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8篇 您的检索式:作者名="LIU YAOXIN"
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1Applications of bio-derived/bio-inspired materials in the field of interfacial solar steam generation显示文摘Interfacial solar steam generation(ISSG)system has attracted extensive attention as a sustainable desalination technology because of its cost efficiency and zero fossil-energy consumption.Aiming at optimizing the desalination properties,materials and system design have been the current research focus.Recently,many novel bio-derived/bio-inspired design strategies were proposed owing to their highly efficient structures inherited from nature,which were fine-tuned over eons of evolution,as well as their low cost and ease of treatment.In this review,we are going to systematically report recent progress of various bio-derived/bio-inspired strategies in terms of optical design,wetting,thermal management,and overall system design,presenting an overview of the current challenges of bio-inspired materials in ISSG system and other application fields.This article is intended to provide a comprehensive review of recent developments about bio-derived/bio-inspired materials in ISSG system and conclude with suggestions regarding further research directions for performance enhancement through design of bio-derived/bio-inspired materials.Yang Geng Kai Jiao Xu Liu Peijin Ying Omololu Odunmbaku Yaoxin Zhang Swee Ching Tan Ling Li Wei Zhang Meng Li 2022Nano Research2022,15,4:2
2Role of ethylene response factors(ERFs)in fruit ripening显示文摘The ethylene response factors(ERFs)belong to the APETALA2/ethylene response factor(AP2/ERF)superfamily and act downstream of the ethylene signalling pathway to regulate the expression of ethylene responsive genes.In different species,ERFs have been reported to be involved in plant development,flower abscission,fruit ripening,and defense responses.In this review,based on the new progress made by recent studies,we summarize the specific role and mode of action of ERFs in regulating different aspects of ripening in both climacteric and non-climacteric fruits,and provide new insights into the role of ethylene in non-climacteric fruit ripening.Jin Gao Yaoxin Zhang Zhengguo Li Mingchun Liu 2020Food Quality and Safety2020,4,1:1
3On the systemof high order rational difference equations xn = ayn - p,yn = byn - pxn - q yn - q显示文摘YANG XIAOFAN LIU YAOXIN BAI SEN 2005Applied Mathematics and Computation2005,171,:1
4On the system of a high order rational difference equations Xn= a/Yn-p,Yn=NYn-p/Xn-qYn-p显示文摘Yang Xiaofan Liu Yaoxin Bai Sen 2005Applied Mathematics and Computa tion2005,171,2:1
5A self-activated NO-releasing hydrogel depot for photothermal enhanced sterilization显示文摘The ascendant danger of bacterial infections has resulted in an urgent requirement for developing new antibacterial approaches.Recently,nitric oxide(NO)has shown a broad-spectrum antimicrobial activity while avoiding resistance.However,achieving effective NO-based antibacterial therapies remains challenging,mired by the safety concerns of NO donor,residual toxicity by the ingredients,or complicated procedures.Herein,a self-activated NO-releasing hydrogel depot is fabricated by Ca^(2+)-crosslinked sodium alginate doped with CaO_(2)nanoparticles,L-arginine,and oxidized mesoporous carbon nanoparticles(OMCN)for photothermal enhanced bacteria killing.The locally concentrated H_(2)O_(2),generated from the reaction of CaO_(2)nanoparticles and water,could oxidize L-arginine to release NO.Meanwhile,benefiting from the remarkable photothermal effect of OMCN,the hybrid hydrogel possesses a synergistic sterilization behavior in combating both Gram-negative Escherichia coli and Grampositive Staphylococcus aureus bacteria in vitro.Moreover,the dual therapeutic hydrogel displays high efficiency in treatment of bacteria-infected mice with back wound model while showing no distinct toxicity.In addition,the restricted environment of hydrogel makes it easy to remove all the components from the infected wound,alleviating possible side effects from exogenous H_(2)O_(2).As such,the designed NO-synergistic photothermal hydrogel provides a promising strategy for treating bacterial infections.Shen Zhang Kelei Guan Yaoxin Zhang Junqing Zhang Hongyu Fu Ting Wu Dilan Ouyang Chaoqun Liu Qiang Wu Zhaowei Chen 2023Nano Research2023,16,4:0
