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      • KCI등재

        Quality improvement effects of electrolyzed water on rice noodles prepared with semidry-milled rice flours

        Rui Liu,Zhang-Long Yu,Yuan-Lin Sun,Li-Tao Tong,Li-Ya Liu,Li-Li Wang,Xian-Rong Zhou,Su-Mei Zhou 한국식품과학회 2021 Food Science and Biotechnology Vol.30 No.6

        To investigate the effects of electrolyzed watertreatment on the qualities of rice noodles prepared withsemidry- milled rice flour, pasting properties and thermalproperties of rice flour, and the cooking and texturalproperties of rice noodles were determined. Higher peakviscosity and lower melting enthalpy were observed inelectrolyzed water (EW) treated rice flour. The hardness,gumminess and chewiness of rice noodle in slightly acidicelectrolyzed water treated rice noodles with availablechlorine concentration (ACC) 20.32 mg/L were increasedsignificantly (p\0.05). The cooking loss decreased significantlyin strong acidic electrolyzed water treated noodleswith ACC 10.09 mg/L treatment (p\0.05). Theresults indicated that EW could promote the gelatinizationof rice flour, and improve the textural qualities of ricenoodles. Therefore EW was appropriate to be used in ricenoodle production.

      • KCI등재

        Transgenic Rice Overexperessing a Tomato Mitochondrial Phosphate Transporter, SlMPT3;1, Promotes Phosphate Uptake and Increases Grain Yield

        Xian-guo Cheng,Guo-hong Yu,Sheng-cai Huang,Rui He,Ying-Zhang Li 한국식물학회 2018 Journal of Plant Biology Vol.61 No.6

        Mitochondrial phosphate transporter plays animportant regulatory role in promoting the uptake andtransport of phosphate in plants. In this study, the SlMPT3;1gene, a member of mitochondrial phosphate transporterfamily in tomato, was isolated and transformed into the riceOryza sativa L. ssp. japonica cultivar Kitaake. The SlMPT3;1 islocalized to the mitochondrial membrane and functions incompensating the phosphate uptake in yeast MB192 mutantthat is defective in phosphate transport under Pi deficiency. RT-qPCR showed that the SlMPT3;1 is expressed in all oftomato tissues, but highly accumulated in the young leavesand stems under Pi deficiency. The data demonstrated that atleast two copies of the SlMPT3;1 gene are inserted into therice genome, and the transcripts of the SlMPT3;1 mRNA arehighly accumulated in the roots of the transgenic rice. Theoverexpression of the SlMPT3;1 gene not only promotesphosphate uptake by the roots, but also increases thetranslocation of phosphate from the roots to the shoots in thetransgenic rice. The transgenic rice accumulated morechlorophyll and soluble sugar in the shoots than the wildtype under Pi deficiency. Microassay sequencing showedthat the differentially expressed genes in the transgenic riceare mainly involved in the regulations of biological processand molecular function under Pi deficiency. Further RTqPCRanalyses revealed that the differentially expressedgenes, which are involved in the regulations of the biologicalprocess, cell component, and molecular function, are upregulatedunder Pi deficiency, and exhibit similar expressiontrends to the relative expression folds of these partial differentiallyexpressed genes in the transcriptomic analyses. This studysuggests that the overexpression of the SlMPT3;1 gene promotedthe uptake and transport of phosphate in rice, thus leading to anenhanced increase in tiller number and effective panicle of perplant, and increasing grain yield under Pi deficiency.

