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United States Department of Agriculture

Agricultural Research Service

Title: Cloning and phylogenetic analysis of polyphenol oxidase genes in common wheat and related species

Authors
item He, X. - INST. CROP SCI CHINA
item He, Z. - INT MAIZE & WHEAT IMP CNT
item Morris, Craig
item Xia, X. - INST. CROP SCI CHINA

Submitted to: Genetic Resources and Crop Evolution
Publication Type: Peer Reviewed Journal
Publication Acceptance Date: July 15, 2008
Publication Date: April 7, 2009
Repository URL: http://hdl.handle.net/10113/30574
Citation: He, X.Y., He, Z.H., Morris, C.F., Xia, X.C. 2009. Cloning and phylogenetic analysis of polyphenol oxidase genes in common wheat and related species. Genetic Resources and Crop Evolution 56: 311-321.

Interpretive Summary: Cloning and phylogenetic analysis of wheat and its relatives would greatly advance the understanding of molecular mechanisms of grain PPO activity. This particular study examines six wheat relative species were sampled corresponding to common wheat varieties and seven new alleles were identified from these species and given designation. These alleles are discussed here as are the relationships between these allelic variants and grain PPO activities.

Technical Abstract: Cloning and phylogenetic analysis of polyphenol oxidase (PPO) genes in common wheat and its relatives would greatly advance the understanding of molecular mechanisms of grain PPO activity. In the present study, six wheat relative species, including T. urartu, T. boeoticum, T. monococcum, T. dicoccoides, T. durum and Ae. Tauschii, were sampled to isolate new alleles at Ppo-A1 and Ppo-D1 loci corresponding to common wheat PPO genes, and seven new alleles were identified from these species, which were designated as Ppo-A1c (from T. uratu), Ppo-Ad (T. boeoticum), Ppo-A1e (T. monococcum and T. durum), Ppo-A1f (T. diococcoides), Ppo-A1g (T. durum), Ppo-D1c (Ae. Tauschii), respectively. Five out of the seven alleles detected in the wheat relatives contained an open reading frame (ORF) of 1,731 bp, encoding a polypeptide of 577 residues, which is the same as those of Ppo-A1 and Ppo-D1 genes in common wheat, whereas, the full-length ORF of the allele Ppo-A1g from T. durum was not obtained, and a 73-bp deletion occurred in the third exon of Ppo-D1d, an allele from Ae. tauschii, resulting in a shorter polypeptide of 466 amino acids. The 191-bp insertion in the first intron reported previously in common wheat was also found in T. dioccoides lines, implying that more than one tetraploid wheat lines may be involved in the origination of common wheat. Phylogenetic trees were constructed using the genomic sequences deposited in GenBank. The genome tribe A was divided into two clusters, one of which contained Ppo-A1d and Ppo-A1e, and the other included the remaining five alleles at Ppo-A1 locus. The alleles from different clusters showed high sequence divergences, indicated by dozens on SNPs and five to six InDels. The genome tribe D comprised the alleles Ppo-D1a, Ppo-D1c, Ppo-D1d and Ppo-D1e, and the other included the remaining five alleles at Ppo-A1 locus. The alleles from different clusters showed high sequence divergences, indicated by dozens of SNPs and five to six InDels. The genome tribe D comprised the alleles Ppo-D1a, Ppo-D1c, Ppo-D1d and Ppo-D1b, and the former three were clustered together, showing significant sequence divergence from Ppo-D1b. In addition, the relationships between these allelic variants and grain PPO activities were also discussed.

Last Modified: 11/28/2014
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