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4篇 您的检索式:作者名="Linying Jiang"
    题名 作者 年代 出处 被引量
1Effects of spray-dried animal plasma on serious and intestinal redox status and eytokines of neonatal piglets 显示文摘Gao Y Jiang Z Liny C 2011Journal of Animal Science2011,89,:1
2Effects of spray dried animal plasma on serious and interstinal redox status and cytokines of neonatal piglets显示文摘Gao Y Y Jiang Z Y Liny C 2011Journal of Animal Science2011,89,:1
3Research and Practice on the Cultivation Model of Compound and Innovative Talents with Interdisciplinary--Taking the“Internet+Finance”Experimental Class as an Example显示文摘As major contemporary scientific,technological,economic,and social issues are highly comprehensive and interdisciplinary,society has entered a period of systematization and integration.The traditional education model of“discipline-centered”makes the training of talents excessively“single”,while the actual problems are becoming more and more complex and comprehensive,reflecting the multi-disciplinary nature.Disciplinary professional education is not suitable for the current new economy,new industry,and new era.Taking the“Internet+Finance”experimental class as an example,this article elaborates on the reform ideas of an interdisciplinary and compound innovative talent training model,and details the reform experience in four aspects:the curriculum system,characteristic professional orientation training model,collaborative teaching organization model and interdisciplinary talent training management model.After two years of construction and practice,the goal of interdisciplinary talent training under the background of new engineering disciplines has been achieved quite effectively.Linying Jiang Hai Yu Ying Wang Wei Cheng Zhiliang Zhu 2021计算机教育2021,,12:0
4Wheat adaptation to environmental stresses under climate change:Molecular basis and genetic improvement显示文摘Wheat(Triticum aestivum)is a staple food for about 40%of the world’s population.As the global population has grown and living standards improved,high yield and improved nutritional quality have become the main targets for wheat breeding.However,wheat production has been compromised by global warming through the more frequent occurrence of extreme temperature events,which have increased water scarcity,aggravated soil salinization,caused plants to be more vulnerable to diseases,and directly reduced plant fertility and suppressed yield.One promising option to address these challenges is the genetic improvement of wheat for enhanced resistance to environmental stress.Several decades of progress in genomics and genetic engineering has tremendously advanced our understanding of the molecular and genetic mechanisms underlying abiotic and biotic stress responses in wheat.These advances have heralded what might be considered a“golden age”of functional genomics for the genetic improvement of wheat.Here,we summarize the current knowledge on the molecular and genetic basis of wheat resistance to abiotic and biotic stresses,including the QTLs/genes involved,their functional and regulatory mechanisms,and strategies for genetic modification of wheat for improved stress resistance.In addition,we also provide perspectives on some key challenges that need to be addressed.Hude Mao Cong Jiang Chunlei Tang Xiaojun Nie Linying Du Yuling Liu Peng Cheng Yunfeng Wu Huiquan Liu Zhensheng Kang Xiaojie Wang 2023Molecular Plant2023,16,10:0
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