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水稻与稻瘟病菌相互作用研究进展

韩艺娟 鲁国东

生物技术通报2018,Vol.34Issue(2):25-37,13.
生物技术通报2018,Vol.34Issue(2):25-37,13.DOI:10.13560/j.cnki.biotech.bull.1985.2017-0623

水稻与稻瘟病菌相互作用研究进展

Recent Understanding on the Interactions Between Rice and Magnaporthe oryzae

韩艺娟 1鲁国东1

作者信息

  • 1. 福建农林大学 生物农药与化学生物学教育部重点实验室,福州 350002
  • 折叠

摘要

Abstract

As a grain,rice production affects the steady growth of global economy. Varied biological and abiotic stresses threaten the rice's growth and development. Rice blast,caused by the filamentous fungus Magnaporthe oryzae(syn. Pyricularia oryzae)of crucial agricultural pathogenic microorganism,is key disease of rice(Oryza sativa)in the world,resulting in the huge rice yield loss. Compared with the prevention and control by traditional chemical pesticides,breeding disease-resistant cultivars is a more environmental-friendly and effective method to protect rice from rice blast. Nevertheless,the length and range of planting disease-resistant rice cultivars are limited due to the highly-frequent mutations of M. oryzae isolates and the high complex of M. oryzae populations in field. Therefore,understanding rice disease-resistant mechanisms and pathogenic mechanisms of rice blast fungus are beneficial to formulate better prevention and control measures. Rice-M. oryzae interactions involved in different layers of plant innate immunity. Recent years, great progresses have been achieved in functional genomics of rice and M. oryzae. In this review,we mainly summarized the progresses on rice blast disease resistance mechanisms and defense signaling in rice. We also prospected the challenges and opportunities in future study of rice-M. oryzae interaction,and hope to promote further study on their interaction and provide reference for rice breeding for blast disease resistance.

关键词

水稻/抗病分子机制/稻瘟病菌/相互作用

Key words

rice/molecular mechanisms of rice blast resistance/Magnaporthe oryzae/interaction

引用本文复制引用

韩艺娟,鲁国东..水稻与稻瘟病菌相互作用研究进展[J].生物技术通报,2018,34(2):25-37,13.

基金项目

自然科学基金促进海峡两岸科技合作联合基金(U1405212) (U1405212)

生物技术通报

OA北大核心CSCDCSTPCD

1002-5464

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