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77
result(s) for
"Zhang, Xiu-Xiang"
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Heterologous Expression of a Glycine soja C2H2 Zinc Finger Gene Improves Aluminum Tolerance in Arabidopsis
by
Cao, He-Jie
,
Liu, Yuan-Tai
,
Zhang, Xiu-Xiang
in
Abiotic stress
,
Agricultural production
,
Aluminum
2020
Aluminum (Al) toxicity limits plant growth and has a major impact on the agricultural productivity in acidic soils. The zinc-finger protein (ZFP) family plays multiple roles in plant development and abiotic stresses. Although previous reports have confirmed the function of these genes, their transcriptional mechanisms in wild soybean (Glycine soja) are unclear. In this study, GsGIS3 was isolated from Al-tolerant wild soybean gene expression profiles to be functionally characterized in Arabidopsis. Laser confocal microscopic observations demonstrated that GsGIS3 is a nuclear protein, containing one C2H2 zinc-finger structure. Our results show that the expression of GsGIS3 was of a much higher level in the stem than in the leaf and root and was upregulated under AlCl3, NaCl or GA3 treatment. Compared to the control, overexpression of GsGIS3 in Arabidopsis improved Al tolerance in transgenic lines with more root growth, higher proline and lower Malondialdehyde (MDA) accumulation under concentrations of AlCl3. Analysis of hematoxylin staining indicated that GsGIS3 enhanced the resistance of transgenic plants to Al toxicity by reducing Al accumulation in Arabidopsis roots. Moreover, GsGIS3 expression in Arabidopsis enhanced the expression of Al-tolerance-related genes. Taken together, our findings indicate that GsGIS3, as a C2H2 ZFP, may enhance tolerance to Al toxicity through positive regulation of Al-tolerance-related genes.
Journal Article
OsDREB2A, a Rice Transcription Factor, Significantly Affects Salt Tolerance in Transgenic Soybean
2013
The dehydration responsive element binding (DREB) transcription factors play an important role in regulating stress-related genes. OsDREB2A, a member of the DREBP subfamily of AP2/ERF transcription factors in rice (Oryza sativa), is involved in the abiotic stress response. OsDREB2A expression is induced by drought, low-temperature and salt stresses. Here, we report the ability of OsDREB2A to regulate high-salt response in transgenic soybean. Overexpressing OsDREB2A in soybeans enhanced salt tolerance by accumulating osmolytes, such as soluble sugars and free proline, and improving the expression levels of some stress-responsive transcription factors and key genes. The phenotypic characterization of transgenic soybean were significantly better than those of wild-type (WT). Electrophoresis mobility shift assay (EMSA) revealed that the OsDREB2A can bind to the DRE core element in vitro. These results indicate that OsDREB2A may participate in abiotic stress by directly binding with DRE element to regulate the expression of downstream genes. Overexpression of OsDREB2A in soybean might be used to improve tolerance to salt stress.
Journal Article
The opposing effect of acute and chronic Toxoplasma gondii infection on tumor development
by
Yuan, Zi-Guo
,
Song, Yining
,
He, Houjing
in
Acute and chronic toxoplasmosis
,
Acute Disease
,
Animals
2024
Background
The interplay between
Toxoplasma gondii
infection and tumor development is intriguing and not yet fully understood. Some studies showed that
T. gondii
reversed tumor immune suppression, while some reported the opposite, stating that
T. gondii
infection promoted tumor growth.
Methods
We created three mouse models to investigate the interplay between
T. gondii
and tumor. Model I aimed to study the effect of tumor growth on
T. gondii
infection by measuring cyst number and size. Models II and III were used to investigate the effect of different stages of
T. gondii
infection on tumor development via flow cytometry and bioluminescent imaging. Mouse strains (Kunming, BALB/c, and C57BL/6J) with varying susceptibilities to tumors were used in the study.
