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OXPHOS is under dual genetic control, with communication between the nuclear and mitochondrial genomes essential for optimal assembly and function of the system.
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Friebe, P., Boudet, J., Simorre, J. P. & Bartenschlager, R. Kissing-Loop Interaction in the 3′ End of the Hepatitis C Virus Genome Essential for RNA Replication.
High-density markers provide a way of tracking changes in different parts of the genome, essential for understanding hybridization and introgression as well as adaptation under climate change including the application of quantitative genomic approaches to identify regions with candidate genes (Fig. 1).
Efficient and complete replication of the genome is essential for genome stability.
The identification of chromosomal homologous segments (CHS) within and between genomes is essential for comparative genomics.
Thus, tightly coordinated gene expression between the plastid and nuclear genomes is essential for chloroplast development.
To predict and identify TF binding sites throughout genomes is essential for understanding gene regulation [17].
Reference genomes are essential for accurately determining the taxonomy of short metagenomic sequence fragments (Woyke et al. 2009).
The distinct transcript boundaries and multigene operon structure in a genome are essential for elucidating a genome's regulatory mechanisms.
Recent studies have shown that the spatial organization of the genome is essential for normal brain development and function.
Tandemly repeated 72-base-pair (bp) segments located between nucleotides 107 and 250 of the simian virus 40 genome are essential for early region transcription.
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