the ostreidae family includes many commercially important species.
牡蛎科包括许多具有重要商业价值的物种。
scientists study ostreidae taxonomy to understand their evolution.
科学家研究牡蛎科的分类学以了解它们的进化。
ostreidae fossils provide evidence of ancient marine ecosystems.
牡蛎科化石为古代海洋生态系统提供了证据。
the ostreidae genus crassostrea is widely cultivated.
巨牡蛎属被广泛养殖。
researchers analyze ostreidae dna for species identification.
研究人员分析牡蛎科的dna进行物种鉴定。
ostreidae specimens are preserved in natural history museums.
牡蛎科标本保存在自然历史博物馆中。
the ostreidae classification system helps biologists organize species.
牡蛎科分类系统帮助生物学家整理物种。
ostreidae populations face threats from ocean acidification.
牡蛎科种群面临海洋酸化的威胁。
aquaculture farms specialize in raising ostreidae for food.
水产养殖场专门养殖牡蛎科作为食物。
the ostreidae family evolved during the jurassic period.
牡蛎科在侏罗纪时期进化。
marine biologists monitor ostreidae health in coastal waters.
海洋生物学家监测沿海水域中牡蛎科的健康状况。
ostreidae shell morphology varies among different species.
不同物种间牡蛎科的壳形态各异。
the ostreidae family includes many commercially important species.
牡蛎科包括许多具有重要商业价值的物种。
scientists study ostreidae taxonomy to understand their evolution.
科学家研究牡蛎科的分类学以了解它们的进化。
ostreidae fossils provide evidence of ancient marine ecosystems.
牡蛎科化石为古代海洋生态系统提供了证据。
the ostreidae genus crassostrea is widely cultivated.
巨牡蛎属被广泛养殖。
researchers analyze ostreidae dna for species identification.
研究人员分析牡蛎科的dna进行物种鉴定。
ostreidae specimens are preserved in natural history museums.
牡蛎科标本保存在自然历史博物馆中。
the ostreidae classification system helps biologists organize species.
牡蛎科分类系统帮助生物学家整理物种。
ostreidae populations face threats from ocean acidification.
牡蛎科种群面临海洋酸化的威胁。
aquaculture farms specialize in raising ostreidae for food.
水产养殖场专门养殖牡蛎科作为食物。
the ostreidae family evolved during the jurassic period.
牡蛎科在侏罗纪时期进化。
marine biologists monitor ostreidae health in coastal waters.
海洋生物学家监测沿海水域中牡蛎科的健康状况。
ostreidae shell morphology varies among different species.
不同物种间牡蛎科的壳形态各异。
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