Literature DB >> 29718474

Aluminum effects on photosynthesis, reactive oxygen species and methylglyoxal detoxification in two Citrus species differing in aluminum tolerance.

Peng Guo1, Yi-Ping Qi2, Yan-Tong Cai1, Tao-Yu Yang1, Lin-Tong Yang1, Zeng-Rong Huang1, Li-Song Chen1,3,4.   

Abstract

Citrus are mainly grown in low pH soils with high active aluminum (Al). 'Xuegan' (Citrus sinensis (L.) Osbeck) and 'Shatian pummelo' (Citrus grandis (L.) Osbeck) seedlings were fertilized for 18 weeks with nutrient solution containing either 0 mM (control) or 1 mM (Al toxicity) AlCl3·6H2O. Aluminum induced decreases of biomass, leaf photosynthesis, relative water content and total soluble protein levels, and increases of methylglyoxal levels only occurred in C. grandis roots and leaves. Besides, the Al-induced decreases of pigments and alterations of chlorophyll a fluorescence transients and fluorescence parameters were greater in C. grandis leaves than those in C. sinensis leaves. Aluminum-treated C. grandis had higher stem and leaf Al levels and similar root Al levels relative to Al-treated C. sinensis, but lower Al distribution in roots and Al uptake per plant. Aluminum toxicity decreased nitrogen, phosphorus, potassium, calcium, magnesium and sulfur uptake per plant in C. grandis and C. sinensis seedlings, with the exception of Al-treated C. sinensis seedlings exhibiting increased sulfur uptake per plant and unaltered magnesium uptake per plant. Under Al-stress, macroelement uptake per plant was higher in C. sinensis than that in C. grandis. Aluminum toxicity decreased the ratios of reduced glutathione/(reduced + oxidized glutathione) and of ascorbate/(ascorbate + dehydroascorbate) only in C. grandis roots and leaves. The activities of most antioxidant enzymes, sulfur metabolism-related enzymes and glyoxalases and the levels of S-containing compounds were higher in Al-treated C. sinensis roots and leaves than those in Al-treated C. grandis ones. Thus, C. sinensis displayed higher Al tolerance than C. grandis did. The higher Al tolerance of C. sinensis might involve: (i) more Al accumulation in roots and less transport of Al from roots to shoots; (ii) efficient maintenance of nutrient homeostasis; and (iii) efficient maintenance of redox homeostasis via detoxification systems of reactive oxygen species and methylglyoxal.

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Year:  2018        PMID: 29718474     DOI: 10.1093/treephys/tpy035

Source DB:  PubMed          Journal:  Tree Physiol        ISSN: 0829-318X            Impact factor:   4.196


  13 in total

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4.  Transcriptome and metabolome analysis of stress tolerance to aluminium in Vitis quinquangularis.

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5.  Low pH effects on reactive oxygen species and methylglyoxal metabolisms in Citrus roots and leaves.

Authors:  An Long; Wei-Lin Huang; Yi-Ping Qi; Lin-Tong Yang; Ning-Wei Lai; Jiu-Xin Guo; Li-Song Chen
Journal:  BMC Plant Biol       Date:  2019-11-06       Impact factor: 4.215

6.  Magnesium-Deficiency Effects on Pigments, Photosynthesis and Photosynthetic Electron Transport of Leaves, and Nutrients of Leaf Blades and Veins in Citrus sinensis Seedlings.

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Review 7.  Citrus Physiological and Molecular Response to Boron Stresses.

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8.  Low pH-responsive proteins revealed by a 2-DE based MS approach and related physiological responses in Citrus leaves.

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Journal:  BMC Plant Biol       Date:  2018-09-12       Impact factor: 4.215

9.  Identification of candidate genes conferring tolerance to aluminum stress in Pinus massoniana inoculated with ectomycorrhizal fungus.

Authors:  Haiyan Liu; Houying Chen; Guijie Ding; Kuaifen Li; Qifei Ren
Journal:  BMC Plant Biol       Date:  2020-11-16       Impact factor: 4.215

10.  Comparative transcriptome analysis reveals candidate genes related to cadmium accumulation and tolerance in two almond mushroom (Agaricus brasiliensis) strains with contrasting cadmium tolerance.

Authors:  Peng-Hu Liu; Zai-Xing Huang; Xu-Hui Luo; Hua Chen; Bo-Qi Weng; Yi-Xiang Wang; Li-Song Chen
Journal:  PLoS One       Date:  2020-09-29       Impact factor: 3.240

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