Molecular mechanisms underlying the toxicity and detoxification of trace metals and metalloids in plants

Z Tang, HQ Wang, J Chen, JD Chang… - Journal of Integrative …, 2023 - Wiley Online Library
Plants take up a wide range of trace metals/metalloids (hereinafter referred to as trace
metals) from the soil, some of which are essential but become toxic at high concentrations …

Does day length matter for nutrient responsiveness?

JA Siqueira, A Zsögön, AR Fernie, A Nunes-Nesi… - Trends in Plant …, 2023 - cell.com
For over 2500 years, considerable agronomic interest has been paid to soil fertility. Both
crop domestication and the Green Revolution shifted photoperiodism and the circadian …

The maize WRKY transcription factor ZmWRKY64 confers cadmium tolerance in Arabidopsis and maize (Zea mays L.)

L Gu, Y Hou, Y Sun, X Chen, G Wang, H Wang, B Zhu… - Plant Cell Reports, 2024 - Springer
Key message ZmWRKY64 positively regulates Arabidopsis and maize Cd stress through
modulating Cd uptake, translocation, and ROS scavenging genes expression. Abstract …

A transposable element-derived siRNAs involve DNA hypermethylation at the promoter of OsGSTZ4 for cadmium tolerance in rice

XS Liu, H Li, SJ Feng, ZM Yang - Gene, 2024 - Elsevier
Environmental contaminants such as cadmium (Cd) pose high risks to crop production and
human health. The genetic basis for regulation of Cd stress-responsive genes for plant …

Multiomics and biotechnologies for understanding and influencing cadmium accumulation and stress response in plants

Y Yu, S Alseekh, Z Zhu, K Zhou… - Plant Biotechnology …, 2024 - Wiley Online Library
Cadmium (Cd) is one of the most toxic heavy metals faced by plants and, additionally, via
the food chain, threatens human health. It is principally dispersed through agro‐ecosystems …

Mycorrhizal status and host genotype interact to shape plant nutrition in field grown maize (Zea mays ssp. mays)

M Li, S Perez-Limón, MR Ramírez-Flores… - Mycorrhiza, 2023 - Springer
Arbuscular mycorrhizal fungi (AMF) establish symbioses with the major cereal crops,
providing plants with increased access to nutrients while enhancing their tolerance to toxic …

MeGLYI-13, a Glyoxalase I Gene in Cassava, Enhances the Tolerance of Yeast and Arabidopsis to Zinc and Copper Stresses

R Li, F Tang, Y Che, AR Fernie, Q Zhou, Z Ding, Y Yao… - Plants, 2023 - mdpi.com
Although zinc and copper are the two essential nutrients necessary for plant growth, their
excessive accumulation in soil not only causes environmental pollution but also seriously …

WGCNA Analysis Revealed the Hub Genes Related to Soil Cadmium Stress in Maize Kernel (Zea mays L.)

Y Li, Y Zhang, H Luo, D Lv, Z Yi, M Duan, M Deng - Genes, 2022 - mdpi.com
Soil contamination by heavy metals has become a prevalent topic due to their widespread
release from industry, agriculture, and other human activities. Great progress has been …

番茄HMA 基因家族的鉴定及SlHMA1 镉转运功能研究

赵曜, 文朗, 骆少丹, 栗子杏, 刘超超 - 生物技术通报, 2024 - biotech.aiijournal.com
[目的] Heavy metal ATPase (HMA) 基因家族广泛参与植物对金属元素的吸收和转运,
系统鉴定番茄HMA 基因家族成员及其特征, 并研究其在应对镉胁迫过程中的功能 …

Mycorrhizal status impacts the genetic architecture of mineral accumulation in field grown maize (Zea mays ssp. mays L.)

M Li, S Perez-Limón, MR Ramírez-Flores… - bioRxiv, 2022 - biorxiv.org
Arbuscular mycorrhizal fungi (AMF) establish symbioses with major crop species, providing
their hosts with greater access to mineral nutrients and promoting tolerance to heavy metal …