      • KCI등재

        Theoretical Investigation on the Structure, Detonation Performance and Pyrolysis Mechanism of 4,6,8-Trinitro-4,5,7,8-tetrahydro -6H-furazano[3,4-f]-1,3,5-triazepine

        Li, Xiao-Hong,Zhang, Rui-Zhou,Zhang, Xian-Zhou Korean Chemical Society 2014 Bulletin of the Korean Chemical Society Vol.35 No.5

        Based on the full optimized molecular geometric structures at B3LYP/cc-pvtz method, a new designed compound, 4,6,8-trinitro-4,5,7,8-tetrahydro-6H-furazano[3,4-f ]-1,3,5-triazepine was investigated in order to look for high energy density compounds (HEDCs). The analysis of the molecular structure indicates that the seven-membered ring adopts chair conformation and there exist intramolecular hydrogen bond interactions. IR spectrum and heat of formation (HOF) were predicted. The detonation velocity and pressure were evaluated by using Kamlet-Jacobs equations based on the theoretical density and condensed HOF. The bond dissociation energies and bond orders for the weakest bonds were analyzed to investigate the thermal stability of the title compound. The results show that $N_1-N_6$ bond is the trigger bond. The crystal structure obtained by molecular mechanics belongs to $Pna2_1$ space group, with lattice parameters Z = 4, a = 15.3023 ${\AA}$, b = 5.7882 ${\AA}$, c = 11.0471 ${\AA}$, ${\rho}=2.06gcm^{-3}$. In addition, the analysis of frontier molecular orbital shows the title compound has good stability and high chemical hardness.

      • Association Between the GSTP1 Codon 105 Polymorphism and Gastric Cancer Risk: an Updated Meta-analysis

        Bao, Li-Dao,Niu, Jian-Xiang,Song, Hui,Wang, Yi,Ma, Rui-Lian,Ren, Xian-Hua,Wu, Xin-Lin Asian Pacific Journal of Cancer Prevention 2012 Asian Pacific journal of cancer prevention Vol.13 No.8

        Objective: The current meta-analysis was performed to address a more accurate estimation of the association between glutathione S-transferase P1 (GSTP1) codon 105 polymorphism and risk of gastric cancer (GC), which has been widely reported with conflicting results. Methods: A comprehensive literature search was conducted to identify all the relevant studies. Fixed or random effect models were selected based on the heterogeneity test. Publication bias was estimated using Begg's funnel plots and Egger's regression test. Results: A total of 20 studies containing 2,821 GC cases and 6,240 controls were finally included in the analyses. Overall, no significant association between GSTP1 polymorphism and GC risk was observed in worldwide populations. However, subgroup analysis stratified by ethnicity showed that GSTP1 polymorphism was significantly associated with increased risk of GC in Asians (G vs. A, OR = 1.273, 95%CI=1.011-1.605; GG vs. AA, OR=2.103, 95%CI=1.197-3.387; GG vs. AA+AG, OR =2.103, 95%CI=1.186-3.414). In contrast, no significant association was found in Caucasians in any genetic models, except for with AG vs. AA (OR=0.791, 95%CI=0.669-0.936). Furthermore, the GSTP1 polymorphism was found to be significantly associated with GC in patients with H. pylori infection and in those with a cardiac GC. Subgroup analysis stratified by Lauren's classification and smoking status showed no significant association with any genetic model. No studies were found to significantly influence the pooled effects in each genetic mode, and no potential publication bias was detected. Conclusion: This meta-analysis suggested that the GSTP1 polymorphism might be associated with increased risk of GC in Asians, while GSTP1 heterozygote genotype seemed to be associated with reduced risk of GC. Since potential confounders could not be ruled out completely, further studies are needed to confirm these results.

      • KCI등재

        Highly synergic adsorption and photocatalytic degradation of walnut shell biochar/NiCr-layered double hydroxides composite for Methyl orange

        Xiao-fang Li,Rui-xian Li,Ke-xin Wang,Xiao-qiang Feng 한국공업화학회 2023 Journal of Industrial and Engineering Chemistry Vol.126 No.-

