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| 1 | Altered trends in carbon uptake in China’s terrestrial ecosystems under the enhanced summer monsoon and warming hiatus显示文摘The carbon budgets in terrestrial ecosystems in China are strongly coupled with climate changes.Over the past decade,China has experienced dramatic climate changes characterized by enhanced summer monsoon and decelerated warming.However,the changes in the trends of terrestrial net ecosystem production(NEP)in China under climate changes are not well documented.Here,we used three ecosystem models to simulate the spatiotemporal variations in China's NEP during 1982–2010 and quantify the contribution of the strengthened summer monsoon and warming hiatus to the NEP variations in four distinct climatic regions of the country.Our results revealed a decadal-scale shift in NEP from a downtrend of–5.95 Tg C/yr^2(reduced sink)during 1982–2000 to an uptrend of 14.22 Tg C/yr^2(enhanced sink)during 2000–10.This shift was essentially induced by the strengthened summer monsoon,which stimulated carbon uptake,and the warming hiatus,which lessened the decrease in the NEP trend.Compared to the contribution of 56.3%by the climate effect,atmospheric CO2 concentration and nitrogen deposition had relatively small contributions(8.6 and 11.3%,respectively)to the shift.In conclusion,within the context of the global-warming hiatus,the strengthening of the summer monsoon is a critical climate factor that enhances carbon uptake in China due to the asymmetric response of photosynthesis and respiration.Our study not only revealed the shift in ecosystem carbon sequestration in China in recent decades,but also provides some insight for understanding ecosystem carbon dynamics in other monsoonal areas. | Honglin He Shaoqiang Wang Li Zhang Junbang Wang Xiaoli Ren Lei Zhou Shilong Piao Hao Yan Weimin Ju Fengxue Gu Shiyong Yu Yuanhe Yang Miaomiao Wang Zhongen Niu Rcmg Ge Huimin Yan Mei Huang Guoyi Zhou Yongfei Bai Zongqiang Xie Zhiyao Tang Bingfang Wu Leiming Zhang Nianpeng He Qiufeng Wang Guirui Yu | 2019 | National Science Review2019,6,3: | 24 |
| 2 | Effects of maize root exudates and organic acids on the desorption of phenanthrene from soils显示文摘The eects of maize root exudates and low-molecular-weight-organic anions (LMWOAs) on the desorption of phenanthrene from eight artificially contaminated soils were evaluated. A significant negative correlation was observed between the amounts of phenanthrene desorbed and the soil organic carbon (SOC) contents (P < 0.01), and the inuences of soil pH and clay content on phenanthrene desorption were insignificant (P > 0.1). Neither maize root exudates nor oxalate and citrate anions inuenced desorption of phenanthrene with the addition of NaN3. A faster phenanthrene desorption occurred without the addition of NaN3 in the presence of maize root exudates than oxalate or citrate due to the enhanced degradation by root exudates. Without the addition of NaN3, oxalate or citrate at dierent concentrations could inhibit phenanthrene desorption to dierent extents and the inhibiting eect by citrate was more significant than by oxalate. This study leads to the conclusion that maize root exudates can not enhance the desorption under abiotic condition with the addition of NaN3 and can promote the desorption of phenanthrene in soils without the addition of NaN3. | ZHU Yanhong, ZHANG Shuzhen, HUANG Honglin, WEN Bei State Key Laboratory of Environmental Chemistry and Ecotoxicology, Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing 100085, China. | 2009 | Journal of Environmental Sciences2009,21,7: | 14 |
