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1.
Plant Cell ; 26(10): 3939-48, 2014 Oct.
Artículo en Inglés | MEDLINE | ID: mdl-25315323

RESUMEN

Maize (Zea mays) displays an exceptional level of structural genomic diversity, which is likely unique among higher eukaryotes. In this study, we surveyed how the genetic divergence of two maize inbred lines affects the transcriptomic landscape in four different primary root tissues of their F1-hybrid progeny. An extreme instance of complementation was frequently observed: genes that were expressed in only one parent but in both reciprocal hybrids. This single-parent expression (SPE) pattern was detected for 2341 genes with up to 1287 SPE patterns per tissue. As a consequence, the number of active genes in hybrids exceeded that of their parents in each tissue by >400. SPE patterns are highly dynamic, as illustrated by their excessive degree of tissue specificity (80%). The biological significance of this type of complementation is underpinned by the observation that a disproportionally high number of SPE genes (75 to 82%) is nonsyntenic, as opposed to all expressed genes (36%). These genes likely evolved after the last whole-genome duplication and are therefore younger than the syntenic genes. In summary, SPE genes shape the remarkable gene expression plasticity between root tissues and complementation in maize hybrids, resulting in a tissue-specific increase of active genes in F1-hybrids compared with their inbred parents.


Asunto(s)
Regulación de la Expresión Génica de las Plantas , Genes de Plantas/genética , Vigor Híbrido/genética , Zea mays/genética , Perfilación de la Expresión Génica , Ontología de Genes , Genotipo , Hibridación Genética , Cadenas de Markov , Método de Montecarlo , Raíces de Plantas/genética
2.
Genome Res ; 22(12): 2445-54, 2012 Dec.
Artículo en Inglés | MEDLINE | ID: mdl-23086286

RESUMEN

Typically, F(1)-hybrids are more vigorous than their homozygous, genetically distinct parents, a phenomenon known as heterosis. In the present study, the transcriptomes of the reciprocal maize (Zea mays L.) hybrids B73×Mo17 and Mo17×B73 and their parental inbred lines B73 and Mo17 were surveyed in primary roots, early in the developmental manifestation of heterotic root traits. The application of statistical methods and a suitable experimental design established that 34,233 (i.e., 86%) of all high-confidence maize genes were expressed in at least one genotype. Nearly 70% of all expressed genes were differentially expressed between the two parents and 42%-55% of expressed genes were differentially expressed between one of the parents and one of the hybrids. In both hybrids, ∼10% of expressed genes exhibited nonadditive gene expression. Consistent with the dominance model (i.e., complementation) for heterosis, 1124 genes that were expressed in the hybrids were expressed in only one of the two parents. For 65 genes, it could be shown that this was a consequence of complementation of genomic presence/absence variation. For dozens of other genes, alleles from the inactive inbred were activated in the hybrid, presumably via interactions with regulatory factors from the active inbred. As a consequence of these types of complementation, both hybrids expressed more genes than did either parental inbred. Finally, in hybrids, ∼14% of expressed genes exhibited allele-specific expression (ASE) levels that differed significantly from the parental-inbred expression ratios, providing further evidence for interactions of regulatory factors from one parental genome with target genes from the other parental genome.


Asunto(s)
Regulación de la Expresión Génica de las Plantas , Hibridación Genética , Proteínas de Plantas/genética , Transcriptoma , Zea mays/genética , Alelos , Mapeo Cromosómico , Genotipo , Endogamia , Fenotipo , Proteínas de Plantas/metabolismo , Raíces de Plantas/química , Raíces de Plantas/genética , ARN de Planta/genética , Análisis de Secuencia de ARN
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