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high expression level
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during endormancy breaking, Apx activity decreases from deepest period to mid-breaking period, but then increases rapidly during ate-breaking period
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55.6% relative activity to salivary gland
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presence of two major non-plastid isozymes
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high expression level
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31.1% relative activity to salivary gland
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20% relative activity to salivary gland
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highest activity
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GhAPX1 is highly expressed in wild-type 5-day postanthesis fibres with much lower transcript levels in the fuzzless-lintless mutant ovules. GhAPX1 expression is upregulated in response to an increase in cellular H2O2 and ethylene
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cotton bolls
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high expression level
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green mature banana fruit approximately 110 days after anthesis, harvested from an orchard in Guangzhou, Guangdong province, China. MaMsrB2 and MaAPX1 are isolated from a banana transcriptome database. Their transcript levels in the peel during fruit ripening and senescence are investigated by quantitative real-time PCR expression analysis
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APX6 is nearly 4fold higher in late senescing leaves of 6.5-week-old plants compared with young green leaves of 4-week-old plants
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activity decreases during germination, strongly increases during callus induction and proliferation, and decreases during shoot and root induction
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salt stressed leaves
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the gene expression profile of CsAPX1 encoding ascorbate peroxidase (APX) is regulated by light/dark conditions. AsA accumulation and APX activity are suppressed by light/dark conditions
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presence of two major non-plastid isozymes
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highest expression level
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blades and sheaths
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low expression level at blade sheath, high expression level at blade ear
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high expression level. Isoform Apx1 expression level is higher compared to isoform Apx2
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isoform Apx1 expression level is higher compared to isoform Apx2
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Populus simonii x Populus pyramidalis
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expression levels are higher in leaves than in roots or stems
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total APX activity, on a fresh weight basis, is stimulated only at 2 mM methyl viologen at 24 h, but dropps at higher doses
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young leaves contain low amounts of enzyme, in mature green leaves, small amounts of the enzyme are distributed in vascular systems, in particular in companion cells
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nodules
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nodules
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activity decreases during germination, strongly increases during callus induction and proliferation, and decreases during shoot and root induction
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nodules
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presence of two major non-plastid isozymes
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nodules
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nodules
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of seedlings. NaCl-enhanced expression of OsAPx8 in rice roots is mediated through an accumulation of abscisic acid. Na+ but not Cl- is required for enhancing OsAPx8 expression. H2O2 is not involved in the regulation of NaCl-induced OsAPx8 expression in rice roots
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of seedlings. No significant increase due to NaCl can be detected in the expression of OsAPx1
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of seedlings. No significant increase due to NaCl can be detected in the expression of OsAPx2
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of seedlings. No significant increase due to NaCl can be detected in the expression of OsAPx3
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of seedlings. No significant increase due to NaCl can be detected in the expression of OsAPx4
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of seedlings. No significant increase due to NaCl can be detected in the expression of OsAPx5
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of seedlings. No significant increase due to NaCl can be detected in the expression of OsAPx6
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of seedlings. The expression of OsAPx7 is not affected by 150 mM and 200 mM NaCl, but is 40% decreased by 300 mM NaCl
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low expression level
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nodules
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expression levels are higher in leaves than in roots or stems
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nodules
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nodules
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nodules
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nodules
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germinating
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cAPX 2 is involved in flooding stress responses in young soybean seedlings
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root of seedling, increase in enzyme activity after treatment with NaCl or H2O2, inhibition of enzyme accumulation by diphenyleneiodinium chloride or imidazole, but not by dimethylthiourea
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root. NaCl-enhanced expression of OsAPx8 in rice roots is mediated through an accumulation of abscisic acid. Na+ but not Cl- is required for enhancing OsAPx8 expression. H2O2 is not involved in the regulation of NaCl-induced OsAPx8 expression in rice roots
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root. No significant increase due to NaCl can be detected in the expression of OsAPx1
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root. No significant increase due to NaCl can be detected in the expression of OsAPx2
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root. No significant increase due to NaCl can be detected in the expression of OsAPx3
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root. No significant increase due to NaCl can be detected in the expression of OsAPx4
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root. No significant increase due to NaCl can be detected in the expression of OsAPx5