| 3 | Accumulation and phytotoxicity of technical hexabromocyclododecane in maize显示文摘To investigate the accumulation and phytotoxicity of technical hexabromocyclododecane(HBCD)in maize,young seedlings were exposed to solutions of technical HBCD at different concentrations.The uptake kinetics showed that the HBCD concentration reached an apparent equilibrium within 96 hr,and the accumulation was much higher in roots than in shoots.HBCD accumulation in maize had a positive linear correlation with the exposure concentration.The accumulation of different diastereoisomers followed the orderγ-HBCD>β-HBCD>α-HBCD.Compared with their proportions in the technical HBCD exposure solution,the diastereoisomer contribution increased forβ-HBCD and decreased forγ-HBCD in both maize roots and shoots with exposure time,whereas the contribution ofα-HBCD increased in roots and decreased in shoots throughout the experimental period.These results suggest the diastereomer-specific accumulation and translocation of HBCD in maize.Inhibitory effects of HBCD on the early development of maize followed the order of germination rate>root biomass≥root elongation>shoot biomass≥shoot elongation.Hydroxyl radical(OH)and histone H2AX phosphorylation(γ-H2AX)were induced in maize by HBCD exposure,indicative of the generation of oxidative stress and DNA double-strand breaks in maize.An OH scavenger inhibited the expression ofγ-H2AX foci in both maize roots and shoots,which suggests the involvement of OH generation in the HBCD-induced DNA damage.The results of this study will offer useful information for a more comprehensive assessment of the environmental behavior and toxicity of technical HBCD. | Tong Wu Honglin Huang Shuzhen Zhang | 2016 | Journal of Environmental Sciences2016,28,4: | 7 |
| 4 | Simultaneous determination of brominated phenols in soils显示文摘Brominated phenols(BPs),a widely used group of emerging flame retardants,are important environmental contaminants and exhibit endocrine disrupting potential.Method for simultaneous determination of tetrabromobisphenol A(TBBPA),tribromophenol(TBP),dibromophenols(DBPs)and monobromophenols(MBPs)in soils using gas chromatography-mass spectrometry analysis(GC/MS)was successfully developed.Cleanup methods for soil extracts including several solid-phase extraction cartridges and diferent elution solvents were compared and optimized.Florisil cartridge with dichloromethane as the elution reagent was selected for sample cleanup owing to its high and reproducible recoveries of the target analytes in soils.Derivatization conditions were tested and the optimal conditions were obtained with 20μL silylation reagent at room temperature.The chromatographic separation was optimized with diferent columns and DB-XLB column was selected for its excellent separation of the analytes.The limits of detection for the target compounds were from 0.04 to 0.19 ng/g.Mean recoveries of the compounds from spiked soils exceeded 84%with a good reproducibility,excepting that the recovery of 2-bromophenol was relatively poor(lower than 55%)due to its instability.The developed method was applied to the determination of the BPs in the soils collected from e-waste sites.The contents of BPs in the soils were at ng/g levels with TBBPA and TBP the most frequently detected.To our knowledge,this is the first report for the simultaneous determination of TBBPA,TBP,DBPs and MBPs in soils. | Wei Han Sen Wang Honglin Huang Lei Luo Shuzhen Zhang | 2013 | Journal of Environmental Sciences2013,25,11: | 5 |
| 5 | Pay special attention to the transformation products of PPCPs in environment显示文摘Pharmaceuticals and personal care products(PPCPs)have received increasing attention.However,their transformation products(TPs)and metabolites,sometimes even with environmental concentration and/or toxicity higher than their parent compounds,received attention far from enough.This study gives useful insight on the occurrence,fate and toxicity of PPCP TPs or metabolites in WWTPs,surface water and even drinking water,highlighting the necessity of studying the PPCP TPs formation,occurrence,toxicity and environment risk,and further evaluating the environmental risk caused by PPCPs comprehensively. | Lina Yin Bin Wang Honglin Yuan Shubo Deng Jun Huang Yujue Wang Gang Yu | 2017 | Emerging Contaminants2017,3,2: | 4 |
