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1Cenozoic sedimentary records and geochronological constraints of differential uplift of the Qinghai-Tibet Plateau显示文摘Geological mapping data (1:250000) in the Qinghai-Tibet Plateau and its adjacent regions reveal the sediment sequences, distribution and tectonic evolution of the 92 Tertiary remnant basins. Southern Tibet and the Yecheng area in Xinjiang, located at southern and northwestern margins of the Qinghai-Tibet Plateau, respectively, were parts of the Neo-Tethys remnant sea in the Paleogene. In southern Tibet, both the subabyssal and abyssal sequences occur at the Gyangze, Saga, Guoyala, and Sangmai areas. The deep-water facies successions outcrop in the west, whereas the shallow-water facies sequences in the east, indicating the east to the west retreat of the Neo-Tethys Ocean. The retreat of the Neo-Tethys Ocean in the east was contributed to the earlier tectonic uplift of the eastern Qinghai-Tibet Plateau. The uplift process of the Plateau from the Late Cretaceous to Pliocene is described as follows: During the Late Cretaceous, tectonic uplift of the Qinghai-Tibet Plateau occurred in the northeastern part and the configuration of the Qinghai-Tibet Plateau was characterized by rise in the northeast and depression in the west. In the Paleocene-Eocene interval, the Tengchong-Baingoin and Kuyake-Golmud areas experienced local tectonic uplifting, the West Kunlun uplift zone broadened easterly, the Qilian uplift zone broadened southerly, and the Songpan-Garzê uplift zone shrank easterly. The Oligocene configuration of the Qinghai-Tibet Plateau was characterized by mountain chains rising along its margins and sedimentary basins in the central part because of tectonic uplifts of the Gangdisê and the Himalaya blocks. Meanwhile, the Kunlun-Altyn-Qilian uplift zones have also broadened southerly and northerly. In contrast, the great uplift zones of the Gangdisê, the Himalaya, the Karakorum, and the Kunlun blocks characterize the paleogeographic contours of the Qinghai-Tibet Plateau during the Miocene-Pliocene. Additionally, the thermochronological data on tectonic uplift events in southern Tibet, West Kunlun Mountains, Altyn Tagh, eastern Tibet, and western Sichuan all suggest that the most intense deformation occurred at 13-8 Ma and since 5 Ma, respectively, corresponding to two great uplift periods in Neogene. As a result, turnover of paleogeographic configuration of the Qinghai-Tibet Plateau occurred during the Neogene, experiencing a change from high contours in the east in the pre-Oligocene to high contours in the west at the end-Pliocene. The uplift of the Qinghai-Tibet Plateau during the Cenozoic was episodic, and the uplifts of various blocks within the Plateau were spatially and chronologically different.ZHANG KeXin WANG GuoCan CAO Kai LIU Chao XIANG ShuYuan HONG HanLie KOU XiaoHu XU YaDong CHEN FenNing MENG YanNing CHEN RuiMing 2008Science China Earth Sciences2008,51,11:31
2Ustilaginoidea virens: A Fungus Infects Rice Flower and Threats World Rice Production显示文摘Rice false smut disease, which is caused by the fungus Ustilaginoidea virens, is currently one of the most devastating rice fungal diseases in the world. Rice false smut disease not only causes severe yield loss and grain quality reduction, but also threatens food safety due to its production of mycotoxins. In this review, the most recent progresses regarding the life cycle, infection processes, genome and genetic diversity, pathogenic gene and disease resistance in rice were summarized in order to provide theoretical basis for the control of U. virens. We also proposed some future directions and key questions that need to be addressed for a better understanding of the molecular mechanism that leads to rice false smut disease and the prospects for sustainable control of rice false smut.QIU Jiehua MENG Shuai DENG Yizhen HUANG Shiwen KOU Yanjun 2019Rice science2019,26,4:16
3Perioperative and long-term outcome of thymectomy for myasthenia gravis: comparison of surgical approaches and prognostic analysis显示文摘LIU Cheng-wu LUO Meng MEI Jian-dong ZHU Yun-ke PU Qiang MA Lin CHE Guo-wei LIN Yi-dan WU Zhu WANG Yun KOU Ying-li LIU Lun-xu 2013Chinese Medical Journal2013,,1:8
