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| 1 | Identification of a Stable Quantitative Trait Locus for Percentage Grains with White Chalkiness in Rice (Oryza sativa)显示文摘High chalkiness is a major problem in many rice-producing areas of the world, especially in hybrid rice (Oryza sativa L.) in China. We previously showed a major quantitative trait locus for the percentage of grains with white chalkiness (QTLqPGWC-8) in the interval G1149-R727 on chromosome 8 using a chromosome segment substitution line (CSSL). Here, we selected the line-CSSL50 harboring the QTLqPGWC-8 allele from the CSSLs derived from a cross between Asominori (as a recurrent parent) and IR24 (as a donor parent), which had higher percentage chalkiness, markedly different from that of Asominori. There were also significant differences in starch granules, appearance of amylose content (AAC) and milling qualities between Asominori and CSSL50, but not in grain size or thousand grain weight (TGW). The BC4F2 and BC4F3 populations from a cross between CSSL50 and Asominori were used for fine mapping of qPGWC-8. We narrowed down the location of this QTL to a 142 kb region between Indel markers 8G-7 and 8G-9. QTLqPGWC-8 accounted for 50.9% of the difference in PGWC between the parents. The markers tightly linked to qPGWC-8 should facilitate cloning of the gene underlying this QTL and will be of value for marker-assisted selection in breeding rice varieties with better grain quality. | Tao Guo Xiaolu Liu Xiangyuan Wan Jianfeng Weng Shijia Liu Xi Liu Mingjiang Chen Jingjing Li Ning Su Fuqing Wu Zhijun Cheng Xiuping Guo Cailin Lei Jiulin Wang Ling jiang Jianmin Wan | 2011 | Journal of Integrative Plant Biology2011,53,8: | 25 |
| 2 | A cyclic nucleotide-gated channel mediates cytoplasmic calcium elevation and disease resistance in rice显示文摘The transient elevation of cytoplasmic calcium is essential for pathogen-associated molecular pattern(PAMP)-triggered immunity(PTI).However,the calcium channels responsible for this process have remained unknown.Here,we show that rice CDSI(CELL DEATH and SUSCEPTIBLE to BLAST 1)encoding OsCNGC9;a cyclic nucleotide-gated channel protein,positively regulates the resistance to rice blast disease.We show that OsCNGC9 mediates PAMP-induced Ca2+influx and that this event is critical for PAMPs-triggered ROS burst and induction of PTI-related defense gene expression.We further show that a PTI related receptor-lih cytoplasmic kinase OsRLCK185 physically interacts with and phosphorylates OsCNGC9 to activate its channel activity.Our results suggest a signaling cascade linking pattern recognition to calcium channel activation,which is required for initiation of PTI and disease resistance in rice. | Jiachang Wang Xi Liu An Zhang Yulong Ren Fuqing Wu Gang Wang Yang Xu Cailin Lei Shanshan Zhu Tian Pan Yongfei Wang Huan Zhang Fan Wang Yan-Qiu Tan Yupeng Wang Xin Jin Sheng Luo Chunlei Zhou Xiao Zhang Jinling Liu Shuai Wang Lingzhi Meng Yihua Wang Xi Chen Qibing Lin Xin Zhang Xiuping Guo Zhijun Cheng Jiulin Wang Yunlu Tian Shijia Liu Ling Jiang Chuanyin Wu Ertao Wang Jian-Min Zhou Yong-Fei Wang Haiyang Wang Jianmin Wan | 2019 | Cell Research2019,29,10: | 13 |
| 3 | Phosphorylation inhibition of protein-tyrosine phosphatase 1B tyrosine-152 induces bone regeneration coupled with angiogenesis for bone tissue engineering显示文摘A close relationship has been reported to exist between cadherin-mediated cell-cell adhesion and integrin-mediated cell mobility,and protein tyrosine phosphatase 1B(PTP1B)may be involved in maintaining this homeostasis.The stable residence of mesenchymal stem cells(MSCs)and endothelial cells(ECs)in their niches is closely related to the regulation of PTP1B.However,the exact role of the departure of MSCs and ECs from their niches during bone regeneration is largely unknown.Here,we show that the phosphorylation state of PTP1B tyrosine-152(Y152)plays a central role in initiating the departure of these cells from their niches and their subsequent recruitment to bone defects.Based on our previous design of a PTP1B Y152 region-mimicking peptide(152RM)that significantly inhibits the phosphorylation of PTP1B Y152,further investigations revealed that 