A Century of B Chromosomes in Plants: So What?
Open Access
- 17 August 2007
- journal article
- research article
- Published by Oxford University Press (OUP) in Annals of Botany
- Vol. 101 (6) , 767-775
- https://doi.org/10.1093/aob/mcm167
Abstract
Supernumerary B chromosomes (Bs) are a major source of intraspecific variation in nuclear DNA amounts in numerous species of plants. They favour large genomes, and create polymorphisms for DNA variation in natural populations. By studying Bs we can gain useful knowledge about the organization, function and evolution of genomes. There are also significant biological questions concerning the origin and structural organization of Bs, and the way in which these selfish elements can establish themselves by exploiting the replicative machinery of their host genome nucleus. It is a sine qua non that Bs originate from the A chromosomes, in a variety of ways. We can study their modes of drive and ask how it is that chromosomes which apparently lack genes can have control over their own drive process which leads to their survival in natural populations. Molecular cytogenetic studies are opening up new avenues of investigation. Population equilibria for B frequencies are determined by a balance between accumulation and harmful effects. Bs are also subject to meiotic loss due to polysomy and to elimination at meiosis as univalents. These balancing forces can be seen in the context of host/parasite interaction, based on a dissection of the genetic elements in both As and Bs (in maize) which interact to bring about a stable equilibrium, at least for a snapshot in time. Aside from their intrinsic enigmatic properties, B chromosomes make useful experimental tools to study genome organization. Thus far they have not been exploited for their applications, other than through the use of A-B translocations used for gene mapping in maize; but there are opportunities to use them to modulate the frequency and distribution of recombination, to diploidize allopolyploids, to study centromeres and to be developed as plant artificial chromosomes; given that they can be structurally modified and their inheritance stabilized.Keywords
This publication has 31 references indexed in Scilit:
- Centromere Function and Nondisjunction Are Independent Components of the Maize B Chromosome Accumulation MechanismPlant Cell, 2007
- Molecular Evidence for Transcription of Genes on a B Chromosome in Crepis capillarisGenetics, 2005
- Differential gene expression in yellow-necked mice Apodemus flavicollis (Rodentia, Mammalia) with and without B chromosomesChromosoma, 2005
- Genome conflict in the gramineaeNew Phytologist, 2004
- Extrachromosomal Circular DNA of Tandemly Repeated Genomic Sequences in DrosophilaGenome Research, 2003
- Origin of an apparent B chromosome by mutation, chromosome fragmentation and specific DNA sequence amplificationChromosoma, 2002
- THE B CHROMOSOME OF CORNAnnual Review of Genetics, 1978
- Nuclear DNA Variation Due to B ChromosomesCold Spring Harbor Symposia on Quantitative Biology, 1974
- Suppression of Homoeologous Pairing by B Chromosomes in a Lolium Species HybridNature New Biology, 1972
- CYTOLOGICAL STUDIES OF EXTRA FRAGMENT CHROMOSOMES IN RYE .3. THE MECHANISM OF NON-DISJUNCTION AT THE POLLEN MITOSIS1946