4.7 Review Book Chapter

Patterns and Processes of Diploidization in Land Plants

Journal

ANNUAL REVIEW OF PLANT BIOLOGY, VOL 72, 2021
Volume 72, Issue -, Pages 387-410

Publisher

ANNUAL REVIEWS
DOI: 10.1146/annurev-arplant-050718-100344

Keywords

diploidization; polyploidy; genome evolution; plant genomics; genome fractionation; chromosome pairing

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Funding

  1. NSF [IOS-1811784, IOS-1339156, EF-1550838]

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This review discusses the impact of polyploidy on chromosome pairing behavior in land plants, as well as the two major processes of diploidization: cytological diploidization and genic diploidization/fractionation. It also compares gene fractionation variation across land plants and highlights differences in diploidization between plants and animals.
Most land plants are now known to be ancient polyploids that have rediploidized. Diploidization involves many changes in genome organization that ultimately restore bivalent chromosome pairing and disomic inheritance, and resolve dosage and other issues caused by genome duplication. In this review, we discuss the nature of polyploidy and its impact on chromosome pairing behavior. We also provide an overview of two major and largely independent processes of diploidization: cytological diploidization and genic diploidization/fractionation. Finally, we compare variation in gene fractionation across land plants and highlight the differences in diploidization between plants and animals. Altogether, we demonstrate recent advancements in our understanding of variation in the patterns and processes of diploidization in land plants and provide a road map for future research to unlock the mysteries of diploidization and eukaryotic genome evolution.

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