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| 1 | Structural insights into the TRIM family of ubiquitin E3 ligases显示文摘 | Yang Li Han Wu Wei Wu Wei Zhuo Weixiao Liu Yixiao Zhang Minzhang Cheng Ye-Guang Chen Ning Gao Hongtao Yu Linfang Wang Wei Li Maojun Yang | 2014 | Cell Research2014,24,6: | 12 |
| 2 | Amazing structure of respirasome: unveiling the secrets of cell respiration显示文摘Respirasome,执行细胞的呼吸的一台巨大的分子的机器,自从它的发现,获得了成长注意,因为呼吸是在几乎所有生活动物的最不可缺少的生物过程。respirasome 的概念更新了我们呼吸的链组织的理解,并且最最近, respirasome 的结构从清华大学由 Yangs 组解决了(Gu 等。自然 237 (7622 ): 639-643, 2016 ) 第一在这台巨大的分子的机器以内介绍了详细相互作用,并且为药设计提供了重要信息并且屏蔽。然而,细胞的呼吸的学习通过了长历史。这里,我们简短显示出呼吸的链调查的 detoured 历史,然后描述了 respirasome 的令人惊讶的结构。 | Runyu Guo Jinke Gu Meng Wu Maojun Yang | 2016 | Protein & Cell2016,7,12: | 7 |
| 3 | Establishment of in Vitro Regeneration System of Bitter Melon (Momordica Charantia L. )显示文摘Explants of bitter melon can produce three types of callus: green, yellow green and fragile yellow callus. During the period of inducing callus, the explants are not sensitive to the kinds and proportions of phytohormone. The rate of callus inductivity is about 90.0%. However, in the process of callus differentiating adventitious bud, the kind, proportion and quantity of phytohormone and the type of callus made different result. The adventitious buds were induced successfully on MS medium+6-BA (N6-benzyladenine) 4.0 mg l-1+KT(kinetin) 2.0 mg l-1) by yellow green callus. The frequency was about 66.7 %. Yellow callus did not differentiated adventitious bud. The frequency of green callus differentiation was very low (<15.0 %) even under the most suitable conditions. The MS + ZT (zeatin) 5.0 mgl-1 +KT 0.5 mgl-1 medium was suitable for the proliferation of bud and three weeks later, the coefficient of proliferation was about 5-6. The 1/2 MS + ZT 0.02 mgl-1 or 1/2 MS media were suitable for in vitro rooting of shoot, the shoot on them could produce 6-7 new roots in three weeks. After plantation test, the survival rate of tube plantlets was about 70% and their characteristics were the same as those from seed by field test. | 杨满业 Zhao Maojun Zeng Yu Lan Liqong Chen Fang | 2004 | High Technology Letters2004,10,1: | 7 |
| 4 | Anti-hyperglycemic effects of dihydromyricetin in streptozotocin-induced diabetic rats显示文摘Dihydromyricetin(DHM),as a bioactive flavanonol compound,is mainly found in“Tengcha”(Ampelopsis grossedentata)cultivated in south of China.This study aimed to investigate the anti-hyperglycemic and antidyslipidemic activities of DHM using type 2 diabetes mellitus(T2D)rats,which was induced by feeding with high fat and fructose diet for 42 days and intraperitoneal administration of streptozocin.Forty-eight freshlyweaned rats were randomly assigned into the negative control(Blank),low dose(100 mg/kg),medium dose(200 mg/kg),high dose(400 mg/kg),and positive(40 mg/kg,met)groups.Fasting blood glucose and body weight were measured at weekly interval.Oral glucose tolerance tests were performed on days 42.The results revealed that DHM possessed significant antihyperglycaemic and antihyperinsulinemic effects.Moreover,after the DHM treatment,p-Akt and p-AMPK expression was upregulated,and glycogen synthase kinase-3β(GSK-3β)expression was downregulated,indicating that the potential anti-diabetic mechanism of DHM might be due to the regulation of the AMPK/Akt/GSK-3βsignaling pathway. | Maojun Yao Hui Teng Qiyan Lv Huifang Gao Tengming Guo Yiwen Lin Sihai Gao Meihu Ma Lei Chen | 2021 | Food Science and Human Wellness2021,10,2: | 6 |
| 5 | Enhancing terpenoid indole alkaloid production by inducible expression of mammalian Bax in Catharanthus roseus cells显示文摘Bax,a mammalian pro-apoptotic member of the Bcl-2 family,triggers hypersensitive reactions when expressed in plants.To investigate the effects of Bax on the biosynthesis of clinically important natural products in plant cells,we generate transgenic Catharanthus roseus cells overexpressing a mouse Bax protein under the β-estradiol-inducible promoter.The expression of Bax in transgenic Catharanthus roseus cells is highly dependent on β-estradiol concentrations applied.Contents of catharanthine and total terpenoid indole alkaloid of the transgenic cells treated