4Effect of Ti substitution on hydrogen storage properties of Zr_(1-x)Ti_xCo (x = 0, 0.1, 0.2, 0.3) alloys显示文摘Zr1-xTixCo(x = 0, 0.1, 0.2, 0.3) alloys were prepared by arc-melting method and the effect of Ti substitution on hydrogen storage properties was studied systematically. Hydrogen desorption pressure-composition-temperature(PCT) measurements were carried out using Sievert's type volumetric apparatus for ZrCo(at 473 K, 573 K and 673 K) and Zr1-xTixCo alloys(at 673 K), respectively. Products after dehydrogenation were characterized by X-ray diffraction(XRD). In addition, the kinetics of Zr1-xTixCo hydride was investigated at 473 K and 673 K,respectively, under hydrogen pressure of 5 MPa. Results showed that Ti substitution for Zr did not change the crystal structure of ZrCo phase.With the increase of temperature from 473 K to 673 K, the extent of disproportionation for ZrCo alloy increased. With Ti content increasing at 673 K, the desorption equilibrium pressure of Zr1-xTixCo-H2 systems elevated and the disproportionation reaction of Zr1-xTixCo alloys was inhibited effectively. Ti substitution decreased the kinetics rate and the effective hydrogen storage capacity of Zr1-xTixCo alloys slightly.Generally speaking, it was found that Zr0.8Ti0.2Co alloy had better anti-disproportionation property with less decrease of effective hydrogen storage capacity which was beneficial to tritium application in the International Thermonuclear Experimental Reactor(ITER).Yamin Zhao Rongfeng Li Ruihe Tang Boyan Li Ronghai Yu Wei Liu Huaqin Kou Jianbo Meng 2014Journal of Energy Chemistry2014,23,1:6
5Development of SNP markers using RNA-seq technology and tetraprimer ARMS-PCR in sweetpotato显示文摘The information of single nucleotide polymorphisms(SNPs) is quite unknown in sweetpotato. In this study,two sweetpotato varieties(Xushu 18 and Xu 781) were sequenced by Illumina technology,as well as de novo transcriptome assembly,functional annotation,and in silico discovery of potential SNP molecular markers. Tetra-primer Amplification Refractory Mutation System PCR(ARMS-PCR) is a simple and sufficient method for detecting different alleles in SNP locus. Total 153 sets of ARMS-PCR primers were designed to validate the putative SNPs from sequences. PCR products from 103 sets of primers were different between Xu 781 and Xushu 18 via agarose gel electrophoresis,and the detection rate was 67.32%. We obtained the expected results from 32 sets of primers between the two genotypes. Furthermore,we ascertained the optimal annealing temperature of 32 sets of primers. These SNPs might be used in genotyping,QTL mapping,or marker-assisted trait selection further in sweetpotato. To our knowledge,this work was the first study to develop SNP markers in sweetpotato by using tetra-primer ARMS-PCR technique. This method was a simple,rapid,and useful technique to develop SNP markers,and will provide a potential and preliminary application in discriminating cultivars in sweetpotato.KOU Meng XU Jia-lei LI Qiang LIU Ya-ju WANG Xin TANG Wei YAN Hui ZHANG Yun-gang MA Dai-fu 2017Journal of Integrative Agriculture2017,16,2:6
6Characterization of naturally occurring pentacyclic triterpenes as novel inhibitors of deubiquitinating protease USP7 with anticancer activity in vitro显示文摘Deubiquitinating 朊酶 USP7 是为癌症治疗的一个有希望的治疗学的目标,并且对开发 USP7 禁止者的兴趣极大地增加了。在现在的学习,我们在 vitro 与 USP7 禁止的活动报导了一系列自然 pentacyclic triterpenes。在他们之中, ursane triterpenes 和 oleanane triterpenes 比贪吃的 triterpenes 更活跃,而 ursolic 酸是有 7.0 的 IC 50Bo JING Meng LIU Li YANG Hai-yan CAI Jie-bo CHEN Ze-xi LI Xi KOU Yun-zhao WU Dong-jun QIN Li ZHOU Jin JIN Hu LEI Han-zhang XU Wei-wei WANG Ying-li WU 2018Acta Pharmacologica Sinica2018,39,3:5