152RM enhanced cell migration partly via integrinαvβ3 and promoted MSCs osteogenic differentiation partly by inhibiting ATF3.Moreover,152RM induced type H vessels formation by activating Notch signaling.Demineralized bone matrix(DBM)scaffolds were fabricated with mesoporous silica nanoparticles(MSNs),and 152RM was then loaded onto them by electrostatic adsorption.The DBM-MSN/152RM scaffolds were demonstrated to induce bone formation and type H vessels expansion in vivo.In conclusion,our data reveal that 152RM contributes to bone formation by coupling osteogenesis with angiogenesis,which may offer a potential therapeutic strategy for bone defects. | Yong Tang Keyu Luo Yin Chen Yueqi Chen Rui Zhou Can Chen Jiulin Tan Moyuan Deng Qijie Dai Xueke Yu Jian Liu Chengmin Zhang Wenjie Wu Jianzhong Xu Shiwu Dong Fei Luo | 2021 | Bioactive Materials2021,6,7: | 3 |
| 4 | H_(2)S promotes developmental brain angiogenesis via the NOS/NO pathway in zebrafish显示文摘Background Hydrogen sulphide(H_(2)S)is considered as the third member of the gasotransmitter family,along with nitric oxide(NO)and carbon monoxide.H_(2)S has been reported to induce angiogenesis by promoting the growth,migration and tube-like structure formation of endothelial cells.Those studies were conducted in conditions of cell culture,mouse Matrigel plug assay model,rat wound healing model or rat hindlimb ischaemia model.Recent in vivo studies showed the physiological importance of H_(2)S in muscle angiogenesis.However,the importance of endogenous H_(2)S for brain angiogenesis during development remains unknown.We therefore aimed at determining the role of H_(2)S in brain vascular development.Methods and results Both knockdown and knockout of H2S-producing enzymes,cystathionineβ-synthase(cbs)and cystathionineγ-lyase(cth),using morpholino oligonucleotides and clustered regularly interspaced short palindromic repeats/Cas9-mediated mutation,impaired brain vascular development of larval zebrafish.Incubation with the slow-releasing H_(2)S donor GYY4137 alleviated the defects of brain vascular development in cbs and cth morphants.Quantitative analysis of the midbrain vascular network showed that H_(2)S enhances angiogenesis without affecting the topological structure of the brain vasculature.Mechanically,nitric oxide synthase 2a(nos2a)expression and NO production were decreased in both cbs and cth morphants.Overexpression of nos2a by coinjection of cbs or cth MO with full-length zebrafish nos2a mRNA alleviated the brain vascular developmental defects in cbs and cth morphants.Conclusion We conclude that H_(2)S promotes brain developmental angiogenesis via the NOS/NO pathway in zebrafish. | Weiqing Jiang Chen Liu Mingzhu Deng Fei Wang Xiao Ren Yilin Fan Jiulin Du Yonggang Wang | 2021 | Stroke & Vascular Neurology2021,6,2: | 2 |
| 5 | Use of donor-specific red blood cell transfusions for patients undergoing liver transplantation during the COVID-19 pandemic显示文摘Background:Increased risks have been found for patients undergoing liver transplantation due to the blood supply shortage following the ongoing coronavirus disease 2019(COVID-19)pandemic.Hence,exploring a method to alleviate this dilemma is urgent.This phase I,nonrandomized,prospective trial aimed to evaluate the safety and feasibility of using donor-specific red blood cell transfusion(DRBCT)as an urgent measurement to alleviate the blood supply shortage in deceased donor liver transplantation(DDLT).Methods:The outcomes of 26 patients who received DRBCT and 37 patients in the control group who only received 3rd party packed red blood cells(pRBCs)transfusion between May 2020 and January 2021 were compared.Results:Patients receiving DRBCT did not develop transfusion-related complications,and the incidence of postoperative infection was similar to that in the control group(23.1%vs.18.9%,P=0.688).Because the patients received the red blood cells from organ donors,the median volume of intraoperative allogeneic red blood cell transfusion from blood bank was 4.0 U(IQR 1.1-8.0 U)in the DRBCT group,which is significantly lower than that(7.5 U,IQR 4.0-10.0 U)in the control group(P=0.018).The peak aspartate aminotransferase(AST)level was significantly