marine biologists recently discovered a new polyplacophore species in the deep waters of the pacific ocean.
海洋生物学家最近在太平洋深水区发现了一种新的多板纲物种。
the polyplacophore fossil found in this sedimentary rock dates back to the cambrian period.
在这一沉积岩中发现的多板纲化石可追溯到寒武纪时期。
researchers are studying the unique radula structure of polyplacophore mollusks to understand their feeding habits.
研究人员正在研究多板纲软体动物独特的齿舌结构,以了解它们的摄食习性。
the polyplacophore fauna of this coastal region includes several endemic species found nowhere else on earth.
这一沿海地区的多板纲动物群包括几种仅在此地发现的特有物种。
detailed polyplacophore anatomy reveals eight interlocking shell plates that provide excellent protection.
详细的多板纲解剖结构显示,其具有八个相互咬合的壳板,提供极好的保护。
fossil records indicate that polyplacophore evolution began over 500 million years ago.
化石记录表明,多板纲的进化始于5亿多年前。
marine aquarists maintain specific conditions to successfully keep polyplacophore specimens in captivity.
海水养殖专家维持特定条件,以成功饲养多板纲标本。
advances in polyplacophore taxonomy have clarified relationships between ancient and extant species.
多板纲分类学的进步阐明了古代物种与现存物种之间的关系。
the distribution of polyplacophore populations varies significantly across different ocean basins.
多板纲种群的分布在不同洋盆之间存在显著差异。
ancient polyplacophore fossils provide evidence of early marine ecosystem complexity during the cambrian explosion.
古老的多板纲化石为寒武纪大爆发期间早期海洋生态系统的复杂性提供了证据。
scientists continue to make new polyplacophore discoveries in previously unexplored underwater caves.
科学家们继续在之前未探索的水下洞穴中发现新的多板纲物种。
climate change may significantly impact polyplacophore populations in intertidal zones worldwide.
气候变化可能会显著影响全球潮间带地区的多板纲种群。
the study of polyplacophore nervous systems offers insights into molluscan brain evolution.
对多板纲神经系统的研究为软体动物大脑的进化提供了见解。
marine biologists recently discovered a new polyplacophore species in the deep waters of the pacific ocean.
海洋生物学家最近在太平洋深水区发现了一种新的多板纲物种。
the polyplacophore fossil found in this sedimentary rock dates back to the cambrian period.
在这一沉积岩中发现的多板纲化石可追溯到寒武纪时期。
researchers are studying the unique radula structure of polyplacophore mollusks to understand their feeding habits.
研究人员正在研究多板纲软体动物独特的齿舌结构,以了解它们的摄食习性。
the polyplacophore fauna of this coastal region includes several endemic species found nowhere else on earth.
这一沿海地区的多板纲动物群包括几种仅在此地发现的特有物种。
detailed polyplacophore anatomy reveals eight interlocking shell plates that provide excellent protection.
详细的多板纲解剖结构显示,其具有八个相互咬合的壳板,提供极好的保护。
fossil records indicate that polyplacophore evolution began over 500 million years ago.
化石记录表明,多板纲的进化始于5亿多年前。
marine aquarists maintain specific conditions to successfully keep polyplacophore specimens in captivity.
海水养殖专家维持特定条件,以成功饲养多板纲标本。
advances in polyplacophore taxonomy have clarified relationships between ancient and extant species.
多板纲分类学的进步阐明了古代物种与现存物种之间的关系。
the distribution of polyplacophore populations varies significantly across different ocean basins.
多板纲种群的分布在不同洋盆之间存在显著差异。
ancient polyplacophore fossils provide evidence of early marine ecosystem complexity during the cambrian explosion.
古老的多板纲化石为寒武纪大爆发期间早期海洋生态系统的复杂性提供了证据。
scientists continue to make new polyplacophore discoveries in previously unexplored underwater caves.
科学家们继续在之前未探索的水下洞穴中发现新的多板纲物种。
climate change may significantly impact polyplacophore populations in intertidal zones worldwide.
气候变化可能会显著影响全球潮间带地区的多板纲种群。
the study of polyplacophore nervous systems offers insights into molluscan brain evolution.
对多板纲神经系统的研究为软体动物大脑的进化提供了见解。
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