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| 1 | Experimental determination and calculation of thermodynamic properties of CO 2 <ce:hsp sp='0.25'/>+<ce:hsp sp='0.25'/>octane to high temperatures and high pressures显示文摘 | Jinglin Yu Shujun Wang Yiling Tian | 2006 | Fluid Phase Equilibria2006,,1: | 1 |
| 2 | Mechanisms of Exogenous Nitric Oxide and 24-Epibrassinolide Alleviating Chlorosis of Peanut Plants Under Iron Deficiency显示文摘Iron(Fe) is a crucial transition metal for all living organisms including plants; however, Fe deficiency frequently occurs in plant because only a small portion of Fe is bioavailable in soil in recent years. To cope with Fe deficiency, plants have evolved a wide range of adaptive responses from changes in morphology to altered physiology. To understand the role of nitric oxide(NO) and 24-epibrassinolide(EBR) in alleviating chlorosis induced by Fe deficiency in peanut(Arachis hypogaea L.) plants, we determined the concentration of chlorophylls, the activation, uptake, and translocation of Fe, the activities of key enzymes, such as ferric-chelate reductase(FCR),proton-translocating adenosine triphosphatase(H^+-ATPase), and antioxidant enzymes, and the accumulation of reactive oxygen species(ROS) and malondialdehyde(MDA) of peanut plants under Fe sufficiency(100 μmol L^(-1)ethylenediaminetetraacetic acid(EDTA)-Fe) and Fe deficiency(0 μmol L^(-1)EDTA-Fe). We also investigated the production of NO in peanut plants subjected to Fe deficiency with foliar application of sodium nitroprusside(SNP), a donor of NO, and/or EBR. The results showed that Fe deficiency resulted in severe chlorosis and oxidative stress, significantly decreased the concentration of chlorophylls and active Fe, and significantly increased NO production. Foliar application of NO and/or EBR increased the activity of antioxidant enzymes, superoxide dismutase,peroxidase, and catalase, and decreased the ROS and MDA concentrations, thus enhancing the resistance of plants to oxidative stress.Application of NO also significantly increased Fe translocation from the roots to the shoots and enhanced the transfer of Fe from the cell wall fraction to the cell organelle and soluble fractions. Consequently, the concentrations of available Fe and chlorophylls in the leaves were elevated. Furthermore, the activities of H^+-ATPase and FCR were enhanced in the Fe-deficient plants. Simultaneously,there was a significant increase in NO production, especially in the plants that received NO, regardless of Fe supply. These suggest that NO or EBR, and, especially, their combination are effective in alleviating plant chlorosis induced by Fe deficiency. | SONG Yiling DONG Yuanjie TIAN Xianyi WANG Wanwan Zhenli HE | 2018 | Pedosphere2018,28,6: | 1 |
| 3 | Carbon dioxidereforming of methane using DC corona discharge plasmareaction显示文摘 | Li Mingwei Xu Genhui Tian Yiling | 2004 | Journal of Physical Chemistry A2004,108,10: | 1 |
| 4 | Simultaneous determination of two active ingredients in Flos daturae by capillary electrophoresis with electrochemiluminescence detection显示文摘 | Ying Gao Yiling Tian Erkang Wang | 2005 | Analytica Chimica Acta2005,545,: | 1 |
| 5 | Simultaneous determination of two active ingredients in Flos daturae by cap- illary eleetrophoresis with electrochemiluminescence detection显示文摘 | Gao Ying Tian Yiling Wang Erkang | 2005 | Analytica Chimica Acta2005,545,: | 1 |
| 6 | Erkang Wang,Determination of ranitidine in urine by capillary electrophoresis-electrochemiluminescent detection显示文摘 | Ying Gao Yiling Tian Xiuhua Sun etc | 2006 | Journal of Chromatography B2006,832,: | 1 |
| 7 | Two-peak phenomena and formation origin in micellar electrokinetic capillary chromatography显示文摘 | Guanhua Chen Gengliang Yang Yiling Tian Yi Chen | 2003 | Science in China Series B: Chemistry2003,,5: | 1 |
| 8 | No tillage outperforms conventional tillage under arid conditions and following fertilization显示文摘Reduced tillage practices present a tool that could sustainably intensify agriculture.The existing literature,however,lacks a consensus on how and when reduced tillage practices should get implemented.We reanalyzed here an extensive dataset comparing how regular tillage practices(i.e.,conventional tillage)impacted yield of eight crops compared to stopping tillage altogether(i.e.,no-tillage practice).We observed that aridity and fertilization favored no tillage over conventional tillage whereas conventional tillage performed better under high fertility settings.We further show that the responses are consistent across the crops.Our reanalysis complements the original and fills a gap in the literature questioning the conditions under which reducing tillage presents a viable alternative to common tillage practices. | Stavros D.Veresoglou Junjiang Chen Xuheng Du Qi Fu QingLiu Geng Chenyan Huang Xilin Huang Nan Hu Yiming Hun Guolin C.Li Zhiman Lin Zhiyu Ma Yuyi Ou Shuo Qi Haitian Qin Yingbo Qiu Xibin Sun Ye Tao YiLing Tian Jie Wang Lingxiao Wu Ziwei Wu Siqi Xie Ao Yang Dan Yang Chen Zeng Ying Zeng RuJie Zhang | 2023 | Soil Ecology Letters2023,5,1: | 1 |