7Chinese Medicine Treatment Prolonged Survival in Small Cell Lung Cancer Patients:A Clinical Observation显示文摘Objective To evaluate the effect of Chinese medicine(CM)treatment on survival time and quality of life(QOL)in patients with small cell lung cancer(SCLC).Methods This was an exploratory and prospective clinical observation.Patients diagnosed with SCLC receiving CM treatment were included and followed up every 3 months.The primary outcome was overall survival(OS),and the secondary outcomes were progression-free survival(PFS)and QOL.Results A total of 136 patients including 65 limited-stage SCLC(LS-SCLC)patients and 71 extensive-stage SCLC(ES-SCLC)patients were analyzed.The median OS of ES-SCLC patients was 17.27 months,and the median OS of LS-SCLC was 40.07 months.The survival time was 16.27 months for SCLC patients with brain metastasis,9.83 months for liver metastasis,13.43 months for bone metastasis,and 18.13 months for lung metastasis.Advanced age,pleural fluid,liver and brain metastasis were risk factors,while longer CM treatment duration was a protective factor.QOL assessment indicated that after 6 months of CM treatment,scores increased in function domains and decreased in symptom domains.Conclusion CM treatment might help prolong OS of SCLC patients.Moreover,CM treatment brought the trend of symptom amelioration and QOL improvement.These results provide preliminary evidence for applying CM in SCLC multi-disciplinary treatment.XU Xiao-qing DENG Wen-qi WANG Da-yang LI Meng KOU Dong-lei ZHANG Pei-tong 2021Chinese Journal of Integrative Medicine2021,27,7:5
8Ipomoea batatas HKT1 transporter homolog mediates K^+ and Na^+ uptake in Saccharomyces cerevisiae显示文摘Soil salinity causes the negative effects on the growth and yield of crops. In this study,two sweet potato(Ipomoea batatas L.) cultivars,Xushu 28(X-28) and Okinawa 100(O-100),were examined under 50 and 100 mmol L^(–1) Na Cl stress. X-28 cultivar is relatively high salt tolerant than O-100 cultivar. Interestingly,real-time quantitative polymerase chain reaction(RT-q PCR) results indicated that sweet potato high-affinity K^+ transporter 1(IbHKT1) gene expression was highly induced by 50 and 100 mmol L^(–1) Na Cl stress in the stems of X-28 cultivar than in those of O-100 cultivar,but only slightly induced by these stresses in the leaves and fibrous roots in both cultivars. To characterize the function of IbHKT1 transporter,we performed ion-flux analysis in tobacco transient system and yeast complementation. Tobacco transient assay showed that IbHKT1 could uptake sodium(Na^+). Yeast complementation assay showed that IbHKT1 could take up K^+ in 50 mmol L^(–1) K^+ medium without the presence of Na Cl. Moreover,Na^+ uptake significantly increased in yeast overexpressing IbHKT1. These results showed that IbHKT1 transporter could have K^+-Na^+ symport function in yeast. Therefore,the modes of action of IbHKT1 in transgenic yeast could differ from the mode of action of the other HKT1 transporters in class I. Potentially,IbHKT1 could be used to improve the salt tolerance nature in sweet potato.PARK Sung-chul YU Yi-cheng KOU Meng YAN Hui TANG Wei WANG Xin LIU Ya-ju ZHANG Yun-gang KWAK Sang-soo MA Dai-fu SUN Jian LI Qiang 2017Journal of Integrative Agriculture2017,16,10:3
9Single‑Atom Catalysts:Advances and Challenges in Metal‑Support Interactions for Enhanced Electrocatalysis显示文摘Single-atom catalysts(SACs),which contain a single metal atom supported on a well-confined substrate,are among the most promising heterogeneous catalysts owing to their unique advantages,such as high intrinsic activity and selectivity,tunable bonds and coordination,abundant metal-containing active sites,and atomic economy.Since metal-support interactions(MSIs)in SACs exert a substantial influence on the catalytic properties,gaining a profound understanding and recognition of catalytic reactions depends greatly on investigating MSIs both experimentally and computationally.Hence,the engineer-ing and modulation of MSIs are regarded as one of the most efficient methods to rationally design SACs with disruptively enhanced catalytic properties.In this review,we track the recent advances in SACs from an MSI perspective.We then discuss the existing MSIs in SACs and elucidate the significant role of strong MSIs in catalytic properties and mechanisms.The chal-lenges hindering the rational design of supported SACs with strong MSIs,which are currently still far from being completely understood and overcome,are described.In addition,the correlation between strong MSIs and electrocatalytic activities in SACs,including an outlook to increase our understanding of MSIs,is discussed.Finally,the present review provides some perspectives and an in-depth understanding of strong MSIs to advance high-performing SACs.Yang Mu Tingting Wang Jian Zhang Changgong Meng Yifu Zhang Zongkui Kou 2022Electrochemical Energy Reviews2022,5,1:3
