4.2 Article

Rye B chromosomes differently influence the expression of A chromosome-encoded genes depending on the host species

期刊

CHROMOSOME RESEARCH
卷 30, 期 4, 页码 335-349

出版社

SPRINGER
DOI: 10.1007/s10577-022-09704-6

关键词

Selfish B chromosome; RNA-seq; Comparative transcriptome analysis; Chromosome drive; Plants

资金

  1. Deutsche Forschungsgemeinschaft DFG [HO1779/30-1]
  2. DFG [491250510]

向作者/读者索取更多资源

The B chromosome has a significant impact on the transcriptome of the standard A chromosomes, affecting processes such as gene silencing, DNA methylation, chromatin silencing, gene expression regulation, epigenetics, post-embryonic development, and chromosome organization. Genes responsive to B chromosomes in rye and wheat have similar biological functions. The number of B chromosomes is positively correlated with the presence of B-specific transcripts.
The B chromosome (B) is a dispensable component of the genome in many species. To evaluate the impact of Bs on the transcriptome of the standard A chromosomes (A), comparative RNA-seq analyses of rye and wheat anthers with and without additional rye Bs were conducted. In both species, 5-6% of the A-derived transcripts across the entire genomes were differentially expressed in the presence of 2Bs. The GO term enrichment analysis revealed that Bs influence A chromosome encoded processes like gene silencing; DNA methylation or demethylation; chromatin silencing; negative regulation of gene expression, epigenetic; post-embryonic development; and chromosome organization. 244 B chromosome responsive A-located genes in + 2B rye and + B wheat shared the same biological function. Positively correlated with the number of Bs, 939 and 1391 B-specific transcripts were identified in + 2B and + 4B wheat samples, respectively. 85% of B-transcripts in + 2B were also found in + 4B transcriptomes. 297 B-specific transcripts were identified in + 2B rye, and 27% were common to the B-derived transcripts identified in + B wheat. Bs encode mobile elements and housekeeping genes, but most B-transcripts were without detectable similarity to known genes. Some of these genes are involved in cell division-related functions like Nuf2 and might indicate their importance in maintaining Bs. The transcriptome analysis provides new insights into the complex interrelationship between standard A chromosomes and supernumerary B chromosomes.

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