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| 1 | Epidemiological Data of Work-Related Musculoskeletal Disorders—China,2018–2020显示文摘Summary What is already known about this topic?In recent decades,work-related musculoskeletal disorders(WMSDs)have become increasingly prominent and have become an important issue that is of universal concern and an urgent need to be solved in all countries of the world.What is added by this report?The top three industries or occupational groups with the highest standardized prevalence rate of WMSDs were flight attendants,medical staff,and vegetable greenhouses in that order.Women workers were 1.5 times more likely to suffer from WMSDs than men workers. | Ning Jia Huadong Zhang Ruijie Ling Yimin Liu Gang Li Zaoliang Ren Yan Yin Hua Shao Hengdong Zhang Bing Qiu Meibian Zhang Dayu Wang Qiang Zeng Rugang Wang Jianchao Chen Danying Zhang Liangying Mei Yongquan Liu Jixiang Liu Chengyun Zhang Tianlai Li Qing Xu Ying Qu Xueyan Zhang Xin Sun Zhongxu Wang | 2021 | China CDC weekly2021,3,18: | 13 |
| 2 | Investigation on Work-Related Musculoskeletal Disorders--China, 2018−2019显示文摘What is already known about this topic?Work-related musculoskeletal disorders(WMSDs)have a high prevalence and seriously harmful,which has attracted extensive attention in various countries in the world.Currently,the occurrence and rules of WMSDs in key industries are not known in China.What is added by this report?The prevalence of WMSDs is relatively high among professional populations in key industries in China,with the most commonly affected body parts concentrated in neck,shoulders,and low back and increasing with age and working years.What are the implications for public health practice?This study determined the prevalence and distribution characteristics of WMSDs in key industries in China and provided scientific evidence to recommend for inclusion of WMSDs in the new revision of the list of occupational diseases in China. | Ning Jia Huadong Zhang Ruijie Ling Yimin Liu Gang Li Zaoliang Ren Yan Yin Hua Shao Hengdong Zhang Bing Qiu Meibian Zhang Dayu Wang Qiang Zeng Rugang Wang Jianchao Chen Danying Zhang Liangying Mei Yongquan Liu Jixiang Liu Chengyun Zhang Tianlai Li Qing Xu Ying Qu Xueyan Zhang Xin Sun Zhongxu Wang | 2020 | China CDC weekly2020,2,18: | 11 |
| 3 | Temperature variations inside Chinese solar greenhouses with external climatic conditions and enclosure materials显示文摘Chinese solar greenhouses enable the extension of the crop growing season in the cold climate in Northern China with little or no additional heating.The temporal variations of the air temperatures inside solar greenhouses located at three cities in North,Northeast and Northwest China were predicted by CFD simulations of the greenhouse systems using typical meteorological data.The predicted temperatures based on the meteorological data in Shenyang are quite similar to the measured temperatures.The results also show that the external air temperatures and solar radiation fluxes play more important roles for the inside temperatures as indicated by the highest inner temperature in the morning on Feb.18 and from 10:00 to 14:00 on Feb.19 in Beijing and by the predicted temperatures inside the greenhouse being higher in Lanzhou than those in Shenyang and Beijing during most of the day.The average daily temperature inside the greenhouse in Lanzhou was nearly 3.5℃higher than that in Shenyang.Predicted air temperatures for various wall designs show that for single walls,the daily average interior temperatures in the aerated concrete wall greenhouse were higher than those in the brick wall and reinforced concrete wall greenhouses.However,the air temperature fluctuations were lower in the reinforced concrete wall greenhouse due to greater thermal storage capacity.The results also show that the temperatures in the layered wall greenhouses are quite similar,which coincides with the experimental results。 | Tong Guohong David M Christopher Li Tianlai Wang Tieliang | 2008 | International Journal of Agricultural and Biological Engineering2008,1,2: | 10 |
