Satellite DNA Is an Inseparable Fellow Traveler of B Chromosomes.

Prog Mol Subcell Biol

Departamento de Genética, Facultad de Ciencias, Universidad de Granada, Granada, Spain.

Published: September 2021

AI Article Synopsis

  • Next-Generation Sequencing (NGS) shows that B chromosomes in some species have a lot of special repeating DNA called satellite DNA (satDNA).
  • Scientists are trying to figure out if this satDNA is important for how B chromosomes work, or if it just ends up there because of how B chromosomes act.
  • In a study of 16 species, 38% had unique satDNAs specific to B chromosomes, but only one had a B chromosome from a different species, suggesting that unique satDNAs can develop in B chromosomes that arise within a species.

Article Abstract

Next-Generation Sequencing (NGS) has revealed that B chromosomes in several species are enriched in repetitive DNA, mostly satellite DNA (satDNA). This raises the question of whether satDNA is important to B chromosomes for functional reasons or else its abundance on Bs is simply a consequence of properties of B chromosomes such as their dispensability and late replication. Here we review current knowledge in this respect and contextualize it within the frame of practical difficulties to perform this kind of research, the most important being the absence of good full genome sequencing for B-carrying species, which is an essential requisite to ascertain the intragenomic origin of B chromosomes. Our review analysis on 16 species revealed that 38% of them showed B-specific satDNAs whereas only one of them (6%) carried an inter-specifically originated B chromosome. This shows that B-specific satDNA families can eventually evolve in intraspecifically arisen B chromosomes. Finally, the possibility of satDNA accumulation on B chromosomes for functional reasons is exemplified by B chromosomes in rye, as they contain B-specific satDNAs which are transcribed and occupy chromosome locations where they might facilitate the kind of drive shown by this B chromosome during pollen grain mitosis.

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Source
http://dx.doi.org/10.1007/978-3-030-74889-0_4DOI Listing

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