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栽培大豆和野生祖先中具有着丝粒重复的染色体特异性条码系统。

Chromosome-specific barcode system with centromeric repeat in cultivated soybean and wild progenitor.

机构信息

https://ror.org/03ejnre35 Department of Agricultural Genetic Engineering, Ayhan Şahenk Faculty of Agricultural Sciences and Technologies, Niğde Ömer Halisdemir University, Niğde, Türkiye

https://ror.org/02pc6pc55 Institute of Plant Science and Resources, Okayama University, Kurashiki, Japan

出版信息

Life Sci Alliance. 2024 Oct 1;7(12). doi: 10.26508/lsa.202402802. Print 2024 Dec.

Abstract

Wild soybean is the progenitor of cultivated soybean Information on soybean functional centromeres is limited despite extensive genome analysis. These species are an ideal model for studying centromere dynamics for domestication and breeding. We performed a detailed chromatin immunoprecipitation analysis using centromere-specific histone H3 protein to delineate two distinct centromeric DNA sequences with unusual repeating units with monomer sizes of 90-92 bp (CentGm-1) and 413-bp (CentGm-4) shorter and longer than standard nucleosomes. These two unrelated DNA sequences with no sequence similarity are part of functional centromeres in both species. Our results provide a comparison of centromere properties between a cultivated and a wild species under the effect of the same kinetochore protein. Possible sequence homogenization specific to each chromosome could highlight the mechanism for evolutionary conservation of centromeric properties independent of domestication and breeding. Moreover, a unique barcode system to track each chromosome is developed using CentGm-4 units. Our results with a unifying centromere composition model using CentGm-1 and CentGm-4 superfamilies could have far-reaching implications for comparative and evolutionary genome research.

摘要

野生大豆是栽培大豆的祖先。尽管对大豆基因组进行了广泛分析,但有关其功能着丝粒的信息仍然有限。这些物种是研究驯化和育种过程中着丝粒动态的理想模型。我们使用着丝粒特异性组蛋白 H3 蛋白进行了详细的染色质免疫沉淀分析,以描绘出两种具有不寻常重复单元的独特着丝粒 DNA 序列,其单体大小分别为 90-92 bp(CentGm-1)和 413-bp(CentGm-4),短于和长于标准核小体。这两个没有序列相似性的不相关 DNA 序列是两个物种中功能着丝粒的一部分。我们的结果比较了在相同着丝粒蛋白作用下栽培种和野生种的着丝粒特性。可能针对每条染色体的序列均一化可以突出独立于驯化和育种的着丝粒特性进化保守的机制。此外,还使用 CentGm-4 单元开发了一种独特的用于跟踪每条染色体的条形码系统。我们使用 CentGm-1 和 CentGm-4 超家族的统一着丝粒组成模型的结果可能对比较和进化基因组研究具有深远的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/73e2/11447526/b377e79380db/LSA-2024-02802_FigS1.jpg

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