首页|A Solution to the C-Value Paradox and the Function of Junk DNA: The Genome Balance Hypothesis

A Solution to the C-Value Paradox and the Function of Junk DNA: The Genome Balance Hypothesis

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The Genome Balance Hypothesis originated from a recent study that provided a mechanism for the phenomenon of genome dominance in ancient polyploids:unique 24nt RNA coverage near genes is greater in genes on the recessive subgenome irrespective of differences in gene expression.24nt RNAs target transposons.Transposon position effects are now hypothesized to balance the expression of networked genes and provide spring-like tension between pericentromeric heterochromatin and microtubules.The balance (coordination) of gene expression and centromere movement is under selection.Our hypothesis states that this balance can be maintained by many or few transposons about equally well.We explain known balanced distributions of junk DNA within genomes and between subgenomes in allopolyploids (and our hypothesis passes "the onion test" for any so-called solution to the C-value paradox).Importantly,when the allotetraploid maize chromosomes delete redundant genes,their nearby transposons are also lost;this result is explained if transposons near genes function.The Genome Balance Hypothesis is hypothetical because the position effect mechanisms implicated are not proved to apply to all junk DNA,and the continuous nature of the centromeric and gene position effects have not yet been studied as a single phenomenon.

junk DNAtransposonsC-valueparadoxgene regulationbalance

Michael Freeling、Jie Xu、Margaret Woodhouse、Damon Lisch

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Department of Plant and Microbial Biology,University of California,Berkeley,CA 94720,USA

Maize Research Institute,Sichuan Agricultural University,Wenjiang,Sichuan 611130,China

Department of Botany and Plant Pathology,Purdue University,West Lafayette,IN 47907,USA

China Scholarship Council joint PhD training program scholarship to facilitate graduate work in the USA (J.X.)

IOS1237931 IOS1248106

2015

分子植物(英文版)
中科院上海生命科学研究院植物生理生态所 中国植物生理学会

分子植物(英文版)

CSTPCDCSCDSCI
影响因子:0.659
ISSN:1674-2052
年,卷(期):2015.8(6)
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