| 4 | Plasma membrane-localized SlSWEET7a and SlSWEET14 regulate sugar transport and storage in tomato fruits显示文摘Sugars,especially glucose and fructose,contribute to the taste and quality of tomato fruits.These compounds are translocated from the leaves to the fruits and then unloaded into the fruits by various sugar transporters at the plasma membrane.SWEETs,are sugar transporters that regulate sugar efflux independently of energy or pH.To date,the role of SWEETs in tomato has received very little attention.In this study,we performed functional analysis of SlSWEET7a and SlSWEET14 to gain insight into the regulation of sugar transport and storage in tomato fruits.SlSWEET7a and SlSWEET14 were mainly expressed in peduncles,vascular bundles,and seeds.Both SlSWEET7a and SlSWEET14 are plasma membrane-localized proteins that transport fructose,glucose,and sucrose.Apart from the resulting increase in mature fruit sugar content,silencing SlSWEET7a or SlSWEET14 resulted in taller plants and larger fruits(in SlSWEET7a-silenced lines).We also found that invertase activity and gene expression of some SlSWEET members increased,which was consistent with the increased availability of sucrose and hexose in the fruits.Overall,our results demonstrate that suppressing SlSWEET7a and SlSWEET14 could be a potential strategy for enhancing the sugar content of tomato fruits. | Xinsheng Zhang Chaoyang Feng Manning Wang Tianlai Li Xin Liu Jing Jiang | 2021 | Horticulture Research2021,8,1: | 4 |
| 5 | Stereoselective Synthesis of Vinylboronates by Rh-Catalyzed Borylation of Stereoisomeric Mixtures显示文摘Summary of main observation and conclusion The stereoselective preparation of vinylboronates via rhodium-catalyzed borylation of E/Z mixtures of vinyl actetates is described, and this method was also extended to synthesis of vinyldiboronates. These transformations feature high functional group compatibility and mild reaction conditions. Control experiments support a mechanism that involved a Rh-catalyzed borylation-isomerization sequence. The isomerization of (Z)-vinylboronates to (E)-isomers was also demonstrated. | Shenhuan Li Jie Li Tianlai Xia Wanxiang Zhao | 2019 | Chinese Journal of Chemistry2019,37,5: | 2 |
| 6 | Auxin response and transport during induction of pedicel abscission in tomato显示文摘Auxin plays a central role in control of organ abscission,and it is thought that changes in the auxin gradient across the abscission zone are the primary determinant of the onset of abscission.The nature of this gradient,whether in concentration,flow,or perhaps in the response system has not conclusively been determined.We employed a DR5::GUS auxin response reporter system to examine the temporal and spatial distribution of the auxin response activity in response to developmental and environmental cues during pedicel abscission in tomato.In pedicels of young and fully open flowers,auxin response,as indicated by GUS activity,was predominantly detected in the vascular tissues and was almost entirely confined to the abscission zone(AZ)and to the distal portion of the pedicel,with a striking reduction in the proximal tissues below the AZ-a‘step’,rather than a gradient.Following pollination and during early fruit development,auxin response increased substantially throughout the pedicel.Changes in GUS activity following treatments that caused pedicel abscission(flower removal,high temperature,darkness,ethylene,or N-1-naphthylphthalamic acid(NPA)treatment)were relatively minor,with reduced auxin response in the AZ and some reduction above and below it.Expression of genes encoding some auxin efflux carriers(PIN)and influx carriers(AUX⁄LAX)was substantially reduced in the abscission zone of NPA-treated pedicels,and in pedicels stimulated to abscise by flower removal.Our results suggest that changes in auxin flow distribution through the abscission zone are likely more important than the auxin response system in the regulation of abscission. | Xiufen Dong Chao Ma Tao Xu Michael S.Reid Cai-Zhong Jiang Tianlai Li | 2021 | Horticulture Research2021,8,1: | 2 |
| 7 | Mechanical model for double side self-propelled rolling machine based on rigid and flexible contact dynamics显示文摘The objective of the present research was to establish a mechanical model to study the performance of double side self-propelled rolling machine.There are two key models in the modeling process.The first model is the soft cover dynamics model,which is an important innovation in this study.And the insulation quilt was established based on the Macro-modeling technology.The second model is the double side self-propelled rolling machine virtual prototype model.By specifying multiple contact constraints and loadings between the soft cover dynamics model and the rigid component,the virtual prototype model was built successfully and the double side self-propelled rolling process was completely simulated.Moreover,the interaction mechanisms of the rigid and flexible coupling mechanics were investigated.The virtual rolling processes of different insulation quilt lengths were analyzed under different thickness treatments.The simulated results showed a good agreement with the experimental measurements,which suggested that the established model is an effective approach to evaluating and optimizing the rolling machine.The successful establishment of the mechanical model can facilitate the study of the performance of the product and further optimization,and also is of great significance to shorten the development cycle and reduce costs. | Yiming Li Yu Liu Xiang Yue Zhongqiu Li Xing'an Liu Tianlai Li | 2022 | International Journal of Agricultural and Biological Engineering2022,15,6: | 1 |
