an anomalopss
異常體
anomalopss detection
異常體偵測
anomalopss behavior
異常體行為
anomalopss sighting
異常體目擊
anomalopss report
異常體報告
anomalopss species
異常體種類
anomalopss entity
異常體實體
anomalopss event
異常體事件
anomalopss signal
異常體信號
anomalopss pattern
異常體模式
marine biologists discovered a new species of anomalopss in the deep waters off the coast of japan.
海洋生物學家在日本沿岸的深海中發現了一種新的異光魚屬物種。
the bioluminescent anomalopss use their light organs to communicate with each other in the dark ocean depths.
發光的異光魚屬利用其發光器官在黑暗的海洋深處互相溝通。
tropical anomalopss have been observed migrating to shallower waters during certain moon phases.
熱帶異光魚屬在特定的月相期間被觀察到遷移到較淺的水域。
scientists are studying how anomalopss control the flashing patterns of their specialized light organs.
科學家正在研究異光魚屬如何控制其特化發光器官的閃爍模式。
the flashlight fish, commonly known as anomalopss, can produce light through symbiotic bacteria.
俗稱異光魚屬的燈鮟鱇魚,能夠透過共生細菌產生光。
schools of anomalopss create mesmerizing light displays as they swim together in formation.
群體的異光魚屬在成群遊動時會產生令人著迷的光顯示。
researchers found that anomalopss adjust their light intensity based on surrounding water clarity.
研究人員發現異光魚屬會根據周圍水質的清澈度調整其發光強度。
the unique anatomy of anomalopss allows them to rotate their light organs for signaling.
異光魚屬獨特的解剖結構使它們能夠旋轉發光器官以進行訊號傳遞。
deep-sea anomalopss have adapted to survive in environments with extreme pressure and minimal light.
深海異光魚屬已經適應在極端壓力和極少光線的環境中生存。
conservation efforts are underway to protect the natural habitats of endangered anomalopss.
目前正在進行保育工作,以保護瀕危異光魚屬的自然棲息地。
the bacterial symbiosis in anomalopss provides a fascinating model for studying bioluminescence.
異光魚屬中的細菌共生關係為研究發光現象提供了一個令人著迷的模型。
juvenile anomalopss develop their light-producing capabilities as they mature.
幼年的異光魚屬隨著成熟會發展出其發光能力。
an anomalopss
異常體
anomalopss detection
異常體偵測
anomalopss behavior
異常體行為
anomalopss sighting
異常體目擊
anomalopss report
異常體報告
anomalopss species
異常體種類
anomalopss entity
異常體實體
anomalopss event
異常體事件
anomalopss signal
異常體信號
anomalopss pattern
異常體模式
marine biologists discovered a new species of anomalopss in the deep waters off the coast of japan.
海洋生物學家在日本沿岸的深海中發現了一種新的異光魚屬物種。
the bioluminescent anomalopss use their light organs to communicate with each other in the dark ocean depths.
發光的異光魚屬利用其發光器官在黑暗的海洋深處互相溝通。
tropical anomalopss have been observed migrating to shallower waters during certain moon phases.
熱帶異光魚屬在特定的月相期間被觀察到遷移到較淺的水域。
scientists are studying how anomalopss control the flashing patterns of their specialized light organs.
科學家正在研究異光魚屬如何控制其特化發光器官的閃爍模式。
the flashlight fish, commonly known as anomalopss, can produce light through symbiotic bacteria.
俗稱異光魚屬的燈鮟鱇魚,能夠透過共生細菌產生光。
schools of anomalopss create mesmerizing light displays as they swim together in formation.
群體的異光魚屬在成群遊動時會產生令人著迷的光顯示。
researchers found that anomalopss adjust their light intensity based on surrounding water clarity.
研究人員發現異光魚屬會根據周圍水質的清澈度調整其發光強度。
the unique anatomy of anomalopss allows them to rotate their light organs for signaling.
異光魚屬獨特的解剖結構使它們能夠旋轉發光器官以進行訊號傳遞。
deep-sea anomalopss have adapted to survive in environments with extreme pressure and minimal light.
深海異光魚屬已經適應在極端壓力和極少光線的環境中生存。
conservation efforts are underway to protect the natural habitats of endangered anomalopss.
目前正在進行保育工作,以保護瀕危異光魚屬的自然棲息地。
the bacterial symbiosis in anomalopss provides a fascinating model for studying bioluminescence.
異光魚屬中的細菌共生關係為研究發光現象提供了一個令人著迷的模型。
juvenile anomalopss develop their light-producing capabilities as they mature.
幼年的異光魚屬隨著成熟會發展出其發光能力。
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