aneuploidy can lead to developmental abnormalities.
單倍體異常會導致發育異常。
the cells were aneuploid, indicating a chromosomal error.
這些細胞爲單倍體異常,表明染色體錯誤。
aneuploidy is often associated with cancer development.
單倍體異常經常與癌症發展相關聯。
researchers are studying the mechanisms behind aneuploidy.
研究人員正在研究單倍體異常背後的機制。
aneuploid cells may have altered gene expression patterns.
單倍體異常細胞可能具有改變的基因表達模式。
aneuploidy can result in a range of phenotypic effects.
單倍體異常會導致多種表型效應。
detecting aneuploidy is crucial for prenatal diagnosis.
檢測單倍體異常對於產前診斷至關重要。
aneuploidy can occur spontaneously or be induced by environmental factors.
單倍體異常可以自發發生,也可以由環境因素誘導。
the presence of aneuploid cells is a hallmark of certain diseases.
存在單倍體異常細胞是某些疾病的標誌。
understanding aneuploidy can shed light on evolutionary processes.
理解單倍體異常可以闡明進化過程。
aneuploidy can lead to developmental abnormalities.
單倍體異常會導致發育異常。
the cells were aneuploid, indicating a chromosomal error.
這些細胞爲單倍體異常,表明染色體錯誤。
aneuploidy is often associated with cancer development.
單倍體異常經常與癌症發展相關聯。
researchers are studying the mechanisms behind aneuploidy.
研究人員正在研究單倍體異常背後的機制。
aneuploid cells may have altered gene expression patterns.
單倍體異常細胞可能具有改變的基因表達模式。
aneuploidy can result in a range of phenotypic effects.
單倍體異常會導致多種表型效應。
detecting aneuploidy is crucial for prenatal diagnosis.
檢測單倍體異常對於產前診斷至關重要。
aneuploidy can occur spontaneously or be induced by environmental factors.
單倍體異常可以自發發生,也可以由環境因素誘導。
the presence of aneuploid cells is a hallmark of certain diseases.
存在單倍體異常細胞是某些疾病的標誌。
understanding aneuploidy can shed light on evolutionary processes.
理解單倍體異常可以闡明進化過程。
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