Molecular核珊瑚Micromussaamakusensis (Veron, 1990) (Hexacorallia, Anthozoa, Cnidaria)的细胞遗传学研究:5个荧光原位杂交标记的分离。

IF 0.9 4区 生物学 Q4 GENETICS & HEREDITY
Comparative Cytogenetics Pub Date : 2025-08-07 eCollection Date: 2025-01-01 DOI:10.3897/compcytogen.19.157310
Analyn B Baldove, Masumi Ito, Takahiro Taguchi, Takuma Mezaki, Hiroumi Saito, Sam Edward Manalili, Yuji Namura, Ivy Jamela Nieves-Brutas, Akira Tominaga, Satoshi Kubota
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引用次数: 0

摘要

石珊瑚是珊瑚礁生态系统的基础,但由于其形态可塑性和有限的细胞遗传学数据,其分类仍未解决。本研究首次提出了核动珊瑚Micromussaamakusensis (Veron, 1990)的分子细胞遗传学特征,采用荧光原位杂交(FISH)分离并绘制了5个DNA标记。利用常规吉氏染色技术,发现马库斯马鼠具有2n = 28的二倍体核型,在12号染色体长臂上有明显的均匀染色区(HSR)。随后,5个FISH标记分别为组蛋白H3的MA-H3、5S rRNA的MA-5S、18S-28S rRNA的MA-18/28S、着丝粒区域的MA-13C和端粒区域的MA-TEL,使用FISH进行克隆、测序和定位。FISH分析显示,MA-H3定位于1号染色体的着丝粒区,MA-5S定位于4号染色体的端粒区,MA-18/28S定位于12号染色体的末端区(与HSR重合),MA-13C定位于13号染色体的着丝粒,MA-TEL定位于数条染色体的多个端粒区。序列分析证实了标记的身份,并发现了保守的和新的重复元件。此外,全精子DNA的基因组DNA杂交(GDH)显示了在几个端粒区域收集的信号,表明存在重复序列。这些细胞遗传学标记能够识别14对染色体中的至少3对,允许更精确的核型,并突出可能有助于解决珊瑚分类和提高对基因组进化的理解的染色体特征。本研究证明了分子细胞遗传学在石珊瑚系统学中的应用,并为今后的比较基因组研究提供了新的FISH标记。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Molecular cytogenetic study on the scleractinian coral Micromussaamakusensis (Veron, 1990) (Hexacorallia, Anthozoa, Cnidaria): isolation of five fluorescence in situ hybridization markers.

Scleractinian (stony) corals are foundational to reef ecosystems, yet their taxonomy remains unresolved due to morphological plasticity and limited cytogenetic data. This study presents the first molecular cytogenetic characterization of the scleractinian coral Micromussaamakusensis (Veron, 1990), employing fluorescence in situ hybridization (FISH) to isolate and map five DNA markers. Using the conventional Giemsa staining technique, M.amakusensis was found to have a diploid karyotype of 2n = 28, with a prominent homogeneously staining region (HSR) on the long arm of chromosome 12. Subsequently, five FISH markers designated as MA-H3 for histone H3, MA-5S for 5S rRNA, MA-18/28S for 18S-28S rRNA, MA-13C for centromeric region, and MA-TEL for telomeric region were cloned, sequenced, and mapped using FISH. FISH analysis revealed that the MA-H3 localized to the centromeric region of chromosome 1, MA-5S to the telomeric region of chromosome 4, MA-18/28S to the terminal region of chromosome 12 (coinciding with the HSR), MA-13C to the centromere of chromosome 13, and MA-TEL to multiple telomeric regions across several chromosomes. Sequence analysis confirmed marker identities and revealed conserved and novel repetitive elements. Furthermore, Genomic DNA hybridization (GDH) of whole-sperm DNA revealed signals collected at several telomeric regions, suggesting the presence of repetitive sequences. These cytogenetic markers enable the identification of at least 3 out of 14 chromosome pairs, allow for more precise karyotyping, and highlight chromosomal features that may help resolve coral classification and improve understanding of genome evolution. This research demonstrates the utility of molecular cytogenetics in stony coral systematics and provides new FISH markers for future comparative genomic studies.

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来源期刊
Comparative Cytogenetics
Comparative Cytogenetics 生物-遗传学
CiteScore
2.40
自引率
0.00%
发文量
13
审稿时长
>12 weeks
期刊介绍: Comparative Cytogenetics is a peer-reviewed, open-access, rapid online journal launched to accelerate research on all aspects of plant and animal cytogenetics, karyosystematics, and molecular systematics. All published papers can be freely copied, downloaded, printed and distributed at no charge for the reader. Authors are thus encouraged to post the pdf files of published papers on their homepages or elsewhere to expedite distribution. There is no charge for color.
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