| 9 | Matched-case comparison of neoadjuvant chemotherapy in patients with FIGO stage IB1-IIB cervical cancer to establish selection criteria显示文摘 | Ting Hu Shuang Li Yile Chen Jian Shen Xiong Li Kecheng Huang Ru Yang Li Wu Zhilan Chen Yao Jia Shaoshuai Wang Xiaodong Cheng Xiaobing Han Zhongqiu Lin Hui Xing Pengpeng Qu Hongbing Cai Xiaojie Song Xiaoyu Tian Hongbing Xu Jun Xu Qinghua Zhang Ling Xi Dong | 2012 | European Journal of Cancer2012,,15: | 1 |
| 10 | A homozygous frameshift mutation in ADAD2 causes male infertility with spermatogenic impairments显示文摘Male infertility is a complex reproductive disorder that impedes a huge number of couples from having children naturally in the world(Agarwal et al.,2021).As an important pathogenic factor of male infertility,spermatogenic impairments are mainly characterized by impaired male gamete production,reduced sperm quality,or function(Tournaye et al.,2017).Spermatogenesis is a delicate and complex biological process that requires the collaboration of a large number of proteins performing different biological functions(Liu et al.,2021). | Shixiong Tian Ziqi Wang Liting Liu Yiling Zhou Yue Lv Dongdong Tang Jiaxiong Wang Jing Jiang Huan Wu Shuyan Tang Guanxiong Wang Hao Geng Fangbiao Tao Hongbin Liu Xiaojin He Feng Zhang Jinsong Li Li Jin Tao Huang Chunyu Liu Yunxia Cao | 2023 | Journal of Genetics and Genomics2023,50,4: | 0 |
| 11 | The pathophysiological mechanism between hypopituitarism and nonalcoholic fatty liver disease显示文摘Nonalcoholic fatty liver disease(NAFLD)is a common chronic metabolic liver disease worldwide.It is closely related to diseases of the cardiovascular system and chronic kidney disease.It can also occur secondary to many other diseases.Current research shows that patients with hypopituitarism have a high risk of developing NAFLD.After the adenohypophysis is dominated by hypothalamic hormones,hormones are secreted to act on the corresponding tissues or organs.It is characterized by a decrease in the thyroid hormone,cortisol,and growth hormone levels.In this review,we analyzed the mechanisms related to NAFLD through thyroid secretion,growth hormone secretion,sex hormone,and prolactin axes in patients with hypopituitarism,which will provide information and a theoretical basis for clinical diagnosis and treatment. | Xinhe Zhang Haoyu Tian Yiling Li | 2022 | iLIVER2022,1,1: | 0 |
| 12 | Targeting LncRNA LLNLR-299G3.1 with antisense oligonucleotide inhibits malignancy of esophageal squamous cell carcinoma cells in vitro and in vivo显示文摘Accumulating evidence has indicated that long non-coding RNAs(lncRNAs)play critical roles in the development and progression of cancers,including esophageal squamous cell carcinoma(ESCC).However,the mechanisms of lncRNAs in ESCC are still incompletely understood and therapeutic attempts for in vivo targeting cancer-associated lncRNA remain a challenge.By RNA-sequencing analysis,we identified that LLNLR-299G3.1 was a novel ESCC-associated lncRNA.LLNLR-299G3.1 was up-regulated in ESCC tissues and cells and promoted ESCC cell proliferation and invasion.Silencing of LLNLR-299G3.1 with ASO(antisense oligonucleotide)resulted in opposite effects.Mechanistically,LLNLR-299G3.1 bound to cancerassociated RNA binding proteins and regulated the expression of cancer-related genes,including OSM,TNFRSF4,HRH3,and SSTR3.ChIRP-seq(chromatin isolation by RNA purification and sequencing)revealed that these genes contained enriched chromatin binding sites for LLNLR-299G3.1.Rescue experiments confirmed that the effects of LLNLR-299G3.1 on ESCC cell proliferation were dependent on interaction with HRH3 and TNFRSF4.Therapeutically,intravenous delivery of placental chondroitin sulfate A binding peptide-coated nanoparticles containing antisense oligonucleotide(pICSA-BP-ANPs)strongly inhibited ESCC tumor growth and significantly improved animal survival in vivo.Overall,our results suggest that LLNLR-299G3.1 promotes ESCC malignancy through regulating gene-chromatin interactions and targeting ESCC by pICSA-BP-ANPs may be an effective strategy for the treatment of lncRNA-associated ESCC. | LI TIAN YONGYI HUANG BAOZHEN ZHANG YI SONG LIN YANG QIANQIAN CHEN ZHENG WANG YILING WANG QIHAN HE WENHAN YANG SHUYONG YU TIANYU LU ZICHEN LIU KAIPING GAO XIUJUN FAN JIAN SONG RIHONG ZHAI | 2023 | Oncology Research2023,31,4: | 0 |