with 30 μmol/L β-estradiol are 5.0-and 5.5-fold of the control cells.Northern and Western blotting results show that expression of mammalian Bax induces transcriptional activation of Tdc and Str,two key genes in terpenoid indole alkaloid bio-synthetic pathway of Catharanthus roseus cells,and stimulates the accumulation of defense-related protein PR1 in the cells,showing that the mouse Bax triggers the defense responses of Catharanthus roseus cells and activates the terpenoid indole alkaloid biosynthetic pathway.Thus,our data suggest that the mammalian Bax might be a potential regulatory factor for secondary metabolite biosynthesis in plant cells and imply a new secondary metabolic engineering strategy for enhancing the metabolic flux to natural products by activating the whole biosynthetic pathway rather than by engineering the single structural genes within the pathways. | XU MaoJun & DONG JuFang Department of Biotechnology,Zhejiang Gongshang University,Hangzhou 310035,China | 2007 | Science China(Life Sciences)2007,50,2: | 5 |
| 6 | Nitric oxide:A potential key point of the signaling network leading to plant secondary metabolite biosynthesis显示文摘The endogenous signaling network of plants plays important roles in mediating the exogenous factor-induced biosynthesis of secondary metabolites. Nitric oxide (NO) has emerged as a key signaling molecule in plants recently. Numerous studies demonstrated that the main signaling molecules such as salicylic acid (SA), jasmonic acid (JA), reactive oxygen species (ROS), and NO were not only involved in regulating plant secondary metabolite biosynthesis but also interacted to form a complex signaling network by mutual inhibition and/or synergy. The recent progress in the signal network of plant secondary metabolite biosynthesis has been discussed in this paper. Furthermore, we propose a hypothetical model to show that NO might act as a potential molecular switch in the signaling network leading to plant secondary metabolite biosynthesis. | Xu Maojun | 2007 | Progress in Natural Science:Materials International2007,17,12: | 5 |
| 7 | Exogenous hydrogen sulfide inhibits apoptosis by regulating endoplasmic reticulum stress-autophagy axis and improves myocardial reconstruction after acute myocardial infarction显示文摘During acute myocardial infarction,endoplasm ic reticulum(ER)stress-induced autophagy and apoptosis have been shown as im portant pathogeneses of myocardial reconstruction.Im portantly,hydrogen sulfide(H2S),as a third endogenous gas signaling molecule,exerts strong cytoprotective effect on anti-ER stress,autophagy regulation and antiapoptosis.Here,we showed that H2 S treatm ent inhibits apoptosis by regulating ER stress-autophagy axis and im proves myocardial reconstruction after acute myocardial infarction.We found that H2S intervention im proved left ventricle function,reduced glycogen deposition in myocardial tissue mesenchyme,and inhibited apoptosis.Moreover,the expressions of fibrosis indicators(Col3a1 and Col1a2),ER stress-related proteins(CHOP and BIP/ERP78),autophagy-related proteins(Beclin and ATG5),apoptosis protein(Bax),as well as fibrosis protein Col4a3bp were all decreased after treatm ent w ith H2 S.H2 S adm inistration also m aintained MMP/TIMP balance.Mechanistically,H2S activated the PI3K/AKT signaling pathway.In addition,H2S treatm ent also reduced the expressions of ER stress-related proteins,autophagy-related proteins,and apoptins in in wtro experiments.Interestingly,activation of ER stress-autophagy axis could reverse the inhibitory effect of H2S on myocardial apoptosis.Altogether,these results suggested that exogenous H2S suppresses myocardial apoptosis by blocking ER stress-autophagy axis,which in turn reverses cardiac rem odeling after myocardial infarction. | Yaling Li Maojun Liu Jiali Yi Xiong Song Xia Zheng Da Liu Sen Wang Chun Chu Jun Yang | 2020 | Acta Biochimica et Biophysica Sinica2020,52,12: | 5 |
| 8 | Structure of the intact 14-subunit human cytochrome c oxidase显示文摘 | Shuai Zong Meng Wu Jinke Gu Tianya Liu Runyu Guo Maojun Yang | 2018 | Cell Research2018,28,10: | 5 |