10OsMPK4 promotes phosphorylation and degradation of IPA1 in response to salt stress to confer salt tolerance in rice显示文摘Salt stress adversely affects plant growth,development,and crop yield.Rice(Oryza sativa L.)is one of the most salt-sensitive cereal crops,especially at the early seedling stage.Mitogen-activated protein kinase(MAPK/MPK)cascades have been shown to play critical roles in salt response in Arabidopsis.However,the roles of the MPK cascade signaling in rice salt response and substrates of Os MPK remain largely unknown.Here,we report that the salt-induced Os MPK4-Ideal Plant Architecture 1(IPA1)signaling pathway regulates the salt tolerance in rice.Under salt stress,Os MPK4 could interact with IPA1 and phosphorylate IPA1 at Thr180,leading to degradation of IPA1.Genetic evidence shows that IPA1 is a negative regulator of salt tolerance in rice,whereas Os MPK4 promotes salt response in an IPA1-dependent manner.Taken together,our results uncover an Os MPK4-IPA1 signal cascade that modulates the salt stress response in rice and sheds new light on the breeding of salt-tolerant rice varieties.Meiru Jia Nan Luo Xiangbing Meng Xiaoguang Song Yanhui Jing Liquan Kou Guifu Liu Xiahe Huang Yingchun Wang Jiayang Li Bing Wang Hong Yu 2022Journal of Genetics and Genomics2022,49,8:2
11Low phosphorus promotes NSP1–NSP2 heterodimerization to enhance strigolactone biosynthesis and regulate shoot and root architecture in rice显示文摘Phosphorus is an essential macronutrient for plant development and metabolism,and plants have evolved ingenious mechanisms to overcome phosphate(Pi)starvation.However,the molecular mechanisms underlying the regulation of shoot and root architecture by low phosphorus conditions and the coordinated utilization of Pi and nitrogen remain largely unclear.Here,we show that Nodulation Signaling Pathway 1(NSP1)and NSP2 regulate rice tiller number by promoting the biosynthesis of strigolactones(SLs),a class of phytohormones with fundamental effects on plant architecture and environmental responses.We found that NSP1 and NSP2 are induced by Oryza sativa PHOSPHATE STARVATION RESPONSE2(OsPHR2)in response to low-Pi stress and form a complex to directly bind the promoters of SL biosynthesis genes,thus markedly increasing SL biosynthesis in rice.Interestingly,the NSP1/2–SL signaling module represses the expression of CROWN ROOTLESS 1(CRL1),a newly identified early SL-responsive gene in roots,to restrain lateral root density under Pi deficiency.We also demonstrated that GR24^(4DO) treatment under normal conditions inhibits the expression of OsNRTs and OsAMTs to suppress nitrogen absorption but enhances the expression of OsPTs to promote Pi absorption,thus facilitating the balance between nitrogen and phosphorus uptake in rice.Importantly,we found that NSP1p:NSP1 and NSP2p:NSP2 transgenic plants show improved agronomic traits and grain yield under low-and medium-phosphorus conditions.Taken together,these results revealed a novel regulatory mechanism of SL biosynthesis and signaling in response to Pi starvation,providing genetic resources for improving plant architecture and nutrient-use efficiency in low-Pi environments.Kun Yuan Hao Zhang Chaoji Yu Nan Luo Jijun Yan Shuang Zheng Qingliang Hu Dahan Zhang Liquan Kou Xiangbing Meng Yanhui Jing Mingjiang Chen Xinwei Ban Zongyun Yan Zefu Lu Jian Wu Yu Zhao Yan Liang Yonghong Wang Guosheng Xiong Jinfang Chu Ertao Wang Jiayang Li Bing Wang 2023Molecular Plant2023,16,11:2
