Cadmium (Cd) contamination of orchard soils threatens tree growth, fruit quality, and food safety, and strategies are needed to limit Cd accumulation in apple. Grafting is widely used in apple production, but how rootstock-scion interactions regulate Cd uptake and detoxification remains unclear. This study aimed to elucidate the physiological and molecular mechanisms by which different apple graft combinations modulate Cd accumulation and tolerance. Four graft combinations comprising 'Hanfu' (HF) or 'Fuji' (FJ) scions grafted onto Malus baccata (Mb) or M. micromalus (Mm) rootstocks, were grown in nutrient solution with or without 50 μM CdCl₂. Plant growth, Cd2+ influx, Cd accumulation and localization, antioxidant capacity, cell wall composition, and root and leaf transcriptomes were analyzed. Cd stress reduced biomass, root system development, and PSII efficiency but generally increased non-enzymatic antioxidant capacity. Mb rootstocks showed lower root net Cd2+ influx, lower Cd accumulation in roots and leaves, and weaker Cd signals in xylem than Mm, indicating a greater ability to restrict Cd uptake and transport. Across combinations, root cell walls were the major Cd sink, and Cd exposure increased pectin, hemicellulose, and lignin contents. Transcriptome analyses revealed rootstock and scion specific Cd responses, with distinct enrichment of genes related to photosynthesis, oxidative stress, and cell wall metabolism. These findings provide a physiological and molecular basis for selecting low-Cd apple graft combinations.
Synthetic communities (SynComs) of plant growth-promoting bacteria (PGPB) could enhance cadmium (Cd) phytoextraction and promote plant growth in Brassica juncea L. However, the precise molecular mechanisms of facilitated Cd uptake and accumulation remain unclear. Here, using a Cd-specific fluorescent probe, we demonstr...
Qiong Wang, Qiyao Zhou, Min Lu et al.· Ecotoxicology and Environmen...· 0 citations
Cadmium (Cd) contamination in agricultural soils threatens crop production and food safety. Although melatonin is known to enhance antioxidant defense, its role in cell-wall remodeling and Cd compartmentalization remains unclear. We investigated the effects of 100 μmol L-1 melatonin on Solanum nigrum exposed to 10 mg k...
Nan Chen, Rui-Bin Jiang, Ming-Ling Cheng et al.· International journal of phy...· 0 citations
To investigate the mitigating role and underlying mechanisms of exogenous boron (B) in cadmium (Cd)-stressed woody fruit trees, a hydroponic study was conducted using Malus hupehensis Rehd. seedlings treated with different B concentrations (0, 12.5, 50, and 150 μM H3BO3). Cd stress significantly inhibited plant growth...
Cadmium (Cd) contamination is a major constraint limiting the yield and quality of medicinal plants. In this study, the effects of exogenous nitrogen on alleviating Cd toxicity in
Pinellia ternata
seedlings were investigated, and the underlying mechanisms were explored using integrated physiological, transcriptomic...
Cadmium (Cd) accumulation in plants poses a serious risk to crop growth and human health. Although rhizobacteria are known to enhance plant Cd tolerance, research on rhizobacterial consortium to alleviate Cd toxicity in crops under hydroponic conditions remains limited. Two rhizobacterial strains, Bacillus cereus TLMC1...
Mi Shen, Wei Kang, Ruofei Liu et al.· International journal of phy...· 0 citations
Understanding plant responses to co-occurring metal contamination is essential for evaluating their phytoremediation potential, yet the physiological and molecular responses of Cyperus esculentus (CES) to combined Cu, Zn, and Cd exposure remain poorly understood. Here, CES plants were exposed to combined Cu, Zn, and Cd...
Chang-Song Ren, Wen-Qi Xiao, Yi-Jie Zhang et al.· Frontiers in Plant Science· 0 citations
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