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7 results for “Paeonia ostii”
Fig. 4 in Characterization of the stearoyl-ACP desaturase gene (PoSAD) from woody oil crop Paeonia ostii var. lishizhenii in oleic acid biosynthesis
Fig. 4. Quantification of fatty acids in the developing endosperm of P. ostii var. lishizhenii. The FA contents (A) and composition (B) in the developing endosperm of P. ostii var. lishizhenii. The graph shows average values of three replicates with the respective error bars indicating standard deviations. Different letters above the columns indicate significant differences at P<0.05.
Fig. 5 in Characterization of the stearoyl-ACP desaturase gene (PoSAD) from woody oil crop Paeonia ostii var. lishizhenii in oleic acid biosynthesis
Fig. 5. The fatty acid contents (A) and the ratios of PA/POA and SA/OA (B) in pYES2-PoSAD and pYES2 transgenic INVSc1. The graph shows average values of three replicates with the respective error bars indicating standard deviations. Different letters above the columns indicate significant differences at P <0.05.
Fig. 3 in Characterization of the stearoyl-ACP desaturase gene (PoSAD) from woody oil crop Paeonia ostii var. lishizhenii in oleic acid biosynthesis
Fig. 3. Relative expression levels of PoSAD by qRT-PCR. The data show the relative gene expression of PoSAD in Paeonia ostii var. lishizhenii roots, leaves, shoots, stems, petals, stamens and seven development stages of endosperm (S1~S7). The graph shows average values of three replicates with the respective error bars indicating standard deviations.
Fig. 2 in Characterization of the stearoyl-ACP desaturase gene (PoSAD) from woody oil crop Paeonia ostii var. lishizhenii in oleic acid biosynthesis
Fig. 2. Phylogenetic analysis of plant stearoyl-ACP desaturase. The position of PoSAD is marked by a bold black dot. Plant species included in the phylogenetic tree are: Arabidopsis thaliana, Camellia sinensis, Camellia oleifera, Citrus clementina, Corchorus capsularis, Citrus sinensis, Citrus unshiu, Coffea arabica, Herrania umbratica, Manihot esculenta, Macadamia tetraphylla, Nelumbo nucifera, Oryza sativa, Paeonia lactiflora, Paeonia ludlowii, Panicum miliaceum, Populus alba, Populus euphratica, Populus trichocarpa, Ricinus communis, Setaria italica, Theobroma cacao, Triticum aestivum, Vernicia montana, Vitis vinifera, Zea mays and Ziziphus jujube.
Fig. 6 in Characterization of the stearoyl-ACP desaturase gene (PoSAD) from woody oil crop Paeonia ostii var. lishizhenii in oleic acid biosynthesis
Fig. 6. Fatty acid analysis of A. thaliana seeds. (A) FA contents in the seeds of wild-type, empty and three different PoSAD overexpressing transgenic A. thaliana lines. (B) FA composition in the seed oils of wild-type, empty and three different PoSAD overexpressing transgenic A. thaliana lines. The graph shows average values of three replicates with the respective error bars indicating standard deviations. Different letters above the columns indicate significant differences at P<0.05.
Fig. 1 in Characterization of the stearoyl-ACP desaturase gene (PoSAD) from woody oil crop Paeonia ostii var. lishizhenii in oleic acid biosynthesis
Fig. 1. Multiple alignments of amino acid sequences of stearoyl-ACP desaturase. Plant species include Paeonia ostii var. lishizhenii, Paeonia lactiflora, Zea mays, Arabidopsis thaliana, Oryza sativa, Setaria italica and Vitis vinifera. The black and other colors of boxes show identical and similar amino acids, respectively.
Deep sequencing of Paeonia ostii small RNAs in response to copper stress
GEO Series GSE62661. Paeonia ostii. 2 samples. Type: Non-coding RNA profiling by high throughput sequencing.
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