12Genome-wide analysis of expression quantitative trait loci(eQTLs)reveals the regulatory architecture of gene expression variation in the storage roots of sweet potato显示文摘Dissecting the genetic regulation of gene expression is critical for understanding phenotypic variation and species evolution.However,our understanding of the transcriptional variability in sweet potato remains limited.Here,we analyzed two publicly available datasets to explore the landscape of transcriptomic variations and its genetic basis in the storage roots of sweet potato.The comprehensive analysis identified a total of 724,438 high-confidence single nucleotide polymorphisms(SNPs)and 26,026 expressed genes.Expression quantitative trait locus(eQTL)analysis revealed 4408 eQTLs regulating the expression of 3646 genes,including 2261 local eQTLs and 2147 distant eQTLs.Two distant eQTL hotspots were found with target genes significantly enriched in specific functional classifications.By combining the information from regulatory network analyses,eQTLs and association mapping,we found that IbMYB1-2 acts as a master regulator and is the major gene responsible for the activation of anthocyanin biosynthesis in the storage roots of sweet potato.Our study provides the first insight into the genetic architecture of genome-wide expression variation in sweet potato and can be used to investigate the potential effects of genetic variants on key agronomic traits in sweet potato.Lei Zhang Yicheng Yu Tianye Shi Meng Kou Jian Sun Tao Xu Qiang Li Shaoyuan Wu Qinghe Cao Wenqian Hou Zongyun Li 2020Horticulture Research2020,7,1:2
13Overexpression of phosphatidylserine synthase IbPSS1 affords cellular Na+homeostasis and salt tolerance by activating plasma membrane Na^(+)/H^(+)antiport activity in sweet potato roots显示文摘Phosphatidylserine synthase(PSS)-mediated phosphatidylserine(PS)synthesis is crucial for plant development.However,little is known about the contribution of PSS to Na^(+)homeostasis regulation and salt tolerance in plants.Here,we cloned the IbPSS1 gene,which encodes an ortholog of Arabidopsis AtPSS1,from sweet potato(Ipomoea batatas(L.)Lam.).The transient expression of IbPSS1 in Nicotiana benthamiana leaves increased PS abundance.We then established an efficient Agrobacterium rhizogenes-mediated in vivo root transgenic system for sweet potato.Overexpression of IbPSS1 through this system markedly decreased cellular Na^(+)accumulation in salinized transgenic roots(TRs)compared with adventitious roots.The overexpression of IbPSS1 enhanced salt-induced Na^(+)/H^(+)antiport activity and increased plasma membrane(PM)Ca^(2+)-permeable channel sensitivity to NaCl and H2O2 in the TRs.We confirmed the important role of IbPSS1 in improving salt tolerance in transgenic sweet potato lines obtained from an Agrobacterium tumefaciens-mediated transformation system.Similarly,compared with the wild-type(WT)plants,the transgenic lines presented decreased Na^(+)accumulation,enhanced Na^(+)exclusion,and increased PM Ca^(2+)-permeable channel sensitivity to NaCl and H2O2 in the roots.Exogenous application of lysophosphatidylserine triggered similar shifts in Na^(+)accumulation and Na^(+)and Ca^(2+)fluxes in the salinized roots of WT.Overall,this study provides an efficient and reliable transgenic method for functional genomic studies of sweet potato.Our results revealed that IbPSS1 contributes to the salt tolerance of sweet potato by enabling Na^(+)homeostasis and Na^(+)exclusion in the roots,and the latter process is possibly controlled by PS reinforcing Ca^(2+)signaling in the roots.Yicheng Yu Ying Xuan Xiaofeng Bian Lei Zhang Zhiyuan Pan Meng Kou Qinghe Cao Zhonghou Tang Qiang Li Daifu Ma Zongyun Li Jian Sun 2020Horticulture Research2020,7,1:2
14Putative Phosphatase UvPsr1 Is Required for Mycelial Growth, Conidiation, Stress Response and Pathogenicity in Ustilaginonidea virens显示文摘Ustilaginoidea virens is the causal agent of rice false smut,which can be a highly destructive disease of rice.The plasma membrane phosphatase Psr1 proteins,which act as a regulator of the salinity stress response in yeast,are widely distributed across fungi,but their functional characterization is sketchy.In this study,we characterized the functions of Psr1 protein,UvPsr1,in U.virens.Analyses of the AUvpsr1 and its complementation strain showed that UvPsr1 is required for normal mycelial growth,conidiation and tolerance to oxidative,osmotic and cell wall stresses.When rice panicles were inoculated with the AUvpsr1 strains,no symptoms of false smut disease developed,showing that UvPSR1 also contributes to the pathogenicity of the fungus.The deletion mutant of UvPSR1 also appeared to produce a smaller titer of toxic compounds able to inhibit elongation of the germinated seeds.In conclusion,our results indicated that UvPsr1 is a new pathogenic factor of U.virens.Xiong Meng Meng Shuai Qiu Jiehua Shi Huanbin Shen Xiangling Kou Yanjun 2020Rice science2020,27,6:2