| 9 | Nitric oxide mediates the fungal elicitor-induced Taxol biosynthesis of Taxus chinensis suspension cells through the reactive oxygen species-dependent and -independent signal pathways显示文摘Nitric oxide and reactive oxygen species are two important signal molecules that play key roles in plant defense responses. Nitric oxide generation and oxidative burst and accumulation of reactive oxygen species are the early reactions of Taxus chinensis suspension cells to fungal elicitor prepared from the cell walls of Penicillium citrinum. In order to investigate the relationship and/or interactions of ni- tric oxide and reactive oxygen species in the elici- tor-induced Taxol biosynthesis of T. chinensis sus- pension cells, we treated the cells with nitric oxide specific scavenger 2-4-carboxyphenyl-4,4,5,5-tetra- methylimidazoline-1-oxyl-3-oxide (cPITO), nitric ox- ide synthase inhibitor S,S′-1,3-phenylene-bis(1,2-eth- anediyl)-bis-isothiourea (PBITU), membrane NAD(P) H oxidase inhibitor diphenylene iodonium (DPI), su- peroxide dismutases (SOD) and catalase. The results show that pretreatment of T. chinensis cells with cPITO and DPI inhibited not only the elicitor-induced nitric oxide biosynthesis and oxidative burst, but also the elicitor-induced Taxol production, suggesting that both nitric oxide and reactive oxygen species are involved in elicitor-induced Taxol biosynthesis. Fur- thermore, pretreatment of the cells with cPITO and PBITU suppressed the elicitor-induced oxidative burst, indicating that the oxidative burst might be dependent on NO. Application of nitric oxide via its donor sodium nitroprusside (SNP) triggered Taxol biosynthesis of T. chinensis cells. The nitric ox-ide-induced Taxol production was suppressed by DPI, showing that the oxidative burst is involved in NO-triggered Taxol biosynthesis. However, nitric ox- ide and the fungal elicitor induced Taxol biosynthesis even though the accumulation of reactive oxygen species wass completely abolished in T. chinensis cells. Our data show that nitric oxide may mediate the elicitor-induced Taxol biosynthesis of T. chinensis suspension cells through both reactive oxygen spe- cies-dependent and -independent signal pathways. Moreover, the results of our work show that the elici- tor- and nitric oxide-induced Taxol biosynthesis is inhibited by catalase, indicating that H2O2 from the oxidative burst might be the signal molecule involved in induced Taxol production of T. chinensis cells. | XU Maojun DONG Jufang | 2006 | Chinese Science Bulletin2006,51,16: | 5 |
| 10 | A Review for Life-history Traits Variation in Frogs Especially for Anurans in China显示文摘Environmental variation can promote differentiation in life-history traits in species of anurans. Increased environmental stress usually results in larger age at sexual maturity, older mean age, longer longevity, slower growth, larger body size, and a shift in reproductive allocation from offspring quantity to quality, and a stronger trade-off between offspring size and number. However, previous studies have suggested that there are inconsistent geographical variations in life-history traits among anuran species in China. Hence, we here review the intraspecific patterns and differences in life-history traits(i.e., egg size, clutch size, testes size, sperm length, age at sexual maturity, longevity, body size and sexual size dimorphism) among different populations within species along geographical gradients for anurans in China in recent years. We also provide future directions for studying difference in sperm performance between longer and shorter sperm within a species through transplant experiments and the relationships between metabolic rate and brain size and life-history. | Maojun ZHONG Xin YU Wenbo LIAO | 2018 | Asian Herpetological Research2018,9,3: | 4 |
