Xinzhi Ni
Overview
Explore the profile of Xinzhi Ni including associated specialties, affiliations and a list of published articles.
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70
Citations
762
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Recent Articles
1.
Wei C, Wang W, Jiao Y, Yoon S, Ni X, Wang X, et al.
J Fluoresc
. 2025 Mar;
PMID: 40063235
Camellia oil (CAO), known for its high nutritional and commercial value, has raised increasing concerns about adulteration. Developing an accurate and non-destructive method to identify CAO adulterants is crucial for...
2.
Guo X, Wang W, Jia B, Ni X, Zhuang H, Yoon S, et al.
Int J Food Microbiol
. 2025 Jan;
431:111065.
PMID: 39854958
Understanding and controlling the dynamic process of aflatoxin B (AFB) accumulation by Aspergillus flavus (A. flavus) remains challenging. In this study, the A. flavus development and AFB accumulation were investigated...
3.
Chen J, Ni X, Grodowitz M
Insects
. 2025 Jan;
15(12.
PMID: 39769555
The house cricket, (Linnaeus), is often used as a food source for the maintenance of imported fire ants under laboratory rearing. It was found that both red imported fire ants,...
4.
Deng Z, Zhang Y, Wang S, Xie X, Wang L, Ding Q, et al.
Pestic Biochem Physiol
. 2024 Sep;
204:106081.
PMID: 39277394
Xenobiotic response element (XRE) to flavone was the cis- regulatory elements that mediates the induction of the allelochemical-metabolizing CYP321A1 gene from Helicoverpa zea. However, it was unknown whether the XRE-Fla...
5.
Transcriptomic and proteomic elucidation of Z chromosome dosage compensation in Helicoverpa armigera
Deng Z, Zhang Y, Xie X, Li H, Guo H, Ni X, et al.
Insect Mol Biol
. 2024 Jul;
33(6):744-755.
PMID: 38949741
Transcriptomic data have been used to study sex chromosome dosage compensation (SCDC) in approximately 10 Lepidoptera ZW species, yielding a consensus compensation pattern of Z It remains unclear whether this...
6.
Liu Y, Wei C, Yoon S, Ni X, Wang W, Liu Y, et al.
Sensors (Basel)
. 2024 Apr;
24(8).
PMID: 38676084
The maturity of fruits and vegetables such as tomatoes significantly impacts indicators of their quality, such as taste, nutritional value, and shelf life, making maturity determination vital in agricultural production...
7.
Ni X, Huffaker A, Schmelz E, Xu W, Williams W, Guo B, et al.
Insects
. 2024 Apr;
15(4).
PMID: 38667419
The polyphagous fall armyworm (FAW), , has become an invasive pest worldwide in recent years. To develop maize germplasm with multiple pest resistance and understand genetic inheritance, 12 experimental hybrids...
8.
Lu Y, Jia B, Yoon S, Ni X, Zhuang H, Guo B, et al.
Int J Food Microbiol
. 2024 Mar;
416:110661.
PMID: 38457888
Aspergillus flavus and its toxic metabolites-aflatoxins infect and contaminate maize kernels, posing a threat to grain safety and human health. Due to the complexity of microbial growth and metabolic processes,...
9.
Huang K, He H, Wang S, Zhang M, Chen X, Deng Z, et al.
Insects
. 2023 Sep;
14(9).
PMID: 37754704
Target pests of genetically engineered crops producing both defensive allelochemicals and (Bt) toxins often sequentially or simultaneously uptake allelochemicals, Bt toxins, and/or insecticides. How the three types of toxins interact...
10.
Deng Z, Zhang Y, Fang L, Zhang M, Wang L, Ni X, et al.
Toxins (Basel)
. 2023 Jun;
15(6).
PMID: 37368666
Flavone is widely found in plants and plays an important role in plant defense against pests. Many pests, such as , use flavone as a cue to upregulate counter-defense genes...