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root. No significant increase due to NaCl can be detected in the expression of OsAPx6
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root. The expression of OsAPx7 is not affected by 150 mM and 200 mM NaCl, but is 40% decreased by 300 mM NaCl
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activity decreases during germination, strongly increases during callus induction and proliferation, and decreases during shoot and root induction
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lowest expression level
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high expression level
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expression levels are higher in leaves than in roots or stems
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additional information
the constitutive expression of APX6 is restricted to old and dying cells and absent in younger tissues
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additional information
ascorbate peroxidase is not detected in dry mature seed
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additional information
ascorbate peroxidase is not detected in dry mature seed
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additional information
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ascorbate peroxidase is not detected in dry mature seed
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additional information
expression in all tissues, level of expression varies considerably
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additional information
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transcriptomic analysis, the organisms possesses kinetoplastid-specific hAPX-CCP. Gene expression shows the highest number of transcripts at 14°C and its decrease with elevated temperature
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additional information
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APX activity is highest in the leaf blades and tends to be higher in older than in younger plant parts
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additional information
eight APX isozymes are expressed differently in root, leaf, panicle, anther, pistil and seed
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additional information
eight APX isozymes are expressed differently in root, leaf, panicle, anther, pistil and seed
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additional information
eight APX isozymes are expressed differently in root, leaf, panicle, anther, pistil and seed
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additional information
eight APX isozymes are expressed differently in root, leaf, panicle, anther, pistil and seed
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additional information
eight APX isozymes are expressed differently in root, leaf, panicle, anther, pistil and seed
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additional information
eight APX isozymes are expressed differently in root, leaf, panicle, anther, pistil and seed
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additional information
eight APX isozymes are expressed differently in root, leaf, panicle, anther, pistil and seed
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additional information
eight APX isozymes are expressed differently in root, leaf, panicle, anther, pistil and seed
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additional information
eight APX isozymes are expressed differently in root, leaf, panicle, anther, pistil and seed. High expression level of isozyme OsAPX1
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additional information
eight APX isozymes are expressed differently in root, leaf, panicle, anther, pistil and seed. High expression level of isozyme OsAPX1
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additional information
eight APX isozymes are expressed differently in root, leaf, panicle, anther, pistil and seed. High expression level of isozyme OsAPX1
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additional information
eight APX isozymes are expressed differently in root, leaf, panicle, anther, pistil and seed. High expression level of isozyme OsAPX1
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additional information
eight APX isozymes are expressed differently in root, leaf, panicle, anther, pistil and seed. High expression level of isozyme OsAPX1
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additional information
eight APX isozymes are expressed differently in root, leaf, panicle, anther, pistil and seed. High expression level of isozyme OsAPX1
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additional information
eight APX isozymes are expressed differently in root, leaf, panicle, anther, pistil and seed. High expression level of isozyme OsAPX1
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additional information
eight APX isozymes are expressed differently in root, leaf, panicle, anther, pistil and seed. High expression level of isozyme OsAPX1
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additional information
eight APX isozymes are expressed differently in root, leaf, panicle, anther, pistil and seed. High expression level of isozyme OsAPX2
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additional information
eight APX isozymes are expressed differently in root, leaf, panicle, anther, pistil and seed. High expression level of isozyme OsAPX2
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additional information
eight APX isozymes are expressed differently in root, leaf, panicle, anther, pistil and seed. High expression level of isozyme OsAPX2
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additional information
eight APX isozymes are expressed differently in root, leaf, panicle, anther, pistil and seed. High expression level of isozyme OsAPX2
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additional information
eight APX isozymes are expressed differently in root, leaf, panicle, anther, pistil and seed. High expression level of isozyme OsAPX2
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additional information
eight APX isozymes are expressed differently in root, leaf, panicle, anther, pistil and seed. High expression level of isozyme OsAPX2
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additional information
eight APX isozymes are expressed differently in root, leaf, panicle, anther, pistil and seed. High expression level of isozyme OsAPX2
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additional information
eight APX isozymes are expressed differently in root, leaf, panicle, anther, pistil and seed. High expression level of isozyme OsAPX2
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additional information
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RcAPX is found in all tested tissues with highest amounts in young petioles. Enzyme RcAPX shows differential expression in different tissues at various developmental stages. RcAPX expression is significantly suppressed by galls, Galla chinensis, resulting from the galling aphid Schlechtendalia chinensis parasitizing the vein or compound leaves of Rhus chinensis
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