| 8 | Fertilization regulates soil enzymatic activity and fertility dynamics in a cucumber field显示文摘 | Yang Lijuan Li Tianlai Li Fusheng | 2008 | Scientia Horticulturae2008,116,: | 1 |
| 9 | Fertiliza tion regulates soil enzymatic activity and fertility dy namics in a cucumber field显示文摘 | Yang Li]uan Li Tianlai Li Fusheng et at | 2008 | Scientia Horticultu rae2008,116,1: | 1 |
| 10 | Optimal and Spatial Analysis of Hormones, Degrading Enzymes and Isozyme Profiles in Tomato Pedicel Explants During Ethylene-Induced Abscission显示文摘 | Yanchang Wang Tianlai Li Hanyong Meng Xiaoyun Sun | 2005 | Plant Growth Regulation2005,,2: | 1 |
| 11 | Fertilization regulates soil enzymatic activity and fertility dynamics in a cucumber field显示文摘 | Lijuan Yang Tianlai Li Fusheng Li J. Hugo Lemcoff Shabtai Cohen | 2008 | Scientia Horticulturae2008,,1: | 1 |
| 12 | Temporal and Spatial Distribution of Auxin Response Factor Genes During Tomato Flower Abscission显示文摘 | Xiaoxi Guan Tao Xu Song Gao Mingfang Qi Yanling Wang Xin Liu Tianlai Li | 2014 | Journal of Plant Growth Regulation2014,,2: | 1 |
| 13 | Incidence and Risk Factors of the Upper-Limb Musculoskeletal Disorders Among Occupational Groups in Key Industries—China,2018–2021显示文摘What is already known about this topic?The burden of illness and economic losses due to upper-limb work-related musculoskeletal disorders(UL-WMSDs)is high;thus,they have become a major global public health problem.At present,the epidemiological characteristics of UL-WMSDs in China's occupational population are still unknown.What is added by this report?The incidence of UL-WMSDs among key occupational groups in China is 22.5%,with distinct occupational characteristics.What are the implications for public health practice?This study has primarily determined the occurrence and potential risk factors of UL-WMSDs in key industries in China and provided data support for recommending prevention and control of the occurrence of such diseases in key industries in China,and in facilitating the addition into the China’s List of Legal Occupational Diseases. | Ning Jia Meibian Zhang Huadong Zhang Ruijie Ling Yimin Liu Gang Li Yan Yin Hua Shao Hengdong Zhang Bing Qiu Dongxia Li Dayu Wang Qiang Zeng Rugang Wang Jianchao Chen Danying Zhang Liangying Mei Xinglin Fang Yongquan Liu Jixiang Liu Chengyun Zhang Tianlai Li Jun Qi Qing Xu Ying Qu Xueyan Zhang Xin Sun Zhongxu Wang | 2022 | China CDC weekly2022,4,50: | 1 |
| 14 | Optimal and Spatial Analysis of Hormones, Degrading Enzymes and Isozyme Profiles in Tomato Pedicel Explants During Ethylene-Induced Abscission显示文摘 | Yanchang Wang Tianlai Li Hanyong Meng Xiaoyun Sun | 2005 | Plant Growth Regulation2005,,2: | 1 |
| 15 | Fertilization regulates soil enzymatic activity and fertility dynamics in acucumber field显示文摘 | LIJUAN YANG TIANLAI LI FUSHENG LI et ol | 2008 | Scientia Horticulturae2008,116,: | 1 |
| 16 | Different Proteomics of Ca^(2+) on SA-induced Resistance to Botrytis cinerea in Tomato显示文摘This study aims to comprehensively study the effects of Ca^(2+) on the SA-induced resistance Botrytis cinerea in tomato through proteomics analysis.A proteomic approach was used to uncover the inducible proteins of tomato in the susceptible tomato cultivars ‘L402' against Botrytis cinerea after salicylic acid(SA) and a combination treatment of CaCl_2 and SA.The results showed that the use of combination treatment of CaCl_2 and SA significantly enhanced tomato resistance against Botrytis cinerea.In total,46 differentially expressed protein spots from 2-DE gel maps were detected,of which 41 were identified by mass spectrometry.All the identified proteins were categorized into eight groups according to their putative functions:defense response(14.00%),antioxidative protein(9.75%),photosynthesis(24.39%),molecular chaperone(4.88%),energy(17.01%),metabolism(21.95%),protein synthesis(4.88%) and signal transduction(0.2%).Of the proteins in the eight function groups,the effect of stress/defense and reactive oxygen species on Ca^(2+) -regulated SA-induced resistance may be the most important one in induced resistance by RT-PCR.The expression level of pathogenesis-related proteins(PRs) and chitinase was upregulated by a combination treatment of CaCl_2 and SA.The characterization of these proteins greatly helped to reveal the induced proteins involved in the regulation of Ca^(2+) on SA-induced resistance to Botrytis cinerea.In the combination treatment