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我压迫,故我在——根源内生真菌内米拉拟青霉中的逃避和抑制。

Opprimo ergo sum--evasion and suppression in the root endophytic fungus Piriformospora indica.

机构信息

Max Planck Institute for Terrestrial Microbiology - Organismic Interations, Marburg, Germany.

出版信息

Mol Plant Microbe Interact. 2012 Jun;25(6):727-37. doi: 10.1094/MPMI-11-11-0291.

Abstract

The genetically tractable endophytic fungus Piriformospora indica is able to colonize the root cortex of a great variety of different plant species with beneficial effects to its hosts, and it represents a suitable model system to study symbiotic interactions. Recent cytological studies in barley and Arabidopsis showed that, upon penetration of the root, P. indica establishes a biotrophic interaction during which fungal cells are encased by the host plasma membrane. Large-scale transcriptional analyses of fungal and plant responses have shown that perturbance of plant hormone homeostasis and secretion of fungal lectins and other small proteins (effectors) may be involved in the evasion and suppression of host defenses at these early colonization steps. At later stages, P. indica is found more often in moribund host cells where it secretes a large variety of hydrolytic enzymes that degrade proteins. This strategy of colonizing plants is reminiscent of that of hemibiotrophic fungi, although a defined shift to necrotrophy with massive host cell death is missing. Instead, the association with the plant root leads to beneficial effects for the host such as growth promotion, increased resistance to root as well as leaf pathogens, and increased tolerance to abiotic stresses. This review describes current advances in understanding the components of the P. indica endophytic lifestyle from molecular and genomic analyses.

摘要

具有遗传可操作性的内生真菌离蠕孢菌能够定殖于多种不同植物物种的根皮层,并对其宿主产生有益影响,它是研究共生相互作用的合适模式系统。最近在大麦和拟南芥中的细胞学研究表明,在穿透根后,离蠕孢菌在建立生物共生关系的过程中,真菌细胞被宿主质膜包裹。对真菌和植物反应的大规模转录分析表明,植物激素动态平衡的破坏以及真菌凝集素和其他小蛋白(效应物)的分泌可能参与了在这些早期定植步骤中逃避和抑制宿主防御。在后期,离蠕孢菌更常见于濒死的宿主细胞中,在这些细胞中它分泌大量的水解酶来降解蛋白质。这种定殖植物的策略让人联想到半活体真菌,尽管缺少明确的向坏死转变并伴随着大量宿主细胞死亡。相反,与植物根的共生关系为宿主带来了有益的影响,例如促进生长、增强对根和叶病原体的抗性,以及增强对非生物胁迫的耐受性。这篇综述描述了从分子和基因组分析角度理解离蠕孢菌内生生活方式的成分的最新进展。

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