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草莓菌根研究进展
引用本文:张茹琴,尹永楠,张运涛,李敏,刘润进.草莓菌根研究进展[J].青岛农业大学学报(自然科学版),2017(2):79-84.
作者姓名:张茹琴  尹永楠  张运涛  李敏  刘润进
作者单位:1. 青岛农业大学菌根生物技术研究所,山东 青岛,266109;2. 北京市农林科学院林果所,北京,100097
基金项目:山东省重点研发计划(2015GNC11079),青岛市科技计划基础研究项目(12-1-4-5-(14)-jch)
摘    要:草莓(Fragaria×ananassa)根系分布浅、根量大、木质化程度轻和对菌根依赖性较强.本文在介绍草莓菌根形态特征及其丛枝菌根(AM)真菌物种多样性的基础上,分析了AM真菌改善草莓植株营养与水分状况、增强抗逆性、促进生长、增加产量和改善品质的效应及其作用机制;探讨了草莓与AM真菌种性、土壤条件和农业技术等对草莓菌根发育及其功能的影响;论述了AM真菌在草莓栽培生产中的应用与发展前景.认为AM真菌在草莓可持续绿色产业化栽培中将发挥越来越大的作用.

关 键 词:草莓  菌根  抗逆性  生长  产量  应用

Advances in Study of Mycorrhizas on Strawberry
ZHANG Ruqin,YIN Yongnan,ZHANG Yuntao,LI Min,LIU Runjin.Advances in Study of Mycorrhizas on Strawberry[J].Journal of Laiyang Agricultural College,2017(2):79-84.
Authors:ZHANG Ruqin  YIN Yongnan  ZHANG Yuntao  LI Min  LIU Runjin
Abstract:Strawberry (Fragaria×ananassa Duch.)is characterized in large, shallow, light lignification and fibril root system, with higher mycorrhizal dependency.On the basis of introducing strawberry mycorrhizal morphological structure and the species diversity of AM fungi in the rhizosphere of strawberry plants, the authors analyze the effects of arbuscular mycorrhizal(AM) fungi on improving strawberry plant nutrition, enhance its stress resistance, promote the growth, yield and quality of strawberry, and their AM fungus functioning mechanisms;discuss influences of species of AM fungi and cultivars of strawberry, soil conditions and farming measures on strawberry mycorrhizal development and functions, and some possible regulating pathways;and evaluate application situation of AM fungi in strawberry production, and development prospects.AM fungi should play more and more role in the sustainable green production of strawberry.
Keywords:strawberry  mycorrhiza  stress resistance  growth  yield  application
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