| 6 | Atrazine accumulation and toxic responses in maize Zea mays显示文摘Atrazine accumulation,oxidative stress,and defense response in maize seedlings exposed to extraneous atrazine were studied.Accumulation of atrazine in maize increased with increasing exposure concentration.The abscisic acid(ABA) content was positively correlated with the atrazine concentrations in maize roots and shoots(p < 0.05).Hydroxyl radical(.OH) in maize was determined in vivo with electron paramagnetic resonance spectroscopy.Its intensity was positively correlated with atrazine concentration in roots and shoots(p < 0.05),and higher level of.OH generated in roots than in shoots corresponded to the major accumulation of atrazine in roots.Superoxide dismutase,peroxidase and catalase in roots were up-regulated by atrazine exposure at 1 mg/L compared to the control and malondialdehyde content in roots was enhanced when atrazine exposure concentration reached 10 mg/L.These results suggested the exposure and accumulation of atrazine caused oxidative toxicity and antioxidant response in maize. | Xiuying Li Tong Wu Honglin Huang Shuzhen Zhang | 2012 | Journal of Environmental Sciences2012,24,2: | 4 |
| 7 | Uptake, translocation, and debromination of polybrominated diphenyl ethers in maize显示文摘Uptake, translocation and debromination of three polybrominated diphenyl ethers (PBDEs), BDE-28, -47 and -99, in maize were studied in a hydroponic experiment. Roots took up most of the PBDEs in the culture solutions and more highly brominated PBDEs had a stronger uptake capability. PBDEs were detected in the stems and leaves of maize after exposure but rarely detected in the blank control plants. Furthermore, PBDE concentrations decreased from roots to stems and then to leaves, and a very clear decreasing gradient was found in segments upwards along the stem. These altogether provide substantiating evidence for the acropetal translocation of PBDEs in maize. More highly brominated PBDEs were translocated with more difficulty. Radial translocation of PBDEs from nodes to sheath inside maize was also observed. Both acropetal and radial translocations were enhanced at higher transpiration rates, suggesting that PBDE transport was probably driven by the transpiration stream. Debromination of PBDEs occurred in all parts of the maize, and debromination patterns of different parent PBDEs and in different parts of a plant were similar but with some differences. This study for the first time provides direct evidence for the acropetal translocation of PBDEs within plants, elucidates the process of PBDE transport and clarifies the debromination products of PBDEs in maize. | Moming Zhao Shuzhen Zhang Sen Wang Honglin Huang | 2012 | Journal of Environmental Sciences2012,24,3: | 3 |
| 8 | Molecular characterization of root exudates using Fourier transform ion cyclotron resonance mass spectrometry显示文摘The release of root exudates(REs) provides an important source of soil organic carbon. This work revealed the molecular composition of REs of different plant species including alfalfa( Medicago sativa L.), bean( Phaseolus vulgaris L.), barley( Hordeum vulgare L.), maize( Zea mays), wheat( Triticum aestivum L.), ryegrass( Lolium perenne L.) and pumpkin( Cucurbita maxima) using electrospray ionization coupled with Fourier transform ion cyclotron resonance mass spectrometry(ESI FT-ICR MS). The combination of positive ion mode( + ESI) and negative ion mode(-ESI) increased the number of the molecules detected by ESI FT-ICR MS, and a total of 8758 molecules were identified across all the samples. In detail, lipids and proteins and unsaturated hydrocarbons were more easily detected in + ESI mode, while aromatic compounds with high O/C