Results
The size and number of brain cysts in the tumor-infected group were significantly higher, indicating that tumor presence promotes
T. gondii
growth in the brain. Acute
T. gondii
infection, before or after tumor cell introduction, decreased tumor growth manifested by reduced bioluminescent signal and tumor size and weight. In the tumor microenvironment, CD4
+
and CD8
+
T cell number, including their subpopulations (cytotoxic CD8
+
T cells and Th1 cells) had a time-dependent increase in the group with acute
T. gondii
infection compared with the group without infection. However, in the peripheral blood, the increase of T cells, including cytotoxic CD8
+
T cells and Th1 cells, persisted 25 days after Lewis lung carcinoma (LLC) cell injection in the group with acute
T. gondii
. Chronic
T. gondii
infection enhanced tumor growth as reflected by increase in tumor size and weight. The LLC group with chronic
T. gondii
infection exhibited decreased percentages of cytotoxic CD8
+
T cells and Th1 cells 25 days post-LLC injection as compared with the LLC group without
T. gondii
infection. At week 4 post-LLC injection, chronic
T. gondii
infection increased tumor formation rate [odds ratio (OR) 1.71] in both KM and BALB/c mice.
Conclusions
Our research elucidates the dynamics between
T. gondii
infection and tumorigenesis. Tumor-induced immune suppression promoted
T. gondii
replication in the brain. Acute and chronic
T. gondii
infection had opposing effects on tumor development.
Graphical Abstract
Journal Article
The gut metabolite arachidonic acid alleviates intestinal injury induced by a Toxoplasma gondii strain isolated from a wild rodent
2026
Background
Wild isolates of
Toxoplasma gondii
may exhibit different virulence characteristics and host adaptability compared with those of laboratory strains. In this study, we isolated a novel rodent-derived
T. gondii
strain, denoted TgRodGz1, and evaluated its pathogenic features.
Methods
TgRodGz1 was isolated from T. gondii-positive wild rodents in Guangdong Province and compared with the RH and Me49 strains in C57BL/6 mice. Virulence and intestinal injury were evaluated by survival analysis, brain cyst quantification, histopathology, tight junction assessment and qPCR. Gut microbiota and metabolic alterations were analyzed by metagenomic sequencing and LC–MS/MS-based metabolomics.
Results
Compared with the
T. gondii
laboratory strains RH and Me49, TgRodGz1 was associated with more pronounced intestinal injury, including villus atrophy, barrier disruption and downregulation of tight junction proteins and increased gut permeability and inflammation. Metagenomic analysis revealed significant intestinal flora dysbiosis, with a marked reduction in beneficial bacteria and expansion of pathogenic bacteria. Metabolomic analysis revealed suppression of arachidonic acid (ARA) metabolism during TgRodGz1 infection. Supplementation with ARA did not directly inhibit parasite growth but significantly alleviated intestinal lesions, reduced brain cyst burden and attenuated inflammatory responses, including microglial activation.
Conclusions
These findings suggest that TgRodGz1 represents a distinct
T. gondii
genotype associated with pronounced intestinal pathology and suggest that ARA supplementation may alleviate intestinal and neuroinflammatory changes associated with
T. gondii
infection.