| 11 | When MAGE meets RING:insights into biological functions of MAGE proteins显示文摘The melanoma antigen(MAGE)family proteins are well known as tumor-specific antigens and comprise more than 60 genes,which share a conserved MAGE homology domain(MHD).Type I MAGEs are highly expressed cancer antigens,and they play an important role in tumorigenesis and cancer cell survival.Recently,several MAGE proteins were identified to interact with RING domain proteins,including a sub-family of E3 ubiquitin ligases.The binding mode between MAGEs and RING proteins was investigated and one important structure of these MAGE-RING complexes was solved:the MAGE-G1-NSE1 complex.Structural and biochemical studies indicated that MAGE proteins could adjust the E3 ubiquitin ligase activity of its cognate RING partner both in vitro and in vivo.However,the underlying mechanism was not fully understood.Here,we review these exciting advances in the studies on MAGE family,suggest potential mechanisms by which MAGEs activate the E3 activity of their binding RING proteins and highlight the anticancer potential of this family proteins. | Yue Feng Jinlan Gao Maojun Yang | 2011 | Protein & Cell2011,2,1: | 4 |
| 12 | Planar substrate-binding site dictates the specificity of ECF-type nickel/cobalt transporters显示文摘联合精力的因素(ECF ) transporters 是调停的多子单元蛋白质建筑群在大约 50% 初核质的转变金属离子和维生素的举起,包括细菌和 archaea。生物、结构的研究为维生素,而是 ECF 系统从未知的环境遗体由搬运金属离子的分子的机制集中于 ECF transporters。这里,我们报导 NikM 的第一水晶结构, TtNikM2,从 Thermoanaerobacter tengcongensis 的 ECF 类型镍 transporter 的底层绑定部件(S 部件) 。与有六个 transmembrane 片断(TS ) 的维生素特定的 S 蛋白质的结构相对照, TtNikM2 在它的 N 终端区域拥有另外的 TS,导致细胞外的 N 终点。高度保存的 N 终端环插入到 TtNikM2 的中心并且堵塞相应于维生素特定的 S 部件的底层绑定地点的一个区域。镍经由它的协作绑在 NikM 到四个氮原子,它从 Met1, His2 和 His67 残余被导出。这些氮原子形成近似平方平面的几何学,类似于在 2+ 有约束力的氨基终端的 Cu 和 Ni 2+-binding (ATCUN ) 的金属离子绑定地点的主题。在贡献镍协作的 NikM 的残余的代替损害了 Ni 运输活动。而且,系统的量化学药品调查显示这几何学启用 NikM 到有选择地也认出公司 2+ 。确实,包含一个界限公司 2+ 离子的 TtNikM2 的结构没几乎与包含五分钱离子的结构相比有 conformational 变化。一起,我们的数据揭示位于 EcfS 蛋白质的金属选择下面的 evolutionarily 保存的机制,并且提供卓见进 ion-translocation 过程由 ECF transporters 调停了。 | You Yu Mingze Zhou Franziska Kirsch Congqiao Xu Li Zhang Yu Wang Zheng Jiang Na Wang Jun Li Thomas Eitinger Maojun Yang | 2014 | Cell Research2014,24,3: | 3 |
| 13 | Signal interaction between nitric oxide and hydrogen peroxide in heat shock-induced hypericin production of Hypericum perforatum suspension cells显示文摘Heat shock(HS, 40℃, 10 min) induces hypericin production, nitric oxide(NO) generation, and hydrogen peroxide(H2O2) accumulation of Hypericum perforatum suspension cells.Catalase(CAT) and NO spe-cific scavenger 2-4-carboxyphenyl-4,4,5,5-tetramethylimidazoline-1-oxyl-3-oxide(cPTIO) suppress not only the HS-induced H2O2 generation and NO burst, but also the HS-triggered hypericin produc-tion.Hypericin contents of the cells treated with both NO and H2O2 are significantly higher than those of the cells treated with NO alone, although H2O2 per se has no effects on hypericin production of the cells, which suggests the synergistic action between H2O2 and NO on hypericin production.NO treatment enhances H2O2 levels of H.perforatum cells, while external application of H2O2 induces NO generation of cells.Thus, the results reveal a mutually amplifying action between H2O2 and NO in H.perforatum cells.CAT treatment inhibits both HS-induced H2O2 accumulation and NO generation, while cPTIO can also suppress H2O2 levels of the heat shocked cells.The results imply that H2O2 and NO may enhance each other's levels by their mutually amplifying action in the heat shocked cells.Membrane NAD(P)H oxidase inhibitor diphenylene iodonium(DPI) and nitric oxide synthase(NOS) inhibitor S,S′-1,3-phenylene-bis(1,2-ethanediyl)-bis-isothiourea(PBITU) not only inhibit the mutually amplifying action between H2O2 and NO but also abolish the synergistic effects of H2O2 and NO on hypericin production, showing that the synergism of H2O2 and NO on secondary metabolite biosynthesis might be dependent on their mutual amplification.Taken together, data of the present work demonstrate that both H2O2 and NO are essential for HS-induced hypericin production of H.perforatum suspension cells.Furthermore, the results reveal a special interaction between the two signal molecules in mediating HS-triggered secondary metabolite biosynthesis of the cells. | XU MaoJun, DONG JuFang & ZHANG XinBo Institute of Natural Resource and Environmental Sciences, Zhejiang Gongshang University, Hangzhou 310035, China | 2008 | Science China(Life Sciences)2008,51,8: | 3 |