were readily ionized in-ESI mode, and only 38% of the total assigned formulas were shared by -ESI and + ESI modes. Multivariate statistical analysis of the formulas indicated that the close related plants species secreted REs with similar molecular components. Moreover, the unsaturation degree and nitrogen content were the two key parameters able to distinguish the similarities and differences of molecular components of REs between plant species. The results provided a feasible analysis method for characterization of the molecular components of REs and for the first time characterized the molecular components of REs of a variety of plant species using ESI FT-ICR MS. | Yuexia Miao Jitao Lv Honglin Huang Dong Cao Shuzhen Zhang | 2020 | Journal of Environmental Sciences2020,32,12: | 2 |
| 9 | Quantifying the carbon source of pedogenic calcite veins in weathered limestone: implications for the terrestrial carbon cycle显示文摘The continent is the second largest carbon sink on Earth’s surface.With the diversification of vascular land plants in the late Paleozoic,terrestrial organic carbon burial is represented by massive coal formation,while the development of soil profiles would account for both organic and inorganic carbon burial.As compared with soil organic carbon,inorganic carbon burial,collectively known as the soil carbonate,would have a greater impact on the long-term carbon cycle.Soil carbonate would have multiple carbon sources,including dissolution of host calcareous rocks,dissolved inorganic carbon from freshwater,and oxidation of organic matter,but the host calcareous rock dissolution would not cause atmospheric CO2drawdown.Thus,to evaluate the potential effect of soil carbonate formation on the atmospheric p CO2level,different carbon sources of soil carbonate should be quantitatively differentiated.In this study,we analyzed the carbon and magnesium isotopes of pedogenic calcite veins developed in a heavily weathered outcrop,consisting of limestone of the early Paleogene Guanzhuang Group in North China.Based on the C and Mg isotope data,we developed a numerical model to quantify the carbon source of calcite veins.The modeling results indicate that4–37 wt%of carbon in these calcite veins was derived from atmospheric CO2.The low contribution from atmospheric CO2might be attributed to the host limestone that might have diluted the atmospheric CO2sink.Nevertheless,taking this value into consideration,it is estimated that soil carbonate formation would lower 1 ppm atmospheric CO2within 2000 years,i.e.,soil carbonate alone would sequester all atmospheric CO2within 1 million years.Finally,our study suggests the C–Mg isotope system might be a better tool in quantifying the carbon source of soil carbonate. | Lin Zou Lin Dong Meng Ning Kangjun Huang Yongbo Peng Shujian Qin Honglin Yuan Bing Shen | 2019 | Acta Geochimica2019,38,4: | 2 |
| 10 | Analysis of the degradation mechanism of methylene blue by atmospheric pressure dielectric barrier discharge plasma显示文摘 | Fangmin Huang Li Chen Honglin Wang Zongcheng Yan | 2010 | Chemical Engineering Journal2010,,1: | 2 |
| 11 | Arsenic accumulation and speciation in maize as affected by in- oculation with arbuscular mycorrhizal fungus glomus mosseae 显示文摘 | YU Yang ZHANG Shuzhen HUANG Honglin | 2009 | Agric Food Chem2009,57,: | 1 |
| 12 | Analysis of the de-gradation mechanism of methylene blue by atmospheric pressure di-electric barrier discharge plasma显示文摘 | Huang Fangmin Chen Li Wang Honglin | 2010 | Chemical Engineering Journal2010,162,1: | 1 |