        Methyl orange (MO) is a kind of azo dye, and will do great harm to the ecological environment. Alleviating this problem by removing MO is crucial role to prevent harmful damage to the environment. In this paper, NiCr layered double hydroxides (LDH) were prepared through hydrothermal method andthen modified with different mass rations of walnut shell biochar. The structure and properties ofbiochar/NiCr-LDH composites were analyzed by Fourier transform infrared spectroscopy (FT-IR), powderX-ray diffraction (XRD), field emission scanning electron microscopy (FE-SEM) coupled with energy dispersespectroscopy (EDS), and X-ray photoelectron spectroscopy (XPS). Moreover, the adsorption andphotocatalytic degradation behavior of composites on anionic dye MO were investigated. Characterization results indicated that NiCr-LDH was perfectly synthesized and coated on the biochar. All the biochar/NiCr-LDH composites show enhanced adsorption and photodegradation performancefor MO dye compared with pure NiCr-LDH and biochar. When the biochar content was 22.3 wt.% andthe biochar/NiCr-LDH (S2) dosage was 1.0 mg/mL, the maximum removal amount of MO could reach100 % within 60 min at the natural pH, experimental data fitted well with the pseudo-second-orderkinetic and Freundlich isotherm model, and the maximum adsorption capacity of S2 was 108.2 mg/g. Besides, compared with NiCr-LDH, S2 also demonstrated wonderful photodegradation activity for MOunder visible-light irradiation, the rate constant of S2 (0.0173 min1) is about 1.5 times that of NiCr-LDH (0.0118 min1), and the enhanced performance can be due to the faster separation of electronholepairs, in which biochar acted as charge separation carriers. Meanwhile, the hydroxyl radical andsuperoxide radical played crucial roles in the dye photocatalytic degradation, and a possible photocatalyticdegradation mechanism was proposed. The excellent photocatalytic activity and stability makebiochar/NiCr-LDH an ideal photocatalyst to solve environmental crisis.

      • KCI등재
      • KCI등재

        CHISELED NICKEL HYDROXIDE NANOPLATES GROWTH ON GRAPHENE SHEETS FOR LITHIUM ION BATTERIES

        LEI-LEI TIAN,XIAN-YONG WEI,QUAN-CHAO ZHUANG,CHAO WU,RUI-LUN XIE,ZHI-MIN ZONG,YONG-LI CUI,SHI-GANG SUN 성균관대학교(자연과학캠퍼스) 성균나노과학기술원 2013 NANO Vol.8 No.6

        The morphologies and structures of Ni(OH)2–graphene hybrid materials were tailored by using different mineralizers in this work. It was revealed that the synergic effects of the highly oxidized graphene sheets and the mineralizers played a crucial role in controlling the morphology and structure of the nanocomposites, and Na2CO3 is a very effective mineralizer for growing chiseled 2D nanoplates of Ni(OH)2 on graphene sheets. When produced with NaOH, fragmental Ni(OH)2 crystals with irregular shapes erratically decorated on graphene sheets. In contrast, chiseled Ni(OH)2 hexagonal nanoplates grown on graphene sheets were obtained when Na2CO3 was used as the mineralizer. These unique 2D–2D nanoarchitectures with higher contact area between the nanocrystals and graphene substrate can increase the interfacial interaction and then efficiently improve the structural stability of the composite material, thus exhibiting an enhanced Li storage capacity and excellent cycling performance of 562 mAh g-1 after the 36th cycle.

      • KCI등재

        Peach-specific aldehyde nonanal attracts female Oriental fruit moths, Grapholita molesta (Lepidoptera: Tortricidae)

        Hui-Ming Xiang,Rui-Yan Ma,Hong-Liang Diao,Xian-Wei Li,Xiao-Juan He,Yong-Fu Guo 한국응용곤충학회 2017 Journal of Asia-Pacific Entomology Vol.20 No.4

