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- Author:
- Wannian Li; Patrick M. Finnegan; Qin Dai; Dongqiang Guo; Mei Yang
- Source:
- BMC plant biology 2021 v.21 no.1 pp. 14
- ISSN:
- 1471-2229
- Subject:
- Eucalyptus grandis; acclimation; aconitate hydratase; aluminum; citrate (si)-synthase; citrates; cycloheximide; excretion; hybrids; hydroponics; isocitrate dehydrogenase; malates; malic enzyme; metabolism; pH; phosphoenolpyruvate carboxylase; protein synthesis inhibitors; secretion; toxicity; wood
- Abstract:
- ... BACKGROUND: Eucalyptus is the main plantation wood species, mostly grown in aluminized acid soils. To understand the response of Eucalyptus clones to aluminum (Al) toxicity, the Al-tolerant Eucalyptus grandis × E. urophylla clone GL-9 (designated “G9”) and the Al-sensitive E. urophylla clone GL-4 (designated “W4”) were employed to investigate the production and secretion of citrate and malate by r ...
- DOI:
- 10.1186/s12870-020-02788-4
- https://doi.org/10.1186/s12870-020-02788-4
- Author:
- Seung-Min Lee; Sun Bok Lee; Ron Prywes; Christopher D. Vulpe
- Source:
- Genes & nutrition 2015 v.10 no.4 pp. 18
- ISSN:
- 1555-8932
- Subject:
- blood serum; caspases; cell death; chelating agents; citrates; complementary DNA; cycloheximide; deferoxamine; gene overexpression; genes; hepatoma; humans; iron; iron deficiency anemia; messenger RNA; microarray technology; mitogen-activated protein kinase; mutants; nutrient deficiencies; phosphorylation; reactive oxygen species; reverse transcriptase polymerase chain reaction; transcription (genetics); transcriptional activation
- Abstract:
- ... Iron-deficient anemia is a prevalent disease among humans. We searched for genes regulated by iron deficiency and its regulated mechanism. cDNA microarrays were performed using Hepa1c1c7 cells treated with 100 μM desferrioxamine (DFO), an iron chelator. Early growth response 1 (Egr1) was upregulated with at least 20-fold increase within 4 h and lasted for 24 h, which was confirmed by qRT-PCR. This ...
- DOI:
- 10.1007/s12263-015-0468-0
- PubMed:
- 25981695
- PubMed Central:
- PMC4434227
- https://doi.org/10.1007/s12263-015-0468-0
- Author:
- Huaxin Dai; Jing Zhao; Imrul Mosaddek Ahmed; Fangbin Cao; Zhong-Hua Chen; Guoping Zhang; Chengdao Li; Feibo Wu
- Source:
- Plant physiology and biochemistry 2014 v.75 pp. 36-44
- ISSN:
- 0981-9428
- Subject:
- acid soils; adenosinetriphosphatase; aluminum; barley; chloroplasts; citrates; cycloheximide; genes; genetic variation; genotype; germplasm; malates; protein synthesis inhibitors; protons; secretion; toxicity; ultrastructure
- Abstract:
- ... Aluminum (Al) toxicity is a major limiting factor for plant production in acid soils. Wild barley germplasm is a treasure trove of useful genes and offers rich sources of genetic variation for crop improvement. Al-stress-hydroponic-experiments were performed, and the physiochemical characteristic of two contrasting Tibetan wild barley genotypes (Al-resistant XZ16 and Al-sensitive XZ61) and Al-resi ...
- DOI:
- 10.1016/j.plaphy.2013.11.025
- https://doi.org/10.1016/j.plaphy.2013.11.025
- Author:
- Li Yu; Jun Yan; Shirong Guo; Weimin Zhu
- Source:
- Scientia horticulturae 2012 v.135 no. pp. 52-58
- ISSN:
- 0304-4238
- Subject:
- root tips; Vigna unguiculata; secretion; malate dehydrogenase; starvation; acid tolerance; cowpeas; citrates; lanthanum; resistance mechanisms; potassium; root growth; carboxylic acids; plant stress; protein synthesis; acid soils; stress response; citrate (si)-synthase; succinate dehydrogenase (quinone); aluminum; vegetables; cycloheximide
- Abstract:
- ... Cowpea (Vigna unguiculata L. cv. Lulutong 1) is a leguminous vegetable which is well adapted to infertile acid soil. The mechanisms of aluminum (Al) resistance in cowpea are poorly understood. This study aimed to analyze the possible Al resistance mechanisms of cowpea. After exposure to Al, both malate and citrate were secreted from cowpea roots, but the secretion of these organic acids was not sp ...
- DOI:
- 10.1016/j.scienta.2011.12.006
- https://doi.org/10.1016/j.scienta.2011.12.006
- Author:
- You, J. F.; Hou, N. N.; Xu, M. Y.; Zhang, H. M.; Yang, Z. M.
- Source:
- Biologia plantarum 2010 v.54 no.4 pp. 766-768
- ISSN:
- 0006-3134
- Subject:
- Glycine max; aluminum; citrates; cultivars; cycloheximide; exudation; mitochondrial membrane; plasma membrane; protein synthesis; protein synthesis inhibitors; pyridoxal; roots; secretion; soybeans; transporters
- Abstract:
- ... To further understand the process of Al-induced citrate secretion from soybean roots, the effect of protein synthesis inhibitor, anion channel blockers, and citrate carrier inhibitors on Al-induced citrate exudation was investigated in Al-resistant soybean cultivar PI 416937. Citrate exudation from roots increased with the increase of Al concentration from 10 to 50 μM and initiated after 4 h of Al ...
- DOI:
- 10.1007/s10535-010-0138-4
- https://doi.org/10.1007/s10535-010-0138-4
- Author:
- Xiao Ying Dong; Ren Fang Shen; Rong Fu Chen; Zhao Liang Zhu; Jian Feng Ma
- Source:
- Plant and soil 2008 v.306 no.1-2 pp. 139-147
- ISSN:
- 0032-079X
- Subject:
- Lespedeza cuneata; acid tolerance; aluminum; anions; carboxylic acids; citrates; cycloheximide; lanthanum; malates; resistance mechanisms; root growth; roots; secretion; shrubs; starvation; China
- Abstract:
- ... Lespedeza bicolor (Lespedeza bicolor Turcz. cv. Jiangxi) is a leguminous shrub that is well adapted to acid infertile soils. However, the mechanisms of aluminum resistance in this species have not been established. This study aimed to assess the possible resistance mechanisms of this plant to Al. An Al-sensitive species of Lespedeza, sericea lespedeza [Lespedeza cuneata (Dum.-Cours.) G. Don cv. Zh ...
- DOI:
- 10.1007/s11104-008-9564-x
- https://doi.org/10.1007/s11104-008-9564-x