| 13 | Caspase-mediated cleavage of C53/LZAP protein causes abnormal microtubule bundling and rupture of the nuclear envelope显示文摘Apoptotic 原子核包括原子收缩,染色质冷凝作用和 DNA 破碎经历不同词法、生物化学的变化,它被归因于象 lamins 那样的几原子底层的调停 caspase 的劈开。当大多数活跃 caspases 居住在细胞质,原子细胞质的障碍的混乱是必要的让 caspases 到达他们的原子目标。占优势建议机制是 caspases 导致的原子毛孔的渗透的增加允许 caspases 和另外的 apoptotic 因素扩散进原子核,从而导致原子破坏。这里,我们报导原子信封(NE ) 的物理破裂发生在 apoptosis 的早阶段的新奇观察。我们发现 NE 破裂被 C53/LZAP 的调停 caspase 的劈开引起,在各种各样的发信号的小径被含有的蛋白质,包括 NF-κ发信号的 B 和 DNA 损坏反应,以及 tumorigenesis 和转移。我们也证明 C53/LZAP 间接地跳了到微导管(MT ) ,并且 C53/LZAP 劈开产品的表示引起了反常 MT 捆绑和 NE 破裂。一起拿,我们的调查结果在 apoptotic 房间死亡期间在 MT 动力学和 NE 结构的规定建议 C53/LZAP 的一个新奇角色。我们的学习可以在 apoptosis 期间为原子细胞质的障碍的混乱提供另外的机制。 | Jianchun Wu Hai Jiang Shouqing Luo Mingsheng Zhang Yinghua Zhang Fei Sun Shuang Huang Honglin Li | 2013 | Cell Research2013,23,5: | 1 |
| 14 | Plant uptake and dissipation of PBDEs in the soils of electronic waste recycling sites显示文摘 | Honglin Huang Shuzhen Zhang Peter Christie | | 0,,: | 1 |
| 15 | Dynamic changes in O-GlcNAcylation regulate osteoclast differentiation and bone loss via nucleoporin 153显示文摘Bone mass is maintained by the balance between osteoclast-induced bone resorption and osteoblast-triggered bone formation.In inflammatory arthritis such as rheumatoid arthritis(RA),however,increased osteoclast differentiation and activity skew this balance resulting in progressive bone loss.O-GlcNAcylation is a posttranslational modification with attachment of a single O-linkedβ-D-N-acetylglucosamine(O-GlcNAc)residue to serine or threonine residues of target proteins.Although O-GlcNAcylation is one of the most common protein modifications,its role in bone homeostasis has not been systematically investigated.We demonstrate that dynamic changes in O-GlcNAcylation are required for osteoclastogenesis.Increased O-GlcNAcylation promotes osteoclast differentiation during the early stages,whereas its downregulation is required for osteoclast maturation.At the molecular level,O-GlcNAcylation affects several pathways including oxidative phosphorylation and cell-cell fusion.TNFαfosters the dynamic regulation of O-GlcNAcylation to promote osteoclastogenesis in inflammatory arthritis.Targeted pharmaceutical or genetic inhibition of O-GlcNAc transferase(OGT)or O-GlcNAcase(OGA)arrests osteoclast differentiation during early stages of differentiation and during later maturation,respectively,and ameliorates bone loss in experimental arthritis.Knockdown of NUP153,an O-GlcNAcylation target,has similar effects as OGT inhibition and inhibits osteoclastogenesis.These findings highlight an important role of O-GlcNAcylation in osteoclastogenesis and may offer the potential to therapeutically interfere with pathologic bone resorption. | Yi-Nan Li Chih-Wei Chen Thuong Trinh-Minh Honglin Zhu Alexandru-Emil Matei Andrea-Hermina Györfi Frederic Kuwert Philipp Hubel Xiao Ding Cuong Tran Manh Xiaohan Xu Christoph Liebel Vladyslav Fedorchenko Ruifang Liang Kaiyue Huang Jens Pfannstiel Min-Chuan Huang Neng-Yu Lin Andreas Ramming Georg Schett Jörg H.W.Distler | 2022 | Bone Research2022,10,4: | 1 |
| 16 | Electrospun chitosan-graft-poly,(-caprolactone)/poly,(-caprolactone) cationic nanofibrous mats as potential scaffolds for skin tissue engineering显示文摘 | Honglin Chen Jin Huang Jiahui Yu Shiyuan Liu Ping Gu | | 0,,: | 1 |
| 17 | Backtracking-based matching pursuit meth- od for sparse signal reconstruction显示文摘 | Huang Honglin Makur A | 2011 | IEEE Signal Processing Let- ters2011,18,7: | 1 |
| 18 | Influence of Glomus etunicatum / Zea mays mycorrhiza on atrazine degradation, soil phosphatase and dehydrogenase activities, and soil microbial community structure显示文摘 | Honglin Huang Shuzhen Zhang Naiying Wu Lei Luo Peter Christie | 2009 | Soil Biology and Biochemistry2009,,4: | 1 |
| 19 | Degradation of methyl orange by atmospheric DBD plasma:analysis of the degradation effects and degradation path显示文摘 | Huang Fangmin Chen Li Wang Honglin | 2012 | Journal of Electrostatics2012,70,1: | 1 |
| 20 | Influence of Glomus etunicaturn/Zea mays mycorrhiza on at- razine degradation, soil phosphatase and dehydrogenase activities, and soil microbial community structure 显示文摘 | HUANG Honglin ZHANG Shuzhen WU Naiying | 2009 | Soil Biol- ogy : Biochemistry2009,41,: | 1 |