State Key Laboratory for Rice Biology, Institute of Biotechnology, Zhejiang University, Hangzhou, China.
PLoS One. 2013 Apr 18;8(4):e61332. doi: 10.1371/journal.pone.0061332. Print 2013.
The mutualism pattern of the dark septate endophyte (DSE) Harpophora oryzae in rice roots and its biocontrol potential in rice blast disease caused by Magnaporthe oryzae were investigated. Fluorescent protein-expressing H. oryzae was used to monitor the colonization pattern. Hyphae invaded from the epidermis to the inner cortex, but not into the root stele. Fungal colonization increased with root tissue maturation, showing no colonization in the meristematic zone, slight colonization in the elongation zone, and heavy colonization in the differentiation zone. H. oryzae adopted a biotrophic lifestyle in roots accompanied by programmed cell death. Real-time PCR facilitated the accurate quantification of fungal growth and the respective plant response. The biocontrol potential of H. oryzae was visualized by inoculation with eGFP-tagged M. oryzae in rice. H. oryzae protected rice from M. oryzae root invasion by the accumulation of H2O2 and elevated antioxidative capacity. H. oryzae also induced systemic resistance against rice blast. This systemic resistance was mediated by the OsWRKY45-dependent salicylic acid (SA) signaling pathway, as indicated by the strongly upregulated expression of OsWRKY45. The colonization pattern of H. oryzae was consistent with the typical characteristics of DSEs. H. oryzae enhanced local resistance by reactive oxygen species (ROS) and high antioxidative level and induced OsWRKY45-dependent SA-mediated systemic resistance against rice blast.
研究了水稻根系中深色隔孢腔真菌(DSE)Harpophora oryzae 的共生模式及其对稻瘟病菌引起的稻瘟病的生物防治潜力。使用表达荧光蛋白的 H. oryzae 来监测定殖模式。菌丝从表皮侵入内皮层,但不进入根中柱。真菌定殖随根组织成熟而增加,在分生组织区没有定殖,在伸长区略有定殖,在分化区大量定殖。H. oryzae 在根中采用生物营养性生活方式,并伴有程序性细胞死亡。实时 PCR 便于准确量化真菌生长和植物的相应反应。通过在水稻中接种 eGFP 标记的 M. oryzae 来可视化 H. oryzae 的生物防治潜力。H. oryzae 通过积累 H2O2 和提高抗氧化能力来保护水稻免受 M. oryzae 的根入侵。H. oryzae 还诱导了对稻瘟病的系统抗性。这种系统抗性是由 OsWRKY45 依赖的水杨酸(SA)信号通路介导的,因为 OsWRKY45 的表达强烈上调。H. oryzae 的定殖模式与 DSE 的典型特征一致。H. oryzae 通过活性氧(ROS)和高抗氧化水平增强局部抗性,并诱导 OsWRKY45 依赖的 SA 介导的对稻瘟病的系统抗性。