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In the study, 14,623 (36.87%) intronless genes in maize were identified and the percentage is greater than that of other monocots and algae.
The C4-like genes homologous to PEPC, NADP-ME, MDH, and PPDK in maize were identified in the A, B, and D sub-genomes of bread wheat, located on the long arms of chromosomes 3 and 5 (TaPEPC), short arms of chromosomes 1 and 3 (TaNADP-ME), long arms of chromosomes 1 and 7 (TaMDH), and long arms of chromosome 1 (TaPPDK), respectively.
A small but significant number of mutant genes in maize were identified using map-based cloning approaches relying on rice synteny, prior to the publication of the maize genome.
In this study, nine NAS genes in maize were identified by genomic mining.
Enzymes involved in folate synthesis in maize were identified via BLAST using homologs from Arabidopsis.
Until recently, nearly all the miRNAs in maize were identified by comparative analysis to miRNAs sequences of other plant species, such as rice and Arabidopsis.
Similar(49)
In this region a benzoxazionoid QTL in maize was identified [ 32] which causes aphid resistance and is associated with low levels of 2,4-dihydroxy-7-methoxy-1,4-benzoxazin-3-one glucoside methyltransferase leading to an increased aphid resistance by promoting callose deposition.
In order to assess whether these components also play a role in maize rhythmic expression, the best maize orthologs were identified by reciprocal BLASTp searches.
Classical maize genes were identified from the list of maize loci maintained by MaizeGDB [5], [6] and include genes with associated GenBank sequence records with greater than three referencing papers in the database, additional cloned genes with known mutant phenotypes, as well as genes added after soliciting community input.
We detected 16,835 methylated promoters and 16,758 methylated TTRs in maize endosperm genome, while 44,488 methylated promoters and 41,715 methylated TTRs in maize embryo were identified.
In contrast to Arabidopsis, three rice genes and four maize genes were identified in the WOX3 subfamily.
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