The computational modeling for the static analysis of axially functionally graded micro-cylindrical imperfect beam applying the computer simulation
In this paper, the bending and buckling analysis of microbeam with the uniform and non-uniform
cylindrical cross-section was examined based on the classical beam theory and the …
cylindrical cross-section was examined based on the classical beam theory and the …
Short-term rosuvastatin therapy for prevention of contrast-induced acute kidney injury in patients with diabetes and chronic kidney disease
Y Han, G Zhu, L Han, F Hou, W Huang, H Liu… - Journal of the American …, 2014 - jacc.org
Objectives : This study sought to evaluate the safety and efficacy of rosuvastatin in preventing
contrast-induced acute kidney injury (CI-AKI) in patients with diabetes mellitus (DM) and …
contrast-induced acute kidney injury (CI-AKI) in patients with diabetes mellitus (DM) and …
Genetic variations in ZmSAUR15 contribute to the formation of immature embryo‐derived embryonic calluses in maize
…, Y Long, X Zhang, X Zhang, H Hu, Z Li, F Hou… - The Plant …, 2022 - Wiley Online Library
The ability of immature maize (Zea mays) embryos to form embryonic calluses (ECs) is highly
genotype dependent, which limits transgenic breeding development in maize. Here, we …
genotype dependent, which limits transgenic breeding development in maize. Here, we …
ZmbZIP54 and ZmFDX5 cooperatively regulate maize seedling tolerance to lead by mediating ZmPRP1 transcription
F Hou, N Zhang, L Ma, L An, X Zhou, C Zou… - International Journal of …, 2023 - Elsevier
Extensive lead (Pb) accumulation in plants exerts toxic effects on plant growth and development
and enters the human food chain. Combining linkage mapping, transcriptome analysis, …
and enters the human food chain. Combining linkage mapping, transcriptome analysis, …
A phased small interfering RNA-derived pathway mediates lead stress tolerance in maize
Phased small interfering RNAs (phasiRNAs) are a distinct class of endogenous small interfering
RNAs, which regulate plant growth, development, and environmental stress response. …
RNAs, which regulate plant growth, development, and environmental stress response. …
Dynamic transcriptome and GWAS uncover a hydroxyproline-rich glycoprotein that suppresses Agrobacterium-mediated transformation in maize
M Liu, Y Yang, T Liang, F Hou, M Zhang, S He, P Liu… - Molecular Plant, 2025 - cell.com
Genetic transformation is a crucial tool for investigating gene function and advancing molecular
breeding in crops, with Agrobacterium tumefaciens-mediated transformation being the …
breeding in crops, with Agrobacterium tumefaciens-mediated transformation being the …
Association mapping uncovers maize ZmbZIP107 regulating root system architecture and lead absorption under lead stress
F Hou, K Liu, N Zhang, C Zou, G Yuan, S Gao… - Frontiers in plant …, 2022 - frontiersin.org
Lead (Pb) is a highly toxic contaminant to living organisms and the environment. Excessive
Pb in soils affects crop yield and quality, thus threatening human health via the food chain. …
Pb in soils affects crop yield and quality, thus threatening human health via the food chain. …
Genetic dissection of maize seedling traits in an IBM Syn10 DH population under the combined stress of lead and cadmium
F Hou, X Zhou, P Liu, G Yuan, C Zou… - Molecular Genetics and …, 2021 - Springer
The heavy metals lead and cadmium have become important pollutants in the environment,
which exert negative effects on plant morphology, growth and photosynthesis. It is …
which exert negative effects on plant morphology, growth and photosynthesis. It is …
Transcription factors responding to Pb stress in maize
Y Zhang, F Ge, F Hou, W Sun, Q Zheng, X Zhang, L Ma… - Genes, 2017 - mdpi.com
Pb can damage the physiological function of human organs by entering the human body via
food-chain enrichment. Revealing the mechanisms of maize tolerance to Pb is critical for …
food-chain enrichment. Revealing the mechanisms of maize tolerance to Pb is critical for …
A genome-wide co-expression network analysis revealed ZmNRAMP6-mediated regulatory pathway involved in maize tolerance to lead stress
P Liu, L Jiang, P Long, Q Li, F Hou, G Yuan… - Theoretical and Applied …, 2023 - Springer
Key message A metal transporter ZmNRAMP6 was identified by using a trait-associated co-expression
network analysis at a genome-wide level.ZmNRAMP6confers maize sensitivity to …
network analysis at a genome-wide level.ZmNRAMP6confers maize sensitivity to …