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Connecting the navigational clock to sun compass input in monarch butterfly brain.

机译:将导航时钟连接到帝王蝶大脑中的太阳罗盘输入。

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摘要

Migratory monarch butterflies (Danaus plexippus) use a time-compensated sun compass to navigate to their overwintering grounds in Mexico. Although polarized light is one of the celestial cues used for orientation, the spectral content (color) of that light has not been fully explored. We cloned the cDNAs of three visual pigment-encoding opsins (ultraviolet [UV], blue, and long wavelength) and found that all three are expressed uniformly in main retina. The photoreceptors of the polarization-specialized dorsal rim area, on the other hand, are monochromatic for the UV opsin. Behavioral studies support the importance of polarized UV light for flight orientation. Next, we used clock protein expression patterns to identify the location of a circadian clock in the dorsolateral protocerebrum of butterfly brain. To provide a link between the clock and the sun compass, we identified a CRYPTOCHROME-staining neural pathway that likely connects the circadian clock to polarized light input entering brain.
机译:帝王蝶(Danaus plexippus)使用时间补偿的太阳罗盘导航到墨西哥的越冬地。尽管偏振光是用于定向的天体信号之一,但尚未完全探究该光的光谱含量(颜色)。我们克隆了三个视觉色素编码视蛋白(紫外线[UV],蓝色和长波长)的cDNA,发现这三个在主要视网膜中均均匀表达。另一方面,偏振专用背边缘区域的感光体对于UV视蛋白是单色的。行为研究支持偏振紫外线对飞行方向的重要性。接下来,我们使用时钟蛋白表达模式来确定昼夜节律在蝶形大脑背外侧原脑中的位置。为了提供时钟和太阳罗盘之间的联系,我们确定了一种CRYPTOCHROME染色神经通路,该通路可能将生物钟与进入大脑的偏振光输入相连。

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