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植物促生真菌,康宁木霉抑制异黄酮植物抗毒素 vestitol 的产生,从而在百脉根的根上定殖。

Plant growth-promoting fungus, Trichoderma koningi suppresses isoflavonoid phytoalexin vestitol production for colonization on/in the roots of Lotus japonicus.

机构信息

National Agricultural Research Center for Hokkaido Region, Kasai, Hokkaido 082-0081, Japan.

出版信息

Microbes Environ. 2011;26(2):128-34. doi: 10.1264/jsme2.me10176. Epub 2011 Feb 26.

Abstract

The relationship between the colonization of Lotus japonicus by plant growth-promoting fungi (PGPF) and biosynthesis of the isoflavonoid phytoalexin vestitol, a major defensive response of leguminous plants, was analyzed. When PGPF including Trichoderma koningi, Fusarium equiseti, and Penicillium simplicissimum were inoculated onto L. japonicus roots, only T. koningi colonized the roots long-term and increased plant dry weight (126%). Microscopic observations of transverse sections of roots colonized by T. koningi demonstrated intercellular hyphal growth and the formation of yeast-like cells. The induction of plant defenses by fungal infections was examined by Northern analysis of genes involved in vestitol biosynthesis and HPLC of vestitol production in L. japonicus. Inoculation with symbiotic Mesorhizobium loti did not induce any accumulation of the transcripts. T. koningi immediately suppressed transcript levels to those induced by M. loti. The vestitol transuded from roots by T. koningi was detected at a level equivalent to that transuded by M. loti. Other PGPF and Calonectoria ilicola pathogenic to soybean but not to L. japonicus, stimulated continuous expression of genes and exudation of vestitol. These PGPF resembled mycorrhizal fungi in the establishment of symbiotic associations rather than fungal parasites.

摘要

分析了植物促生真菌(PGPF)在 Lotus japonicus 上定殖与异黄酮类植物抗毒素 vestitol 生物合成之间的关系,Lotus japonicus 是豆科植物的主要防御反应。当 PGPF(包括 Trichoderma koningi、Fusarium equiseti 和 Penicillium simplicissimum)接种到 L. japonicus 根部时,只有 T. koningi 能长期定殖在根部,并增加植物干重(126%)。对 T. koningi 定殖的根部横切面进行显微镜观察,发现有细胞间菌丝生长和酵母样细胞的形成。通过 Northern 分析参与 vestitol 生物合成的基因和 HPLC 分析 L. japonicus 中 vestitol 的产生,研究了真菌感染对植物防御的诱导。共生 Mesorhizobium loti 的接种并没有诱导任何转录物的积累。T. koningi 立即将转录物水平抑制到 M. loti 诱导的水平。从 T. koningi 渗出的根中的 vestitol 水平与从 M. loti 渗出的水平相当。其他对大豆有致病性但对 L. japonicus 无致病性的 PGPF 和 Calonectoria ilicola 刺激了基因的持续表达和 vestitol 的渗出。这些 PGPF 在建立共生关系方面类似于菌根真菌,而不是真菌寄生虫。

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