围味觉响应能力的差异。这项研究中发现的NaCl味觉敏感性菌株差异为该表型的遗传分析提供了基础。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号