多元组学背景下地黄连作障碍形成的分子机制研究进展  被引量:23

Advances on molecular mechanisms of Rehmannia glutinosa consecutive monoculture problem formation in multi-omics era

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作  者:李明杰[1,2] 冯法节 张宝[1] 古力[1] 王丰青[3] 杨艳会[4] 田云鹤[1] 陈新建[3] 张重义[1,2] LI Ming-jie FENG Fa-jie ZHANG Bao GU Li WANG Feng-qing YANG Yan-hui TIAN Yun-he CHEN Xin-jian ZHANG Zhong-yi(College of Crop Sciences, Fujian Agriculture and Forestry University, Fuzhou 350002, China Institute of Chinese Medicinal Materials, Henan Agricultural University, Zhengzhou 450002, China College of Bioengineering, Henan University of Technology, Zhengzhou 450001, China Key Laboratory for Genetics, Breeding and Multiple Utilization of Crops, Ministry of Education, Fujian Agriculture and Forest University, Fuzhou 350002, China)

机构地区:[1]福建农林大学作物科学学院,福建福州350002 [2]福建农林大学作物遗传育种与综合利用教育部重点实验室,福建福州350002 [3]河南农业大学,河南郑州450002 [4]河南工业大学生物工程学院,河南郑州450001

出  处:《中国中药杂志》2017年第3期413-419,共7页China Journal of Chinese Materia Medica

基  金:国家自然科学基金项目(81274022;81573538;81503193;81403042;81403037);福建省教育厅省属高校专项(JK2015013)

摘  要:连作障碍的研究虽然已经有多年的历史,但目前仍没有有效的治疗方法,其根本原因是其形成体系的复杂性。该文从连作植物根际土壤多元因子的互作关系入手,详细阐述了栽培植物连作障碍形成的生理生态机制,提出了栽培药用植物、自毒化感物质和根际微生物间复杂的多元互作是驱动连作障碍形成的根本原因,指出了植物功能基因组学和代谢组学以及微生物宏组学相结合的多元组学技术在深入理解特定生境多因子互作关系研究中的优势。同时,该文以地黄为例,从根际化感自毒物质累积效应、根际微生态的灾变及连作植株的分子响应等多元角度综述了地黄连作障碍形成的分子机制,并详细总结了多元组学技术在这些机制研究中的运用和进展。该文为从分子水平上系统地揭示栽培药用植物连作障碍形成的分子机制提供了新的思路。Although consecutive monoculture problems have been studied for many years,no effective treatments are currently available. The complexity of systems triggered the formation of consecutive monoculture problems was one major cause. This paper elaborated the physiological and ecological mechanisms of consecutive monoculture problem formation based on the interaction relationship among multiple factors presented in the rhizosphere soil of consecutive monoculture plants. At same time,in this paper the multiple interactions among cultivated medicinal plants,autotoxic allelochemicals and rhizosphere microbial were proposed to be most important causes that derived the formation of consecutive monoculture problem. The paper also highlighted the advantage of 'omics' technologies integrating plant functional genomics and metabolomics as well as microbial macro-omics in understanding the multiple factor interaction under a particular ecological environment. Additionally,taking R. glutinosa as an example,the paper reviewed the molecular mechanism for the formation of R. glutinosa consecutive monoculture problem from the perspective of the accumulation of allelopathic autotoxins,the rhizosphere microecology catastrophe and theresponding of consecutive monoculture plants. Simultaneously,the roles of mutilple 'omics' technologies in comprehending these formation mechanism were described in detail. This paper provides finally a new insight to solve systematically the mechanism of consecutive monoculture problem formation on molecular level.

关 键 词:地黄 多元组学 连作障碍 分子机制 栽培药用植物 

分 类 号:S567.234[农业科学—中草药栽培]

 

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