        The oriental fruit moth (OFM), Grapholita molesta (Lepidoptera: Tortricidae), is a serious pest of stone and pome fruit trees worldwide. G. molesta can switch hosts and produce multiple generations per year. Both the primary and secondary host plants of G. molesta emit aldehydes. Here, we tested whether these aldehydes are helpful for host switching of G. molesta. SPME (Solid Phase Microextraction)-GC–MS analysis identified four aldehydes (octanal, nonanal, decanal, and benzaldehyde) from volatiles of late-season yellow peach fruits. Of the four aldehydes, eletroantennogram analysis showed that nonanal produced the strongest response from the antennae of virgin and mated females. In Y-tube bioassays, only nonanal was attractive to mated G. molesta females amongst the four aldehydes, suggesting that nonanal is important for host recognition in G. molesta. In a field trial, each of the four aldehydes was tested as an attractant for both sexes of G. molesta. The traps baited with nonanal captured more female G. molesta, as compared to traps with other aldehydes and control; the traps baited with benzaldehyde captured most male G. molesta. Our research investigations provide theoretical foundation for biological control of G. molesta females. Future G. molesta lure designs should take into account sex-specific differences in the response to individual aldehydes.

      • Association Between Green Tea and Colorectal Cancer Risk: A Meta-analysis of 13 Case-control Studies

        Wang, Xue-Jun,Zeng, Xian-Tao,Duan, Xiao-Li,Zeng, Huan-Chao,Shen, Rui,Zhou, Ping Asian Pacific Journal of Cancer Prevention 2012 Asian Pacific journal of cancer prevention Vol.13 No.7

        Objective: Experimental studies have suggested green tea to be a chemopreventive agent for colorectal cancer, and many studies have examined possible associations. However, the conclusions were inconsistent or even contradictory, so we performed a meta-analysis based on published case-control studies to explore if green tea is indeed a protective factor. Methods: PubMed was searched up to May $10^{th}$, 2012 for relevant studies, and references of included studies were manually searched. Finally 13 eligible studies, involving 12,636 cases and 38,419 controls were identified. After data extraction, a meta-analysis was performed using CMA v2 software. Results: The results indicated there may be a weak but not statistically significant reduced risk of colorectal cancer with high dose of green tea intake (OR=0.95, 95% CI:0.81-1.11, p=0.490.69-0.98). This protective effect was also found in all subgroups, except in American and European populations. Sensitivity analysis indicated the result to be robust. Publication bias was not detected by either funnel plot or Egger tests. Conclusion: The results of this meta-analysis indicate a weak lower tendency for colorectal cancer development with green tea consumption, but available epidemiologic data are insufficient to conclude that green tea may protect against colorectal cancer in humans.

      • SCIESCOPUSKCI등재

        Identification of mountain-cultivated ginseng and cultivated ginseng using UPLC/oa-TOF MSE with a multivariate statistical sample-profiling strategy

        Xu, Xin-fang,Cheng, Xian-long,Lin, Qing-hua,Li, Sha-sha,Jia, Zhe,Han, Ting,Lin, Rui-chao,Wang, Dan,Wei, Feng,Li, Xiang-ri The Korean Society of Ginseng 2016 Journal of Ginseng Research Vol.40 No.4

        Background: Mountain-cultivated ginseng (MCG) and cultivated ginseng (CG) both belong to Panax ginseng and have similar ingredients. However, their pharmacological activities are different due to their significantly different growth environments. Methods: An ultra-performance liquid chromatography/quadrupole time-of-flight mass spectrometry (UPLC-QTOF-MS/MS)-based approach was developed to distinguish MCG and CG. Multivariate statistical methods, such as principal component analysis and supervised orthogonal partial-least-squares discrimination analysis were used to select the influential components. Results: Under optimized UPLC-QTOF-MS/MS conditions, 40 ginsenosides in both MCG and CG were unambiguously identified and tentatively assigned. The results showed that the characteristic components of CG and MCG included ginsenoside Ra3/isomer, gypenoside XVII, quinquenoside R1, ginsenoside Ra7, notoginsenoside Fe, ginsenoside Ra2, ginsenoside Rs6/Rs7, malonyl ginsenoside Rc, malonyl ginsenoside Rb1, malonyl ginsenoside Rb2, palmitoleic acid, and ethyl linoleate. The malony ginsenosides are abundant in CG, but higher levels of the minor ginsenosides were detected in MCG. Conclusion: This is the first time that the differences between CG and MCG have been observed systematically at the chemical level. Our results suggested that using the identified characteristic components as chemical markers to identify different ginseng products is effective and viable.

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