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植物扦插生根机理的研究进展
引用本文:孙雪莲,杨楚童,胡亚楠,邹显花.植物扦插生根机理的研究进展[J].农学学报,2021,11(10):33-40.
作者姓名:孙雪莲  杨楚童  胡亚楠  邹显花
作者单位:福建农林大学林学院,福州 350002
基金项目:福建省林业科学技术推广项目“珍贵树种沉水樟的无性繁殖生根机理研究”(闽林推[2016]SJ15号)
摘    要:扦插作为一种无性繁殖的重要技术被广泛应用于生产实践中,然而目前一些优良植物的扦插生根率低,制约着其扦插繁殖技术的长足发展,而探明植物的扦插生根调控机理是提高植物扦插生根率的关键。本文从插穗不定根发生的形态解剖学、生理学及分子学研究三方面对植物扦插生根机理的研究进行综述。结合国内外研究现状,从解剖学角度对不定根形成的进程和机理进行说明,分析了插穗内含物质与生根之间的关系,阐明了不定根形成和发育的关键分子调控机理。目前植物的扦插生根机理研究已从解剖学、生理学深入到分子学水平,基于分子生物学的发展趋势,提出利用基因工程手段提升植物扦插繁殖技术,以实现植物扦插繁殖的技术创新,提高繁殖数量和质量,适应发展需要。

关 键 词:扦插繁殖  生根机理  形态解剖学  内含物质  分子机理  
收稿时间:2020-04-23

Rooting Mechanism of Plant Cuttings: A Review
Sun Xuelian,Yang Chutong,Hu Ya'nan,Zou Xianhua.Rooting Mechanism of Plant Cuttings: A Review[J].Journal of Agriculture,2021,11(10):33-40.
Authors:Sun Xuelian  Yang Chutong  Hu Ya'nan  Zou Xianhua
Institution:Fujian Agricultural and Forestry University, Fuzhou 350002, Fujian, China
Abstract:Cutting is widely used in production practice as an important technique of asexual reproduction. However, the low cutting rooting rate of some quality plants still restricts the rapid development of cutting propagation technology, and the key to improve the cutting rooting rate of plants is to find out the regulation mechanism. This article summarized the research on the mechanism of cutting rooting of plant from three aspects of morphology and anatomy, physiology and molecular biology during the adventitious root formation. Combined with the current research status at home and abroad, the process and mechanism of adventitious root formation were explained from the morphology and anatomy, the relationship between adventitious root formation and rooting was analyzed. The key molecular regulation mechanism of adventitious root formation and development was clarified. At present, the research on the rooting mechanism of plant cutting has gone deep into the molecular level from anatomy and physiology. Based on the development trend of molecular biology, it is proposed to use genetic engineering to improve the cutting propagation technology of plants, so as to achieve technological innovation, improve the quantity and quality of reproduction and adapt to the needs of production development.
Keywords:Cutting Propagation  Rooting Mechanism  Morphology and Anatomy  Embedded Substance  Molecular Mechanism  
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