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2018-2022年"干旱胁迫对植物的影响研究"可视化分析OACSTPCD

Research on impact of drought on plants from 2018 to 2022 in China:A bibliometric and visual analysis

中文摘要英文摘要

[目的]深入了解植物干旱胁迫领域的研究现状、研究热点及未来发展趋势,对我国 2018-2022 年植物干旱胁迫研究进行文献计量和可视化分析.[方法]利用 Citespace和 VOSviewer软件,以 2018-2022 年发表在中国知网(CNKI)和Web of Science(WOS)数据库的植物干旱胁迫研究文献为研究对象,分析我国 2018-2022年干旱胁迫对植物生长、生理和基因表达的影响研究热点与趋势.[结果]国内干旱胁迫对植物影响的研究热点主要集中在"干旱胁迫对植物外在形态和叶片内部结构的影响""干旱胁迫对植物光合特性的影响""干旱胁迫对植物渗透调节物质和抗氧化酶的影响"及"干旱胁迫对植物基因表达的影响"4 个方面.该领域研究重点主要包括干旱或干旱与盐复合胁迫对植物生理生化和抗旱基因的鉴定与转移.其中知网文献的关键词为"耐盐性""苗期"和"抗旱鉴定";WOS 文献的关键词则是"抗坏血酸过氧化物酶""水分利用"和"异位表达".[结论]纳米材料在缓解植物干旱胁迫中的作用、多组学联合分析(基因组、转录组、蛋白组、代谢组)以及转基因、基因编辑、基因沉默等技术在提升植物抗旱性中的综合应用将成为未来研究热点.

[Objective]Drought is an abiotic stress affecting crop growth the most in central and northern China.Tremendous research has been conducted over the past decades to understand the response of plants to drought and develop mitigation methods to ameliorate its detrimental effect.In this paper,we analyze the research processes,research hotspots,perspectives on advancing drought management practices in China.[Method]The analysis is based on papers published from 2018 to 2022.We used the Citespace and VOSviewer software to analyze the papers indexed by China National Knowledge Infrastructure(CNKI)and Web of Science(WOS).Our analysis focused on research that investigated the impact of drought on plant growth,physiological processes,and gene expression.The keywords used for search in CNKI were'salt tolerance','seedling stage',and'drought resistance identification',while those used for research in WOS were'ascorbate peroxidase','water use',and'ectopic expression'.[Result]Researches on the effect of drought on plants in China over the last five years predominantly focused on four areas:impact of drought stress on morphology and anatomy of leaves,effects of drought stress on photosynthetic characteristics of plants,effects of drought stress on osmotic regulation substances and antioxidant enzymes in plants,effects of drought stress on genetic expression in plants.Current research in this area is the identification and transfer of drought-resistance genes to plants which are prone to drought or drought-salt stress.The two research hotspots are application of nanomaterials to alleviate the impact of drought stress on plants,and applying multi-omics joint analysis(genomics,transcriptomics,proteomics,metabolomics)and advanced technologies such as transgenic techniques,gene editing,gene silencing to enhance the resistance of plants to drought.[Conclusion]Research on the impact of drought on plants in China over the past five years is diverse,ranging from developing techniques to ameliorate its detrimental influence to understanding the molecular mechanisms underlying the response of plants to drought stress.

王为木;张晓瑾;刘慧;董姝楠;齐张蓉

河海大学,南京 210098

水利科学

干旱胁迫植物生理生化抗旱基因文献计量可视化分析

drought stressplant physiological and biochemical responsesdrought-resistant genesbibliometric analysisvisualization analysis

《灌溉排水学报》 2024 (007)

1-10 / 10

国家自然科学基金面上项目(42277001)

10.13522/j.cnki.ggps.2023509

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