Graphical Abstract
Journal Article
Immunogenicity and Protective Efficacy of a Recombinant Toxoplasma gondii GRA12 Vaccine in Domestic Cats
2025
Background: Toxoplasma gondii (T. gondii) is a significant opportunistic zoonotic protozoan, presenting a substantial risk to human health and livestock. Consequently, the development of an effective vaccine against toxoplasmosis is imperative. This study focuses on the GRA12 protein as a target for developing a recombinant protein vaccine, with its efficacy evaluated through immunization trials in cats. Methods: We expressed recombinant GRA12 protein in E. coli and immunized cats with the purified antigen. The cats were categorized into four groups: G1 (PBS control), G2 (ISA 201 adjuvant alone), G3 (rGRA12 vaccine), and G4 (rGRA12 combined with ISA 201 adjuvant). All cats underwent subcutaneous immunizations on days 0, 14, and 28. Subsequently, serum levels of IgG (including IgG1 and IgG2a subclasses) and cytokines (IFN-γ, IL-2, TNF-α, IL-4, IL-10) were measured by enzyme-linked immunosorbent assay (ELISA). Two weeks after the third immunization (42 DPI), each cat was intraperitoneally infected with 1 × 106T. gondii RH tachyzoites. Oocyst shedding, survival duration, and T. gondii burden were monitored to assess vaccine-induced immunity. Results: The results indicate that immunization with recombinant rGRA12 protein significantly elevated IgG, IgG1, and IgG2a antibody levels in cats. G4 displayed elevated IgG levels post-immunization compared to G1 and G2, with an IgG1/IgG2a ratio > 1, indicating a mixed Th1/Th2 immune response. G4 also showed significantly increased IFN-γ, IL-2, TNF-α, and IL-4 levels compared to G1 (p < 0.05), while IL-10 remained unchanged. After T. gondii infection, total oocyst counts were 4.61 × 106 (G1), 4.49 × 106 (G2), 3.58 × 106 (G3), and 2.59 × 106 (G4), with G3/G4 showing 20.1–27.9% reduction relative to G1 (p < 0.05). Survival analysis revealed that groups G3 and G4 exhibited significantly longer median survival times (38 and 60 days, respectively; G4 with no mortality) compared to G1 and G2 (19 and 26 days, respectively). Additionally, parasite burdens in the brain, heart, lungs, liver, and spleen were significantly reduced in G3/G4 compared to G1/G2 (p < 0.01). Conclusions: In summary, the recombinant GRA12 vaccine significantly enhanced host survival and reduced parasite burden, demonstrating its potential as an effective toxoplasmosis vaccine candidate. These findings provide valuable data for future toxoplasmosis vaccine development.
Journal Article
Differential transcriptome study on the damage of testicular tissues caused by chronic infection of T. gondii in mice
2024
Background
Toxoplasma gondii
is an intracellular protozoan parasite that is widely distributed in humans and warm-blooded animals.
T. gondii
chronic infections can cause toxoplasmic encephalopathy, adverse pregnancy, and male reproductive disorders. In male reproduction, the main function of the testis is to provide a stable place for spermatogenesis and immunological protection. The disorders affecting testis tissue encompass abnormalities in the germ cell cycle, spermatogenic retardation, or complete cessation of sperm development. However, the mechanisms of interaction between
T. gondii
and the reproductive system is unclear. The aims were to study the expression levels of genes related to spermatogenesis, following
T. gondii
infection, in mouse testicular tissue.
Methods
RNA-seq sequencing was carried out on mouse testicular tissues from mice infected or uninfected with the
T. gondii
type II Prugniaud (PRU) strain and validated in combination with real-time quantitative PCR and immunofluorescence assays.
Results
The results showed that there were 250 significant differentially expressed genes (DEGs) (
P
< 0.05, |log
2
fold change| ≧ 1). Bioinformatics analysis showed that 101 DEGs were annotated to the 1696 gene ontology (GO) term. While there was a higher number of DEGs in the biological process classification as a whole, the GO enrichment revealed a significant presence of DEGs in the cellular component classification. The Arhgap18 and Syne1 genes undergo regulatory changes following
T. gondii
infection, and both were involved in shaping the cytoskeleton of the blood–testis barrier (BTB). The number of DEGs enriched in the MAPK signaling pathway, the ERK1/2 signaling pathway, and the JNK signaling pathway were significant. The PTGDS gene is located in the Arachidonic acid metabolism pathway, which plays an important role in the formation and maintenance of BTB in the testis. The expression of PTGDS is downregulated subsequent to
T. gondii
infection, potentially exerting deleterious effects on the integrity of the BTB and the spermatogenic microenvironment within the testes.
Conclusions
Overall, our research provides in-depth insights into how chronic
T. gondii
infection might affect testicular tissue and potentially impact male fertility. These findings offer a new perspective on the impact of
T. gondii
infection on the male reproductive system.
