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17篇 您的检索式:作者名="YUKUI RUI"
    题名 作者 年代 出处 被引量
1Effects of protein-bound polysaccharide isolated from pumpkin on insulin in diabetic rats 显示文摘Li Quanhong Fu Caili Rui Yukui Hu Guanghui Cai Tongyi 2005Plant Foods for Human Nutrition2005,60,:1
2Fatty acid composition of Camellia oleifera oil 显示文摘MA Jinlin YE Hang RUI Yukui 2010Journal of Consumer Protection and Food Safety2010,6,:1
3Fatty acid composition of Camellia oleifera oil显示文摘Jinlin Ma Hang Ye Yukui Rui 2011J Verbr Lebensm2011,,6:1
4Fatty acid compositionof Camellia ole if era oil 显示文摘MA Jinlin YE Hang RUI Yukui ef al 2011Journal of Consumer Protection andFood Safety2011,,6:1
5Comparative proteomics analysis of Pichia pastoris cultivating in glucose and methanol显示文摘The methylotrophic yeast Pichia pastoris(syn.Komagataella phaffii)has been extensively engineered for protein production,and is attracting attention as a chassis cell for methanol biotransformation toward production of small molecules.However,the relatively unclear methanol metabolism hampers the metabolic rewiring to improve the biosynthetic efficiency.We here performed a label-free quantitative proteomic analysis of Pichia pastoris when cultivated in minimal media containing methanol and glucose,respectively.There were 243,158 up-regulated proteins and 244,304 down-regulated proteins in log and stationary phase,respectively,when cultivated in methanol medium compared with that of glucose medium.Peroxisome enrichment further improved the characterization of more differentially expressed proteins(481 proteins in log phase and 524 proteins in stationary phase).We demonstrated the transaldolase isoenzyme(Tal2,Protein ID:C4R244)was highly up-regulated in methanol medium cultivation,which plays an important role in methanol utilization.Our work provides important information for understanding methanol metabolism in methyltrophic yeast and will help to engineer methanol biotransformation in P.pastoris.Rui Hou Linhui Gao Jianhui Liu Zhen Liang Yongjin J.Zhou Lihua Zhang Yukui Zhang 2022Synthetic and Systems Biotechnology2022,7,3:1
6Effects of protein-bound polysac- chadde isolated from pumpkin on insulin in diabetic rats显示文摘LI Quanhong FU Caili RUI Yukui 2005Plants Foods for Human Nutrition2005,60,6:1
7Fatty acid composition of Camellia oleifera oil 显示文摘Ma Jinlin Ye Hang Rui Yukui 2011J Verbrauch Lebensm2011,6,1:1
8Fatty acid composition of Camellia oleifera oil显示文摘MA Jinlin YE Hang RUI Yukui 2011Journal Fur Verbraucherschutz Und Lebensmittelsicherheit-Journal of Consumer Protection and Food Safety2011,6,1:1
9Distribution of mineral elements in dual-toxin transgenic (Bt+CpTI) cotton 显示文摘Rui Yukui Wang Wenya Liu Pinghui 2009Plant Biosystem2009,143,1:1
10Determination of rare earth elements in Camellia oleifera seeds from rare earth elements mining areas in Southern Jiangxi,China by ICP-MS显示文摘Cai Dingjian Rui Yukui 2011J Verbr Lebensm2011,6,:1
11Fatty acid composition of Camellia oleifera oil 显示文摘MA Jinlin HANG Ye RUI Yukui 2011Journal Fur Verbrauccherschutz Und Lebensmittelsicherheit2011,6,1:1
12Effects of protein-bound polysaccharide isolated from pumpkin on insulin in diabetic rats显示文摘Li Quanhong Fu Caili Rui Yukui Cai Tongyi 2005Plant Foods for Human Nutrition2005,60,:1
13Fatty Camellia oleifera oil 显示文摘Jinlin Ma Hang composition of nal of Consumer (6) : 9-12 Ye Yukui Rui 2011Protection and Food Safety2011,2011,:1
14Determining mineral elements in four kinds of grains from Beijing market by ICP-MS simultaneously显示文摘ZHANG Hongxing RUI Yukui 2012Journal of Saudi Chemical Society2012,16,3:1
15Reimagining safe lithium applications in the living environment and its impacts on human,animal,and plant system显示文摘Lithium's(Li)ubiquitous distribution in the environment is a rising concern due to its rapid proliferation in the modern electronic industry.Li enigmatic entry into the terrestrial food chain raises many questions and uncertainties that may pose a grave threat to living biota.We examined the leverage existing published articles regarding advances in global Li resources,interplay with plants,and possible involvement with living organisms,especially humans and animals.Globally,Li concentration(<10 e300 mg kg1)is detected in agricultural soil,and their pollutant levels vary with space and time.High mobility of Li