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MADS-Box 基因在随后的 WGD 中的基因复制和功能多样化:对果实类型和花器官进化的影响。

Gene Duplication and Functional Diversification of MADS-Box Genes in following WGD: Implications for Fruit Type and Floral Organ Evolution.

机构信息

College of Horticulture, China Agricultural University, Beijing 100193, China.

出版信息

Int J Mol Sci. 2024 Aug 17;25(16):8962. doi: 10.3390/ijms25168962.

Abstract

The evolution of the MADS-box gene family is essential for the rapid differentiation of floral organs and fruit types in angiosperms. Two key processes drive the evolution of gene families: gene duplication and functional differentiation. Duplicated copies provide the material for variation, while advantageous mutations can confer new functions on gene copies. In this study, we selected the Rosaceae family, which includes a variety of fruit types and flower organs, as well as species that existed before and after whole-genome duplication (WGD). The results indicate that different fruit types are associated with different copies of MADS-box gene family duplications and WGD events. While most gene copies derived from WGD have been lost, MADS-box genes not only retain copies derived from WGD but also undergo further gene duplication. The sequences, protein structures, and expression patterns of these gene copies have undergone significant differentiation. This work provides a clear example of MADS-box genes in the context of gene duplication and functional differentiation, offering new insights into the evolution of fruit types and floral organs.

摘要

MADS-box 基因家族的进化对于被子植物中花器官和果实类型的快速分化至关重要。两个关键过程推动基因家族的进化:基因复制和功能分化。复制的副本为变异提供了物质基础,而有利的突变可以为基因副本赋予新的功能。在这项研究中,我们选择了蔷薇科,它包括各种果实类型和花器官,以及在全基因组复制(WGD)之前和之后存在的物种。结果表明,不同的果实类型与 MADS-box 基因家族复制和 WGD 事件的不同副本相关。虽然大多数源自 WGD 的基因副本已经丢失,但 MADS-box 基因不仅保留了源自 WGD 的副本,还经历了进一步的基因复制。这些基因副本的序列、蛋白质结构和表达模式发生了显著分化。这项工作为 MADS-box 基因在基因复制和功能分化背景下提供了一个清晰的例证,为果实类型和花器官的进化提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/061d/11354807/046ba4610a47/ijms-25-08962-g001.jpg

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