lower in the DRBCT group than in the control group(P=0.008)and so were the AST levels in the first two days after the operation(P=0.006 and P=0.033).Conclusions:DRBCT is a safe and effective procedure to lower the need for blood supply and is associated with a reduction in AST levels after transplantation.DRBCT is beneficial to patients receiving life-saving transplantation without sufficient blood supply during the COVID-19 pandemic. | Tao Lv Xi Xu Jiulin Song Yifei Tan Li Jiang Jian Yang Diao He Lingxiang Kong Weiyi Zhang Panyu Chen Qiwen Xiang Tao Zhu Hong Wu Tianfu Wen Jiayin Yang | 2021 | Hepatobiliary Surgery and Nutrition2021,10,4: | 2 |
| 6 | Preparation,properties and antioxidant activity of an active flm from silver carp (Hypophthalmichthysmolitrix) skin gelatin incorporated with green tea extract显示文摘 | Jiulin Wu Shanfei Chen ShangyingGe | 2005 | Food Hydrocolloids2005,32,: | 1 |
| 7 | Shen-Zhi-Ling oral solution improves learning and memory ability in Alzheimer’s disease mouse model显示文摘OBJECTIVE: To investigate the effector mechanisms and effector targets of Shen-Zhi-Ling (SZL) oral solution in the treatment of Alzheimer's disease (AD). METHODS: In this study, we carried out gavage with SZL oral solution in an APP/PS-1 heterozygous double transgenic AD mouse model for 12 continuous weeks. Haematoxylin and eosin staining, Nissl staining and Annexin V/Propidium Iodide staining were used to detect the brain histopathology in AD mouse model. Immunofluorescence staining was used to detect the expression levels of autophagy's proteins. Morris water maze test was used to detect the learning and memory ability in AD mouse model. RESULTS: Pathological results showed that neuronal loss in the hippocampus of mice in the SZL intervention group was significantly alleviated and the number of apoptotic neurons was significantly decreased compared with the control group (physiological saline and non-intervention groups). Immunofluorescence staining results showed that the expression of autophagy activators, Beclin-1 and LC3B, was significantly increased in the hippocampal neurons of mice of the SZL intervention group, while the expression of the apoptotic factor, caspase- 3, was significantly decreased. At the same time, hippocampal accumulation of Aβ42 protein was significantly decreased. In addition, results of the water maze experiment showed that the latency period in mice from the SZL intervention group was significantly reduced. CONCLUSION: In summary, we believe that the SZL oral solution significantly activates autophagy in hippocampal neurons, effectively reducing the accumulation of Aβ42 peptides, alleviating neuronal injury and apoptosis, and ultimately improving the cognitive function in a mouse model of AD. | Chi Huiying Liu Te Pan Weidong Chen Jiulin Wu Beiling Yu Zhihua Chen Chuan | 2019 | Journal of Traditional Chinese Medicine2019,39,5: | 1 |
| 8 | Stability of Thermonuclear Reaction Affected by Gravitational Force显示文摘 | Du Jiulin Chen Fusheng | 1992 | Astrophys Space Sci1992,195,: | 1 |
| 9 | Stability of Stellar Structure and Nonequilibrium Dynamical Characteristics of g - T Effects in Nuclear Reactions in Stellar Cores显示文摘 | Du Jiulin Chen Fusheng | 1993 | Astrophys Space Sci1993,207,: | 1 |
| 10 | Polymer electrolytes reinforced by 2D fluorinated filler for all-solidstate Li-Fe-F conversion-type lithium metal batteries显示文摘The polyethylene oxide(PEO)based solid-state batteries are considered as promising candidates for the next-generation Li metal batteries with high energy density and safety.However,the low Li-ion conductivity and high-voltage endurability hinder the further applications of PEO-based electrolytes.To overcome these issues,herein two-dimensional(2D)CeF_(3)nanoplates with maximally exposed[001]crystal faces are introduced into the PEO matrix to expand the electrochemical window and improve Liion conduction and transport.The optimized crystal shape and crystal face anisotropy of CeF_(3)nanoplate filler reduce the crystallinity of composite solid polymer electrolyte(CSPE)via its Lewis acid-base interaction with ether oxygen of PEO.The Liaffinity[100]and Li-repellent[001]crystal faces of CeF_(3)nanoplates