15Regulations of m^(6)A methylation on tomato fruit chilling injury显示文摘Tomato fruit are sensitive to chilling injury(CI)during cold storage.Several factors have been discovered to be involved in chilling injury of tomato fruit.Plant hormones play an important regulatory role,however,the relationship between chilling injury and N6-methyladenosine(m^(6)A)methylation of transcripts in plant hormone pathways has not been reported yet.In order to clarify the complex regulatory mechanism of m^(6)A methylation on chilling injury in tomato fruit,Nanopore direct RNA sequencing was employed.A large number of enzymes and transcription factors were found to be involved in the regulation process of fruit chilling injury,which were associated with plant hormone,such as 1-aminocyclopropane 1-carboxylate synthase(ACS),aspartate aminotransferase(AST),auxin response factor(ARF2),ethylene response factor 2(ERF2),gibberellin 20-oxidase-3(GA20ox)and jasmonic acid(JA).By conjoint analysis of the differential expression transcripts related to chilling injury andm^(6)Amethylation differential expression transcripts 41 differential expression transcripts were identified involved in chilling injury including 1-aminocyclopropane-1-carboxylate oxidase(ACO)and pectinesterase(PE)were down-regulated and heat shock cognate 70 kD protein 2(cpHSC70),HSP70-binding protein(HspBP)and salicylic acid-binding protein 2(SABP2)were up-regulated.Our results will provide a deeper understanding for chilling injury regulatory mechanism and post-harvest cold storage of tomato fruit.Chunmei Bai Minghuan Fang Baiqiang Zhai Lili Ma Anzhen Fu Lipu Gao Xiaohong Kou Demei Meng Qing Wang Shufang Zheng Jinhua Zuo 2021Horticultural Plant Journal2021,7,5:2
16Cross-correlation of optical micrecavity biosensor response with immobilized enzyme activity显示文摘Lisa A Delouise Peng Meng Kou Benjamin L Miller 2005Anal Chem2005,77,:1
17No genetic association between single-nucleotide polymorphisms in the coding region of the SLC6A4gene and internalizing disorders in mainland Chinese university students显示文摘Meng X Yu Y Kou C 2013Psychiatr Genet2013,23,1:1
18The Prevalence and Cor- relates of Neurotic Disorders Among Undergraduates at a Mainland Chinese University显示文摘Kou C Meng X Xie B 2012Soc Psychiatry Psychi- air Epidemiol2012,,12:1
19Genetic lineage tracing identifies cardiac mesenchymal-to-adipose transition in an arrhythmogenic cardiomyopathy model显示文摘Arrhythmogenic cardiomyopathy(ACM)is one of the most common inherited cardiomyopathies,characterized by progressive fibrofatty replacement in the myocardium.However,the cellular origin of cardiac adipocytes in ACM remains largely unknown.Unraveling the cellular source of cardiac adipocytes in ACM would elucidate the underlying pathological process and provide a potential target for therapy.Herein,we generated an ACM mouse model by inactivating desmosomal gene desmoplakin in cardiomyocytes;and examined the adipogenic fates of several cell types in the disease model.The results showed that SOX9^(+),PDGFRa^(+),and PDGFRb^(+)mesenchymal cells,but not cardiomyocytes or smooth muscle cells,contribute to the intramyocardial adipocytes in the ACM model.Mechanistically,Bmp4 was highly expressed in the ACM mouse heart and functionally promoted cardiac mesenchymal-to-adipose transition in vitro.Xinyan Huang Lei Yan Jufeng Meng Nanbo Liu Shuoji Zhu Zhen Jiang Shan Kou Teng Feng Chao-Po Lin Bin Zhou Juan Tang Ping Zhu Hui Zhang 2023Science China(Life Sciences)2023,66,1:1
20Mechanism of deb- ris flows in mountain streams显示文摘Kou Changhuan Ma Shiwei Lai Meng wei 2013Applied Mechanics and Ma- terial2013,26,2:1
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