results in higher accumulation in plants,but the clear mechanisms and specific functions remain unknown.Our assessment reveals the causal relationship between Li level and biota health.For example,lower Li intake(<0.6 mM in serum)leads to mental disorders,while higher intake(>1.5 mM in serum)induces thyroid,stomach,kidney,and reproductive system dysfunctions in humans and animals.However,there is a serious knowledge gap regarding Li regulatory standards in environmental compartments,and mechanistic approaches to unveil its consequences are needed.Furthermore,aggressive efforts are required to define optimum levels of Li for the normal functioning of animals,plants,and humans.This review is designed to revitalize the current status of Li research and identify the key knowledge gaps to fight back against the mountainous challenges of Li during the recent digital revolution.Additionally,we propose pathways to overcome Li problems and develop a strategy for effective,safe,and acceptable applications.Noman Shakoor Muhammad Adeel Muhammad Arslan Ahmad Muhammad Zain Usman Waheed Rana Arsalan Javaid Fasih Ullah Haider Imran Azeem Pingfan Zhou Yuanbo Li Ghulam Jilani Ming Xu Jorg Rinklebe Yukui Rui 2023Environmental Science and Ecotechnology2023,,3:0
16Effect of biochar application on rice,wheat,and corn seedlings in hydroponic culture显示文摘In recent years,biochar has attracted considerable attention for soil quality improvement and carbon sequestration due to its unique physicochemical properties.However,the mechanism by which biochar application negatively affects the growth of crop seedlings has not been fully investigated.In this study,a hydroponic experiment was conducted to evaluate the response of rice,wheat,and corn seedlings to biochar application(CK,0 g/L;BC1,0.5 g/L;and BC2,1.0 g/L).Compared with the CK treatment,the BC1 and BC2 treatments decreased the fresh shoot and root weights of rice and corn seedlings(P<0.05),but there was no significant effect on wheat seedlings(P>0.05).For the contents of nutrient elements in seedlings,both BC1 and BC2 treatments hindered the roots from absorbing Fe and Cu and increased the uptake of Ca and Mn.Compared with the CK treatment,the translocation factor(TF)values of Ca,Mn,and Zn were significantly decreased especially in rice seedlings(35.3%-36.8%,68.7%-76.5%,and 29.8%-22.0%,respectively)under the BC1 and BC2 treatments,while only Mn was significantly decreased in wheat and corn seedlings(P<0.05).Transmission electron microscope(TEM)analysis of root cross-sections showed that nano-sized biochar particles(10~23 nm)were found in the root cells under BC2 treatment conditions.Our findings reveal that a large amount of biochar application can reduce nutrient absorption and translocation,and hinder rice,wheat,and corn seedlings,particularly rice seedling,in hydroponic system.Yingjie Yin Jikai Li Sihang Zhu Qing Chen Chong Chen Yukui Rui Jianying Shang 2024Journal of Environmental Sciences2024,,1:0
17Translocation and transformation of engineered nanomaterials in plant cells and their effect on metabolism显示文摘As the climate worsens and the demand for food grows,so does the interest in nanoagriculture.The interaction between plants and nanomaterials(NMs)has been extensively and intensively examined.However,stopping at the outcome of a phenomenon is often insufficient.Therefore,we introduce three important processes of nanoparticleplant interactions:translocation,transformation,and plant metabolism.During the migration of nanoparticles,size and surface electrical properties are the main determining factors.Additionally,the interaction of nanoparticles with cell membranes is another key aspect of research.The transformation of nanoparticles in plants is mainly due to redox substances.The way that nanoparticles affect plant metabolism may be able to shed light on the interaction of nanoparticles with plants.This review adds to the existing knowledge on the design of nanoagrochemicals and summarizes the mechanism of interaction of NMs with plants.In this way,NMs can be used for their beneficial effects and thus contribute to the maintenance of food security and sustainable development.WEICHEN ZHAO PINGFAN ZHOU BENZHEN LOU YAQI JIANG YUANBO LI MINGSHU LI NOMAN SHAKOOR YUKUI RUI 2023BIOCELL2023,47,3:0
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