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Andrea Zuccolo

Researcher at Sant'Anna School of Advanced Studies

Publications -  62
Citations -  12882

Andrea Zuccolo is an academic researcher from Sant'Anna School of Advanced Studies. The author has contributed to research in topics: Genome & Genomics. The author has an hindex of 28, co-authored 57 publications receiving 11155 citations. Previous affiliations of Andrea Zuccolo include University of Milan & King Abdullah University of Science and Technology.

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The B73 Maize Genome: Complexity, Diversity, and Dynamics

Patrick S. Schnable, +159 more
- 20 Nov 2009 - 
TL;DR: The sequence of the maize genome reveals it to be the most complex genome known to date and the correlation of methylation-poor regions with Mu transposon insertions and recombination and how uneven gene losses between duplicated regions were involved in returning an ancient allotetraploid to a genetically diploid state is reported.
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Human gut microbiota in obesity and after gastric bypass

TL;DR: The coexistence of H2-producing bacteria with relatively high numbers of H1-utilizing methanogenic Archaea in the gastrointestinal tract of obese individuals leads to the hypothesis that interspecies H2 transfer between bacterial and archaeal species is an important mechanism for increasing energy uptake by the human large intestine in obese persons.
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A physical, genetic and functional sequence assembly of the barley genome

Klaus F. X. Mayer, +73 more
- 29 Nov 2012 - 
TL;DR: An integrated and ordered physical, genetic and functional sequence resource that describes the barley gene-space in a structured whole-genome context and suggests that post-transcriptional processing forms an important regulatory layer.
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The Norway spruce genome sequence and conifer genome evolution.

TL;DR: The draft assembly of the 20-gigabase genome of Norway spruce (Picea abies), the first available for any gymnosperm, is presented, revealing numerous long (>10,000 base pairs) introns, gene-like fragments, uncharacterized long non-coding RNAs and short RNAs, which opens up new genomic avenues for conifer forestry and breeding.
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The high-quality draft genome of peach ( Prunus persica ) identifies unique patterns of genetic diversity, domestication and genome evolution

TL;DR: Comparisons showed that peach has not undergone recent whole-genome duplication, and even though the ancestral triplicated blocks in peach are fragmentary compared to those in grape, all seven paleosets of paralogs from the putative paleoancestor are detectable.