synergistically realize the dissociation of lithium bis(trifluoromethanesulfonyl)imide(LiTFSI),fast Li-adsorption/desorption,and Li+migration.The optimized CSPE-0.1CeF_(3)membrane enables the achievement of Li metal batteries with high endurability and stability,from the kinetically favorable Li/Li symmetric cells with long-term cycling over 8000 h.The highly reversible Li/LiFePO_(4) cells exhibit a capacity retention of 109.2 mAh·g^(−1)after 1000 cycles at 1 C,corresponding to a low capacity fading rate of 0.026%per cycle.The conversion-type allsolid-state Li/CSPE-0.1CeF_(3)/FeF_(3)cells show a high reversible capacity of 201.9 mAh·g^(−1)after long-term 600 cycles and of 231.1 mAh·g^(−1)at an ultra-high rate of 5 C. | Meng Lei Xiaoxue Wu Yangyang Liu Keyi Chen Jiulin Hu Chilin Li | 2023 | Nano Research2023,16,6: | 1 |
| 11 | Stability of the stellar structure and nonequilibrium dynamical characteristics of (g — T) effects in nuclear reactions in stellar cores显示文摘 | Jiulin Du Fusheng Chen | 1993 | Astrophysics and Space Science1993,,1: | 1 |
| 12 | Stability of thermonuclear reaction affected by gravitational force显示文摘 | Du Jiulin Chen Fusheng | 1992 | Astrophysics and Space Science1992,,2: | 1 |
| 13 | Preparation, properties and antioxidant activity of an active film from silver carp ( Hypophthalmichthys molitrix ) skin gelatin incorporated with green tea extract显示文摘 | Jiulin Wu Shanfei Chen Shangying Ge Jing Miao Jianhua Li Qiqing Zhang | 2013 | Food Hydrocolloids2013,,1: | 1 |
| 14 | Preparation and biocompatibility of nanohybrid scaffolds by in situ homogeneous formation of nano hydroxyapatite from biopolymer polyelectrolyte complex for bone repair applications显示文摘 | Jingdi Chen Qifeng Yu Guodong Zhang Shen Yang Jiulin Wu Qiqing Zhang | 2012 | Colloids and Surfaces B: Biointerfaces2012,,: | 1 |
| 15 | Magnesium cobalt silicate materials for reversible magnesium ion storage显示文摘 | Yupei Zheng Yanna NuLi Qiang Chen Ying Wang Jun Yang Jiulin Wang | 2012 | Electrochimica Acta2012,,: | 1 |
| 16 | Structure and reactions mechanism of sulfurized polyacrylonitrile as cathodes for rechargeable Li-S batteries显示文摘Sulfurized polyacrylonitrile(S@pPAN)composite provides a conductive pathway for sulfur active material at the molecular level and has already become one of the most promising cathode materials in lithium-sulfur batteries because of its outstanding electrochemical performances via novel solid-solid conversion mechanism.Although there are a great number of researches on the S@pPAN composite material,the accurate structure of S@pPAN and its redox reaction mechanism during the charge-discharge process still have not been determined.The previous research and inferences about the structure of S@pPAN and its electrochemical reaction mechanism were summarized in this review,providing a reference for the future study of lithiumsulfur batteries. | Xuan Zhang Huiyang Ma Jiqiong Liu Jiahang Chen Huichao Lu Yudai Huang Jiulin Wang | 2023 | Nano Research2023,16,6: | 0 |
| 17 | Research status and prospect of separators for magnesium-sulfur batteries显示文摘Magnesium-sulfur(Mg-S)batteries have attracted wide research attention in recent years,and are considered as one of the major candidates to replace lithium-ion batteries due to the high theoretical energy density,low costs of active materials,and high safety.However,there are still significant challenges that need to be overcome before they can reach the large-scale practical applications.The key issue is the dissolution and shuttle effect of magnesium polysulfides(Mg-PSs),which leads to severe capacity degradation and shortens cycling life,greatly limiting the development of Mg-S batteries.In order to overcome these challenges,great efforts have been made in cathode materials,electrolytes,and separators.Herein,we review the investigations on suppressing the shuttle effect of Mg-PSs via the modification of separators,including schemes such as coating the functional materials that can hold Mg-PSs on the surface of polyolefin-based or glass fiber(GF)separators,forming gel polymer separators via cross-linking polymerization reactions,and developing gel polymer electrolytes coupled with GF separators.Furthermore,an outlook is proposed for the future design on separator exploitation to accelerate the development of Mg-S battery technology. | Shaopeng Chen Yaru Wang Yukun Sun Duo Zhang Shuxin Zhang Yazhen Zhao Jiulin Wang Jun Yang Yanna NuLi | 2023 | Journal of Energy Chemistry2023,,12: | 0 |
