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Tingqiang Li

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Articles 97
Citations 923
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Recent Articles
1.
Jiang Y, Luo J, Guo X, Qiao Y, Li Y, Zhang Y, et al.
J Environ Sci (China) . 2025 Mar; 154:563-574. PMID: 40049897
Phyllosphere microbiome plays an irreplaceable role in maintaining plant health under stress, but its structure and functions in heavy metal-hyperaccumulating plants remain elusive. Here, the phyllosphere microbiome, inhabiting hyperaccumulating (HE)...
2.
Gao W, Li Y, Luo J, Wang Y, Gao W, Liu X, et al.
Environ Pollut . 2025 Mar; 371:125960. PMID: 40032223
Cadmium (Cd) has become a major environmental concern, adversely affecting soil quality and crop productivity. Cd pollution disrupts soil nutrient cycling, particularly phosphorus (P), which is crucial for plant growth....
3.
Zhu Z, Peng J, Yu P, Fei J, Huang Z, Deng Y, et al.
Sci Total Environ . 2024 Dec; 958():177945. PMID: 39671931
Rice may absorb Cadmium (Cd) from the air through its leaves. The process of Cd foliar absorption, accumulation, and redistribution is yet unknown, nevertheless. In this study, the process of...
4.
Lu Y, Nie L, Guo X, Pan T, Chen R, Liu X, et al.
Ecotoxicol Environ Saf . 2024 Jul; 282:116704. PMID: 38996646
Hyperaccumulators are the material basis and key to the phytoremediation of heavy metal contaminated soils. Conventional methods for screening hyperaccumulators are highly dependent on the time- and labor-consuming sampling and...
5.
Wang Z, Wang Y, Lu J, Li T, Li S, Nie M, et al.
Environ Res . 2024 May; 252(Pt 4):119064. PMID: 38710427
Soil cadmium (Cd) pollution has emerged as a pressing concern due to its deleterious impacts on both plant physiology and human well-being. Silicon (Si) is renowned for its ability to...
6.
Pang Z, Luo Z, Guan D, Zhang T, Qiu L, Zhao E, et al.
Chemosphere . 2024 Mar; 353:141669. PMID: 38460848
Soil contamination by heavy metals has become a serious threat to global food security. The application of silicon (Si)-based materials is a simple and economical method for producing safe crops...
7.
Lin Q, Hamid Y, Wang H, Lu M, Cao X, Zou T, et al.
J Hazard Mater . 2024 Feb; 468:133822. PMID: 38387179
Foliar application of zinc (Zn) or silicon nanoparticles (Si-NPs) may exert regulatory effects on cadmium (Cd) accumulation in rice grains, however, their impact on Cd bioavailability during human rice consumption...
8.
Bano N, Khan S, Hamid Y, Bano F, Khan A, Asmat Ullah M, et al.
Environ Pollut . 2024 Jan; 344:123300. PMID: 38199483
Seed nano-priming can be used as an advanced technology for enhancing seed germination, plant growth, and crop productivity; however, the potential role of seed nano-priming in ameliorative cadmium (Cd) bio-toxicity...
9.
Hashmi M, Hamid Y, Usman M, Luo J, Khan S, Sheng T, et al.
Sci Total Environ . 2023 Dec; 912:169105. PMID: 38070566
Improving nitrogen use efficiency of chemical fertilizers is essential to mitigate the negative environmental impacts of nitrogen. Nitrification, the conversion of ammonium to nitrate via nitrite by soil microbes, is...
10.
Bano N, Khan S, Hamid Y, Asmat Ullah M, Khan A, Bano F, et al.
Environ Sci Pollut Res Int . 2023 Aug; 30(44):99310-99325. PMID: 37610540
Nanotechnology has attracted the interest of scientists due to its wide range of application specifically in agriculture. Nanoparticles (NPs) may act as a promising materials to alleviate cadmium (Cd) stress...