| 13 | Maize-soybean relay cropping increases soybean yield synergistically by extending the post-anthesis leaf stay-green period and accelerating grain filling显示文摘Relay cropping of Poaceae and Fabaceae promotes high yield and land-use efficiency by allowing a double harvest.However,it is difficult to increase yield synergistically because of the reduced photosynthetic abilities of legume leaves under the shade of graminoids.Leaf photosynthetic capacity in relay cropping systems is associated with ecological niche differentiation and photosynthetic compensation after restoration of normal light.We conducted a field experiment in southwest China in 2020–2021 to evaluate the effects of three cropping patterns:maize–soybean relay cropping(IMS),monoculture maize(MM),and monoculture soybean(SS),and N application levels:no N application(NN:0 kg N ha^(−1)),reduced N(RN:180 kg N ha^(−1)),and conventional N(CN:240 kg N ha^(−1)).Compared to monocropping,relay cropping increased the stay-green traits of maize and soybean by 13%and 89%,respectively.Relay cropping prolonged the leaf stay-green duration in the maize and soybean lag phase by almost 4 and 8 days,respectively.Relay cropping maize(IM)increased the leaf area index(LAI)by 79.4%to 88.5%under NN and 55.5%to 148%under RN.Relay cropping soybean(IS)increased the LAI from 115%to 437%at days 40 to 50 after anthesis.IM increased yield by 65.6%.IS increased yield by 9.7%.HI and system yield were at their highest values under RN.In the relay cropping system,reduced N application extended green leaf duration,increased photosynthesis inside the canopy at multiple levels,ultimately increases soybean yield synergistically. | Yiling Li Ping Chen Zhidan Fu Kai Luo Ping Lin Chao Gao Shanshan Liu Tian Pu Taiwen Yong Wenyu Yang | 2023 | The Crop Journal2023,11,6: | 0 |
| 14 | Progress in the preparation,identification and biological activity of walnut peptides显示文摘Walnuts are rich in protein and are a high-quality plant protein resource.In recent years,with the growth of consumer demand for functional food and food for special medical purpose,the use of walnut protein for the preparation of functional walnut peptide ingredients or additives and other compositions has received increasing attention.However,the improvement of the yield of walnut peptides and the clarification of their functional activities are the bottlenecks that limit the development of these peptides.To this end,this article reviews the pretreatment,preparation,purification and identification processes of walnut peptides,as well as their biological activities such as antioxidant activity,antitumour activity,improvement of memory,antihypertension and regulation of metabolic disorders are elaborated to provide a reference for the industrial development of walnut peptides. | Chang Liu Zijie Zhang Yuting Shang Siting Li Junxi Xia Yiling Tian Yingmin Jia Aijin Ma | 2024 | Journal of Future Foods2024,4,3: | 0 |
| 15 | Physical exercise protects muscle from accelerated aging induced by high-salt intake and muscle CG2196(salt)gene overexpression in Drosophila显示文摘Aging decreases muscle mass,strength,and functional capacity.High-salt stress seems to promote muscle aging and decrease lifespan.However,exercise delays muscle aging and increases longevity,and it may protect muscle from rapid aging induced by high-salt intake(HSI),but the molecular mechanisms are poorly understood.In this study,the flies were fed a high-salt diet and trained to exercise.Muscle CG2196(salt)gene and dSir2 gene were over-expressed by building mef2-gal4/UAS system.The results showed that both physical exercise and muscle dSir2 gene overexpression prevented HSI-induced and muscle salt overexpression-induced accelerated age-related decline of climbing index,climbing endurance,muscle NAD^(+)level,SOD activity level,dSir2 expression,and dFOXO expression,and they also prevented HSI-induced and muscle salt overexpression-induced accelerated age-related increase in muscle ROS level,MDA level,and salt gene expression.Physical exercise improved lifespan decrease induced by HSI and muscle salt overexpression.Therefore,current results indicated that high-salt stress accelerated muscle aging by decreasing muscular NAD^(+)/dSir2/dFOXO pathway activity and increasing oxidative stress.Physical exercise protected muscle from accelerated aging induced by high-salt stress through activating muscle NAD^(+)/dSir2/dFOXO pathway and enhancing muscle oxidation resistance.The combination of exercise and muscle dSir2 overexpression had the best protective effect on muscle aging and lifespan in flies. | Dengtai Wen Yiling Chen Xu Tian Wenqi Hou | 2023 | Food Science and Human Wellness2023,12,6: | 0 |