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TAS2R20 variants confer dietary adaptation to high‐quercitrin bamboo leaves in Qinling giant pandas

机译:TAS2R20变体对秦岭巨人熊猫的高槲皮蛋白竹叶进行膳食适应

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Sensitivity to bitter tastes provides animals with an important means of interacting with their environment and thus, influences their dietary preferences. Genetic variants encoding functionally distinct receptor types contribute to variation in bitter taste sensitivity. Our previous study showed that two nonsynonymous sites, A52V and Q296H, in the TAS2R20 gene are directionally selected in giant pandas from the Qinling Mountains, which are speculated to be the causative base‐pair changes of Qinling pandas for the higher preference for bamboo leaves in comparison with other pandas. Here, we used functional expression in engineered cells to identify agonists of pTAS2R20 (i.e., giant panda's TAS2R20) and interrogated the differences in perception in the in vitro responses of pTAS2R20 variants to the agonists. Our results show that pTAS2R20 is specifically activated by quercitrin and that pTAS2R20 variants exhibit differences in the sensitivity of their response to the agonist. Compared with pTAS2R20 in pandas from other areas, the receptor variant with A52V and Q296H, which is most commonly found in Qinling pandas, confers a significantly decreased sensitivity to quercitrin. We subsequently quantified the quercitrin content of the leaves of bamboo distributed in the Qinling Mountains, which was found to be significantly higher than that of the leaves of bamboo from panda habitats in other areas. Our results suggest that the decreased sensitivity to quercitrin in Qinling pandas results in higher‐quercitrin‐containing bamboo leaves to be tasting less bitter to them and thus, influences their dietary preference. This study illustrates the genetic adaptation of Qinling pandas to their environments and provides a fine example of the functional effects of directional selection in the giant panda.
机译:对苦味口味的敏感性提供了具有与其环境相互作用的重要手段的动物,从而影响他们的饮食偏好。编码功能性不同的受体类型的遗传变体有助于变化苦味敏感性。我们以前的研究表明,在TAS2R20基因中,两个非同义位点,A52V和Q296H在秦岭巨大的熊猫方向定向选择,这被推测是秦岭熊猫的致病基础对变化,用于竹叶的较高偏好。与其他熊猫的比较。在这里,我们使用工程细胞中的功能表达来鉴定PTAS2R20(即,巨大的熊猫TAS2R20)的激动剂,并询问PTAS2R20变体对激动剂的体外反应中的感知的差异。我们的结果表明,PTAS2R20由Quercitrin特异性激活,PTAS2R20变体表现出对激动剂的响应敏感性的差异。与来自其他区域的PANDAS中的PTAS2R20相比,具有A52V和Q296H的受体变体,最常见于秦岭熊猫,赋予对槲皮素的敏感性显着降低。随后,量化了秦岭分布在秦岭山叶的槲皮素含量,发现该竹子被发现明显高于熊猫栖息地在其他地区的叶子。我们的研究结果表明,秦岭熊猫在喹硫乙醇中的敏感性降低导致含有更高季铵的竹叶,以品尝到它们的苦味,因此影响它们的膳食偏好。本研究说明了秦岭熊猫对其环境的遗传调整,并提供了巨大熊猫方向选择的功能效果的较好示例。

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