| 14 | A Facile Self-assembly Synthesis of Hexagonal ZnO Nanosheet Films and Their Photoelectrochemical Properties显示文摘Here, large-scale and uniform hexagonal zinc oxide(ZnO) nanosheet films were deposited onto indium tin oxide(ITO)-coated transparent conducting glass substrates via a facile galvanic displacement deposition process. Compared with other commonly used solution methods, this process avoids high temperature and electric power as well as supporting agents to make it simple and cost-effective. The as-fabricated ZnO nanosheet films have uniform hexagonal wurtzite structure. The photoelectrochemical(PEC) cell based on ZnO nanosheet film/ITO photoelectrode was also fabricated and its performance was improved by optimizing the solution concentration. A higher photocurrent density of*500 l A cm^(-2)under AM 1.5 G simulated illumination of 100 m W cm^(-2)with zero bias potential(vs. Ag/AgCl electrode) was obtained, which may ascribe to the increased surface-to-volume ratio of disordered Zn O nanosheet arrays. Our developed method may be used to deposit other oxide semiconductors, and the Zn O nanosheet film/ITO PEC cell can be used to design low-cost optoelectronic and photoelectrochemical devices. | Bin Zhang Faze Wang Changqing Zhu Qiang Li Jingnan Song Maojun Zheng Li Ma Wenzhong Shen | 2016 | Nano-Micro Letters2016,8,2: | 3 |
| 15 | Structures of SdrD from Staphylococcus aureus reveal the molecular mechanism of how the cell surface receptors recognize their ligands显示文摘Staphylococcus aureus is the most important Gram-positive colonizer of human skin and nasal passage,causing high morbidity and mortality.SD-repeat containing protein D(SdrD),an MSCRAMM(Microbial Surface Components Recognizing Adhesive Matrix Molecules)family surface protein,plays an important role in S.aureus adhesion and pathogenesis,while its binding target and molecular mechanism remain largely unknown.Here we solved the crystal structures of SdrD N2-N3 domain and N2-N3-B1 domain.Through structural analysis and comparisons,we characterized the ligand binding site of SdrD,and proposed a featured sequence motif of its potential ligands.In addition,the structures revealed for the first time the interactions between B1 domain and N2-N3 domain among B domain-containing MSCRAMMs.Our results may help in understanding the roles SdrD plays in S.aureus adhesion and shed light on the development of novel antibiotics. | Xiao Wang Jingpeng Ge Bao Liu Yulin Hu Maojun Yang | 2013 | Protein & Cell2013,4,4: | 3 |
| 16 | Determination of Fe,Ni,Cu,Zn,Cd and Pb in seawater by isotope dilution automatic solid-phase extraction—ICP-MS显示文摘A thorough understanding of the biogeochemical cycling of trace metals in the ocean is crucial because of the important role these elements play in regulating metabolism in marine biotas and thus,the climate.However,a precise and accurate analysis of trace metals in seawater is difficult because they are present at extremely low concentrations in a high salt matrix.In this study,we report an analytical method for the preconcentration and separation of six trace metals,Fe,Ni,Cu,Zn,Cd and Pb,in seawater using a sea FAST automatic solid-phase extraction device,analysis by a triple quadrupole collision/reaction technique with inductively coupled plasma mass spectrometry(ICP-MS),and quantification by the isotope dilution technique.A small volume(10 m L)of seawater sample was mixed with a multi-element isotope spike and subjected to sea FAST procedures.The preconcentrate solution was then analyzed using the optimized collision/reaction cell mode of ICP-MS,with NH_(3)gas for Fe and Cd with a flow rate of 0.22 m L/min and He for Ni,Cu,Zn and Pb with a flow rate of 4.0 m L/min.The procedure blanks were 130 pmol/L,3.0 pmol/L,6.8 pmol/L,37 pmol/L,0.29 pmol/L and 0.42 pmol/L,for Fe,Ni,Cu,Zn,Cd and Pb,respectively.The method was validated using five reference materials(SLRs-6,SLEW-3,CASS-6,NASS-7 and GEOTRACE-GSC),and our results were consistent with the consensus values.The method was further validated by measuring full-water-column seawater samples from the subtropical Northwest Pacific Ocean,and our results demonstrated good oceanic consistency. | Yuncong Ge Ruifeng Zhang Ziyuan Jiang Zhan Shen Maojun Yan | 2022 | Acta Oceanologica Sinica2022,41,8: | 3 |
