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我国数字化转型研究热点及趋势展望:基于文献计量视角
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作者 宋佳倩 文燕平 《金融管理研究》 2023年第1期287-308,共22页
为迎接数字时代,激活数据要素潜能,以数字化转型整体驱动生产方式、生活方式和治理方式变革成为了国家“十四五”规划的工作重点。与数字化转型相关的研究议题在产业发展、企业管理和政务服务等领域积累了丰富的研究成果。本文利用文献... 为迎接数字时代,激活数据要素潜能,以数字化转型整体驱动生产方式、生活方式和治理方式变革成为了国家“十四五”规划的工作重点。与数字化转型相关的研究议题在产业发展、企业管理和政务服务等领域积累了丰富的研究成果。本文利用文献计量方法对过去近20年的数字化转型研究的文献进行梳理,发现我国数字化转型的研究经历了萌芽期(2002—2010年)、探索期(2011—2017年)、发展期(2018至今)三个阶段;形成了背景环境驱动、数字技术的行业应用、数据治理的“环境—技术—应用”的研究脉络;研究的问题主要聚焦于传统企业和政府数字化转型、数字技术融合发展、数字化转型过程机制、数字经济和高质量发展四个方面。基于文献的趋势分析,从背景环境—过程机制—应用结果三个维度探讨数字化转型的未来研究方向。 展开更多
关键词 数字化转型 数字技术 研究热点 文献计量 知识图谱
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Nutrient uptake,physiological responses and growth of tobacco(Nicotiana tabacum L.)in soil under composite salt stress
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作者 Jian CUI Dongrui YAO +10 位作者 Jing MA Xiefeng YE Ying PENG jiaqian song Jinfeng LI Yajun CHANG John YANG Zhen ZHANG Xueli LI Xiaojing LIU Khalil KARIMAN 《Pedosphere》 SCIE CAS CSCD 2022年第6期893-904,共12页
High soil salinity imposes osmotic stress and ion toxicity in plants,leading to substantial crop yield loss worldwide.Understanding of the quantitative and dynamic physiological responses to composite soil salt stress... High soil salinity imposes osmotic stress and ion toxicity in plants,leading to substantial crop yield loss worldwide.Understanding of the quantitative and dynamic physiological responses to composite soil salt stress is limited and needs to be expanded.In this study,physiological,nutritional,and biomass yield parameters of tobacco(Nicotiana tabacum L.)grown in soil with five levels of composite soil salinity(CSS),basal CSS level(control,CK)and 3(T_(1)),6(T_(2)),9(T_(3)),and 12(T_(4))times the basal CSS level,under greenhouse were determined at days 30,60,and 90 after transplanting.Leaf dry biomass significantly(P<0.05)increased at the low salinity levels applied(T_(1) and T_(2))at all three time points,whereas it progressively declined as the CSS level further increased.The leaf physiological and photosynthetic responses were more adversely affected by CSS at the early growth stage(day 30).A path coefficient analysis demonstrated that leaf proline content had the largest direct effect(-0.66),and leaf Cu content had the most significant indirect effect(0.49)on leaf dry biomass of plants.The results suggest that lower CSS levels(T_(1) and T_(2))could stimulate tobacco growth(leaf biomass yield,in particular),and higher leaf proline and Cu levels at the early growth stage may potentially increase the ability of tobacco plants to withstand the adverse effects of salinity,which could be considered for future research and development of salinity management strategies. 展开更多
关键词 anti-adversity metabolite composite soil salinity hormone MALONDIALDEHYDE PROLINE translocation factor
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