| 18 | Electrolyte design strategies towards long-term Zn metal anode for rechargeable batteries显示文摘Rechargeable Zinc(Zn)batteries exhibit great potentials as alternative energy storage devices due to their high safety,low cost,and environmental friendliness.However,the long-standing issues of low Coulombic efficiency(CE)and poor cycle stability of Zn anode,derived from dendrite,H_(2)evolution,and passivation are directly related to their thermodynamic instability in aqueous electrolyte,severely shorten the battery's cycle life.Recently reported electrolyte design strategies,which have made great progress to address Zn metal anode problems,are summarized into two categories,that is,aqueous electrolytes about cation-water interaction controlling and interface adjusting,and novel types of electrolytes towards less water,non-aqueous solvents,even no solvents.The final section shows the brief comparisons,including failure mechanisms of electrolyte exhaustion and short circuit for aqueous and nonaqueous electrolyte based full cells respectively,and possible perspectives for future research. | Ming Xu Jiahang Chen Yang Zhang Bareera Raza Chunyan Lai Jiulin Wang | 2022 | Journal of Energy Chemistry2022,31,10: | 0 |
| 19 | Tailored deep-eutectic solvent method to enable 3D porous iron fluoride bricks for conversion-type lithium batteries显示文摘Conversion-type fluoride cathode can provide considerable energy density for Li batteries,however its scalable and facile synthesis strategies are still lacking.Here,a novel Fe-based deep eutectic solvent composed of nitrite and methylsulfonylmethane is proposed as both the reaction medium and precursor to synthesize O-doped FeF3porous bricks.This method is cheaper,safe,mildly operable,environmentally friendly and recyclable for non-fluorinated metal cations.The homogenization of charge and mass transport in cathode network effectively mitigates the volume extrusion and electrode coarsening even for the micro-sized monolithic particles.The Co-solvation modulated fluoride cathode delivers high reversible capacity in a wide temperature range(486 and 235 mA h g^(-1)at 25℃ and-20℃ respectively),excellent rate performance(312 mA h g^(-1)at 1000 mA g^(-1)),corresponding to an energy density as high as672.1 W h kg^(-1)under a power density of 2154.3 W kg^(-1).The successful operation of fluoride pouchcell with a capacity exceeding 450 mA h g^(-1)(even under thin Li foil and lean electrolyte conditions) indicates its potentiality of commercial application. | Chuanzhong Lai Keyi Chen Yongjian Zheng Junwei Meng Jiulin Hu Chilin Li | 2023 | Journal of Energy Chemistry2023,,3: | 0 |
| 20 | Modulation of SIRT6 activity acts as an emerging therapeutic implication for pathological disorders in the skeletal system显示文摘The skeletal system is a dynamically balanced system, which undergoes continuous bone resorption and formation to maintain bone matrix homeostasis. As an important ADP-ribosylase and NAD+-dependent deacylase, SIRT6 (SIR2-like protein 6) is widely expressed on various kinds of bone cells, such as chondrocytes, osteoblasts, osteoclasts. The aberration of SIRT6 impairs gene expression (e.g., NF-κB and Wnt target genes) and cellular functions (e.g., DNA repair, glucose and lipid metabolism, telomeric maintenance), which disturbs the dynamic balance and ultimately leads to several bone-related diseases. In this review, we summarize the critical roles of SIRT6 in the onset and progression of bone-related diseases including osteoporosis, osteoarthritis, rheumatoid arthritis, and intervertebral disc degeneration, as well as the relevant signaling pathways. In addition, we discuss the advances in the development of SIRT6 activators and elucidate their pharmacological profiles, which may provide novel treatment strategies for these skeletal diseases. | Zicai Dong Chuan Yang Jiulin Tan Ce Dou Yueqi Chen | 2023 | Genes & Diseases2023,10,3: | 0 |