| 17 | Image Tagging by Semantic Neighbor Learning Using User-Contributed Social Image Datasets显示文摘The explosive increase in the number of images on the Internet has brought with it the great challenge of how to effectively index, retrieve, and organize these resources. Assigning proper tags to the visual content is key to the success of many applications such as image retrieval and content mining. Although recent years have witnessed many advances in image tagging, these methods have limitations when applied to high-quality and large-scale training data that are expensive to obtain. In this paper, we propose a novel semantic neighbor learning method based on user-contributed social image datasets that can be acquired from the Web's inexhaustible social image content. In contrast to existing image tagging approaches that rely on high-quality image-tag supervision, we acquire weak supervision of our neighbor learning method by progressive neighborhood retrieval from noisy and diverse user-contributed image collections. The retrieved neighbor images are not only visually alike and partially correlated but also semantically related. We offer a step-by-step and easy-to-use implementation for the proposed method. Extensive experimentation on several datasets demonstrates that the performance of the proposed method significantly outperforms others. | Feng Tian Xukun Shen Xianmei Liu Maojun Cao | 2017 | Tsinghua Science and Technology2017,22,6: | 2 |
| 18 | A comprehensive overview of cotton genomics,biotechnology and molecular biological studies显示文摘Cotton is an irreplaceable economic crop currently domesticated in the human world for its extremely elongated fiber cells specialized in seed epidermis,which makes it of high research and application value.To date,numerous research on cotton has navigated various aspects,from multi-genome assembly,genome editing,mechanism of fiber development,metabolite biosynthesis,and analysis to genetic breeding.Genomic and 3D genomic studies reveal the origin of cotton species and the spatiotemporal asymmetric chromatin structure in fibers.Mature multiple genome editing systems,such as CRISPR/Cas9,Cas12(Cpf1)and cytidine base editing(CBE),have been widely used in the study of candidate genes affecting fiber development.Based on this,the cotton fiber cell development network has been preliminarily drawn.Among them,the MYB-b HLH-WDR(MBW)transcription factor complex and IAA and BR signaling pathway regulate the initiation;various plant hormones,including ethylene,mediated regulatory network and membrane protein overlap fine-regulate elongation.Multistage transcription factors targeting Ces A 4,7,and 8 specifically dominate the whole process of secondary cell wall thickening.And fluorescently labeled cytoskeletal proteins can observe real-time dynamic changes in fiber development.Furthermore,research on the synthesis of cotton secondary metabolite gossypol,resistance to diseases and insect pests,plant architecture regulation,and seed oil utilization are all conducive to finding more high-quality breeding-related genes and subsequently facilitating the cultivation of better cotton varieties.This review summarizes the paramount research achievements in cotton molecular biology over the last few decades from the above aspects,thereby enabling us to conduct a status review on the current studies of cotton and provide strong theoretical support for the future direction. | Xingpeng Wen Zhiwen Chen Zuoren Yang Maojun Wang Shuangxia Jin Guangda Wang Li Zhang Lingjian Wang Jianying Li Sumbul Saeed Shoupu He Zhi Wang Kun Wang Zhaosheng Kong Fuguang Li Xianlong Zhang Xiaoya Chen Yuxian Zhu | 2023 | Science China(Life Sciences)2023,66,10: | 2 |
| 19 | Dependence of UV-B-induced camptothecin production on nitrate reductase-mediated nitric oxide signaling in Camptotheca acuminata suspension cell cultures显示文摘 | Jiazhao Ruan Jinjie Zhang Mengya Li Yun Zhu Lina Sun Haihong Jin Hu Su Maojun Xu | 2014 | Plant Cell, Tissue and Organ Culture (PCTOC)2014,,2: | 1 |
| 20 | Cloning and characterization of miRNAs from maize seedling roots under low phosphorus stress显示文摘 | Zhiming Zhang Haijian Lin Yaou Shen Jian Gao Kui Xiang Li Liu Haiping Ding Guangsheng Yuan Hai Lan Shufeng Zhou Maojun Zhao Shibin Gao Tingzhao Rong Guangtang Pan | 2012 | Molecular Biology Reports2012,,8: | 1 |