Dosage-sensitivity shapes how genes transcriptionally respond to allopolyploidy and homoeologous exchange in resynthesized Brassica napus

Author:

Bird Kevin A12ORCID,Pires J Chris3,VanBuren Robert14,Xiong Zhiyong5,Edger Patrick P12

Affiliation:

1. Department of Horticulture, Michigan State University , East Lansing, MI 48824 , USA

2. Ecology, Evolution, and Behavior Program, Michigan State University , East Lansing, MI 48824 , USA

3. Department of Soil and Crop Sciences, Colorado State University , Fort Collins, CO 80523 , USA

4. Plant Resilience Institute, Michigan State University , East Lansing, MI 48824 , USA

5. Key Laboratory of Herbage and Endemic Crop Biotechnology, Inner Mongolia University , Hohhot, Inner Mongolia 010070 , China

Abstract

Abstract The gene balance hypothesis proposes that selection acts on the dosage (i.e. copy number) of genes within dosage-sensitive portions of networks, pathways, and protein complexes to maintain balanced stoichiometry of interacting proteins, because perturbations to stoichiometric balance can result in reduced fitness. This selection has been called dosage balance selection. Dosage balance selection is also hypothesized to constrain expression responses to dosage changes, making dosage-sensitive genes (those encoding members of interacting proteins) experience more similar expression changes. In allopolyploids, where whole-genome duplication involves hybridization of diverged lineages, organisms often experience homoeologous exchanges that recombine, duplicate, and delete homoeologous regions of the genome and alter the expression of homoeologous gene pairs. Although the gene balance hypothesis makes predictions about the expression response to homoeologous exchanges, they have not been empirically tested. We used genomic and transcriptomic data from 6 resynthesized, isogenic Brassica napus lines over 10 generations to identify homoeologous exchanges, analyzed expression responses, and tested for patterns of genomic imbalance. Groups of dosage-sensitive genes had less variable expression responses to homoeologous exchanges than dosage-insensitive genes, a sign that their relative dosage is constrained. This difference was absent for homoeologous pairs whose expression was biased toward the B. napus A subgenome. Finally, the expression response to homoeologous exchanges was more variable than the response to whole-genome duplication, suggesting homoeologous exchanges create genomic imbalance. These findings expand our knowledge of the impact of dosage balance selection on genome evolution and potentially connect patterns in polyploid genomes over time, from homoeolog expression bias to duplicate gene retention.

Funder

MSU-AgBioResearch

USDA-NIFA HATCH

NSF-IOS PGRP

NSF-GRFP DGE

NSF-IOS PRFB

National Key Research and Developmental Program of China

National Natural Science Foundation of China

Publisher

Oxford University Press (OUP)

Subject

Genetics

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