6Effects of Intelligent Irrigation on Photosynthetic Characteristics of Citrus Leaves and Fruit Quality显示文摘[Objectives]This study was conducted to improve the water use efficiency and fruit quality of citrus,and realize the automatic irrigation and standardized production in citrus orchards.[Methods]With Orah as the research object,the effects of intelligent irrigation management in citrus orchards on citrus leaf chlorophyll content,photosynthetic characteristics and fruit quality were investigated by comparing with conventional farmer management.[Results]The smart irrigation measure in citrus orchards significantly increased the SPAD value of leaves at the maturation stage of citrus,and simultaneously significantly improved the photosynthetic rate,transpiration rate and stomatal conductance at the flower bud differentiation stage,as well as the photosynthetic rate,transpiration rate,stomatal conductance and intercellular CO_(2) concentration at the maturation stage.However,the effects on the photosynthetic characteristic indexes in the rainy season were not significant.Compared with conventional experience management,the smart irrigation management measure of citrus orchards increased the edible rate and juice rate of citrus by 4.53 and 3.69 percentage points,respectively,and increased soluble solids,total sugar,vitamin C and sugar-acid ratio by 16.75%,20.86%,24.10%and 13.17%,respectively.[Conclusions]The smart irrigation management fully met the water demand for citrus growth due to timely irrigation,significantly improved the photosynthesis indicators of citrus leaves during drought,and significantly improved the quality of citrus.Taiqing HUANG Yanfei HUANG Dan LU Yaoxin LIU 2022Agricultural Biotechnology2022,11,4:0
7Genome-wide characterization of the tomato GASA family identifies SlGASA1 as a repressor of fruit ripening显示文摘Gibberellins(GAs)play crucial roles in a wide range of developmental processes and stress responses in plants.However,the roles of GA-responsive genes in tomato(Solanum lycopersicum)fruit development remain largely unknown.Here,we identify 17 GASA(Gibberellic Acid-Stimulated Arabidopsis)family genes in tomato.These genes encode proteins with a cleavable signal peptide at their N terminus and a conserved GASA domain at their C terminus.The expression levels of all tomato GASA family genes were responsive to exogenous GA treatment,but adding ethylene eliminated this effect.Comprehensive expression profiling of SlGASA family genes showed that SlGASA1 follows a ripening-associated expression pattern,with low expression levels during fruit ripening,suggesting it plays a negative role in regulating ripening.Overexpressing SlGASA1 using a ripening-specific promoter delayed the onset of fruit ripening,whereas SlGASA1-knockdown fruits displayed accelerated ripening.Consistent with their delayed ripening,SlGASA1-overexpressing fruits showed significantly reduced ethylene production and carotenoid contents compared to the wild type.Moreover,ripening-related genes were downregulated in SlGASA1-overexpressing fruits but upregulated in SlGASA1-knockdown fruits compared to the wild type.Yeast two-hybrid,co-immunoprecipitation,transactivation,and DNA pull-down assays indicated that SlGASA1 interacts with the key ripening regulator FRUITFULL1 and represses its activation of the ethylene biosynthesis genes ACS2 and ACO1.Our findings shed new light on the role and mode of action of a GA-responsive gene in tomato fruit ripening.Dan Su Kaidong Liu Zhuoshu Yu Ying Li Yaoxin Zhang Yunqi Zhu Yi Wu Hongyu He Xiaodan Zeng Honglin Chen Don Grierson Heng Deng Mingchun Liu 2023Horticulture Research2023,10,1:0
8Analysis of Genetic Evolution of Escherichia fergusonii显示文摘[Objectives]This study was conducted to explore the genetic evolution of Escherichia fergusonii in different countries and regions,and to clarify the genetic relationship of E.fergusonii in different countries and regions.[Methods]Bioinformatics method and bacterial 16 S rRNA sequencing technology were used to sort out and prune 16 S rRNA genes isolated in laboratory and searched in NCBI database to construct a molecular evolutionary tree for analysis and comparison.[Results]The direction of evolution of E.fergusonii has broken through regions,and there was cross evolution among continents.The origin of E.fergusonii was the Asian continent,and its adaptability to arid climate was not strong.[Conclusions]This study revealed the genetic evolution laws of E.fergusonii in the spread and mutation of livestock and poultry diseases,and provides a theoretical reference for the prevention and treatment of the disease.Junhua LIU Yilian ZHOU Yaoxin CUI Yanfei LIU Jiande YANG 2020Agricultural Biotechnology2020,9,5:0
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