Graphical Abstract
Journal Article
Deciphering the epidemiological dynamics: Toxoplasma gondii seroprevalence in mainland China’s food animals, 2010-2023
2024
(
) is a significant protozoan pathogen among food animals. Despite the threat to public health by
infections, there's limited understanding of its seroprevalence and trends in food animals across mainland China. This study aimed to estimate the seroprevalence of
infections among swine, sheep, goats, chickens, and cattle in mainland China from 2010 to 2023.
We searched cross-sectional studies published between 2010 and 2023 that reported the prevalence of
in food animals from databases including PubMed, Embase, Web of Science, China Biology Medicine Disc (CBM), China National Knowledge Infrastructure (CNKI), Wanfang data, and the China Science and Technology Journal Database (CQVIP). We performed subgroup analyses to explore the impact of different factors on the seroprevalence of
. Pooled estimates of
seroprevalence were calculated with a random-effects model.
An analysis of 184 studies involving 211985 animals revealed a
overall seroprevalence of 15.3% (95% CI: 13.1-17.8). Although the seroprevalence of food animals across mainland China was relatively stable from 2010 to 2023, notable variations were observed across different animal types and regions (
< 0.01), along with changes in geographical distribution. Sample type, detection method, animal age, and history of abortion were identified as key risk factors for
seroprevalence.
The study conducted a meta-analysis on the seroprevalence of
in mainland China's Food Animals from 2010 to 2023, and identified key risk factors. These findings advance our understanding of
infection dynamics, offering critical insights for developing control strategies and guiding public health policies.
Journal Article
Four Chemotherapeutic Compounds That Limit Blood-Brain-Barrier Invasion by Toxoplasma gondii
by
Yuan, Zi-Guo
,
Song, Yining
,
Zhang, Xiu-Xiang
in
blood-brain barrier
,
Brain research
,
Chemotherapy
2022
Background: Toxoplasma gondii, an intracellular protozoan parasite, exists in the host brain as cysts, which can result in Toxoplasmic Encephalitis (TE) and neurological diseases. However, few studies have been conducted on TE, particularly on how to prevent it. Previous proteomics studies have showed that the expression of C3 in rat brains was up-regulated after T. gondii infection. Methods: In this study, we used T. gondii to infect mice and bEnd 3 cells to confirm the relation between T. gondii and the expression of C3. BEnd3 cells membrane proteins which directly interacted with C3a were screened by pull down. Finally, animal behavior experiments were conducted to compare the differences in the inhibitory ability of TE by four chemotherapeutic compounds (SB290157, CVF, NSC23766, and Anxa1). Results: All chemotherapeutic compounds in this study can inhibit TE and cognitive behavior in the host. However, Anxa 1 is the most suitable material to inhibit mice TE. Conclusion: T. gondii infection promotes TE by promoting host C3 production. Anxa1 was selected as the most appropriate material to prevent TE among four chemotherapeutic compounds closely related to C3.
Journal Article
SARS-CoV-2: An Updated Review Highlighting Its Evolution and Treatments
by
Zhang, Xiu-Xiang
,
Wang, Xiao-Hu
,
Zhu, Xiaojing
in
Aerosols
,
Antiviral agents
,
Clinical trials
2022
Since the SARS-CoV-2 outbreak, pharmaceutical companies and researchers worldwide have worked hard to develop vaccines and drugs to end the SARS-CoV-2 pandemic. The potential pathogen responsible for Coronavirus Disease 2019 (COVID-19), SARS-CoV-2, belongs to a novel lineage of beta coronaviruses in the subgenus arbovirus. Antiviral drugs, convalescent plasma, monoclonal antibodies, and vaccines are effective treatments for SARS-CoV-2 and are beneficial in preventing infection. Numerous studies have already been conducted using the genome sequence of SARS-CoV-2 in comparison with that of other SARS-like viruses, and numerous treatments/prevention measures are currently undergoing or have already undergone clinical trials. We summarize these studies in depth in the hopes of highlighting some key details that will help us to better understand the viral origin, epidemiology, and treatments of the virus.
Journal Article