of CaCl_2 and SA,the defense response and antioxidative protein were clearly upregulated much more than SA alone or the control treatment by the method of proteomics and RT-PCR.The present findings suggest that susceptible tomato cultivars treated by the combination treatment of CaCl_2 and SA might possess a more sensitive SA signaling system or effective pathway than SA treatment alone.In addition,results indicated that SA could coordinate other cellular activities linked with photosynthesis and metabolism to facilitate defense response and recovery,indicating that the self-defense capability of tomato was improved by the combination treatment of CaCl_2 and SA. | LI Linlin GUO Peng JIN Hua LI Tianlai | 2016 | Horticultural Plant Journal2016,2,3: | 1 |
| 17 | Calcium Requirement for Ethylene-Induced Abscission显示文摘 | Tao Xu Tianlai Li Mingfang Qi | 2009 | Journal of Plant Nutrition2009,,3: | 1 |
| 18 | Light quality regulates plant biomass and fruit quality through a photoreceptor-dependent HY5-LHC/CYCB module in tomato显示文摘Increasing photosynthesis and light capture offers possibilities for improving crop yield and provides a sustainable way to meet the increasing global demand for food.However,the poor light transmittance of transparent plastic films and shade avoidance at high planting density seriously reduce photosynthesis and alter fruit quality in vegetable crops,and therefore it is important to investigate the mechanisms of light signaling regulation of photosynthesis and metabolism in tomato(Solanum lycopersicum).Here,a combination of red,blue,and white(R1W1B0.5)light promoted the accumulation of chlorophyll,carotenoid,and anthocyanin,and enhanced photosynthesis and electron transport rates by increasing the density of active reaction centers and the expression of the genes LIGHT-HARVESTING COMPLEX B(SlLHCB)and A(SlLHCA),resulting in increased plant biomass.In addition,R1W1B0.5 light induced carotenoid accumulation and fruit ripening by decreasing the expression of LYCOPENEβ-CYCLASE(SlCYCB).Disruption of SlCYCB largely induced fruit lycopene accumulation,and reduced chlorophyll content and photosynthesis in leaves under red,blue,and white light.Molecular studies showed that ELONGATED HYPOCOTYL 5(SlHY5)directly activated SlCYCB,SlLHCB,and SlLHCA expression to enhance chlorophyll accumulation and photosynthesis.Furthermore,R1W1B0.5 light-induced chlorophyll accumulation,photosynthesis,and SlHY5 expression were largely decreased in the slphyb1cry1 mutant.Collectively,R1W1B0.5 light noticeably promoted photosynthesis,biomass,and fruit quality through the photoreceptor(SlPHYB1 and SlCRY1)-SlHY5-SlLHCA/B/SlCYCB module in tomato.Thus,the manipulation of light environments in protected agriculture is a crucial tool to regulate the two vital agronomic traits related to crop production efficiency and fruit nutritional quality in tomato. | Jiarong Yan Juan Liu Shengdie Yang Chenghao Jiang Yanan Liu Nan Zhang Xin Sun Ying Zhang Kangyou Zhu Yinxia Peng Xin Bu Xiujie Wang Golam Jalal Ahammed Sida Meng Changhua Tan Yufeng Liu Zhouping Sun Mingfang Qi Feng Wang Tianlai Li | 2023 | Horticulture Research2023,10,12: | 0 |
| 19 | PROTECTIVE ROLES OF D1 PROTEIN TURNOVER AND THE XANTHOPHYLL CYCLE IN TOMATO(SOLANUM LYCOPERSICUM)UNDER SUB-HIGH TEMPERATURE AND HIGH LIGHT STRESS显示文摘D1 protein turnover and the xanthophyll cycle(XC)are important photo-protective mechanisms in plants that operate under adverse conditions.Here,streptomycin sulfate(SM)and dithiothreitol(DTT)were used in tomato plants as inhibitors of D1 protein turnover and XC to elucidate their photoprotec-tive impacts under sub-high temperature and high light conditions(HH,35°C,1000 limol m 2.S1).SM and DTT treatments significantly reduced the net photosynthetic rate,apparent quantum efficiency,maximum photochemical efficiency,and potential activity of photosystem II,leading to photoinhibition and a decline in plant biomass under HH.The increase in reactive oxygen species levels resulted in thylakoid membrane lipid peroxidation.In addition,there were increased non-photochemical quenching and decreased chlorophyll pigments in SM and DTT application,causing an inhibition of D1 protein production at both transcriptional and translational levels.Overall,inhibition of D1 turnover caused greater photoinhibition than XC inhibition.Additionally,the recovery levels of most photosynthesis indicators in DTT-treated plants were higher than in SM-treated plants.These findings support the view that D1 turnover has a more important role than XC in photoprotection in tomato under HH conditions. | Tao LUA Jiazhi LU Mingfang QI Zhouping SUN Yufeng LIU Tianlai LI | 2021 | Frontiers of Agricultural Science and Engineering2021,8,2: | 0 |