Win J, Chaparro-Garcia A, Belhaj K, Saunders D G O, Yoshida K, Dong S, Schornack S, Zipfel C, Robatzek S, Hogenhout S A, Kamoun S
The Sainsbury Laboratory, Norwich Research Park, Norwich, NR4 7UH United Kingdom.
Cold Spring Harb Symp Quant Biol. 2012;77:235-47. doi: 10.1101/sqb.2012.77.015933. Epub 2012 Dec 6.
Every plant is closely associated with a variety of living organisms. Therefore, deciphering how plants interact with mutualistic and parasitic organisms is essential for a comprehensive understanding of the biology of plants. The field of plant-biotic interactions has recently coalesced around an integrated model. Major classes of molecular players both from plants and their associated organisms have been revealed. These include cell surface and intracellular immune receptors of plants as well as apoplastic and host-cell-translocated (cytoplasmic) effectors of the invading organism. This article focuses on effectors, molecules secreted by plant-associated organisms that alter plant processes. Effectors have emerged as a central class of molecules in our integrated view of plant-microbe interactions. Their study has significantly contributed to advancing our knowledge of plant hormones, plant development, plant receptors, and epigenetics. Many pathogen effectors are extraordinary examples of biological innovation; they include some of the most remarkable proteins known to function inside plant cells. Here, we review some of the key concepts that have emerged from the study of the effectors of plant-associated organisms. In particular, we focus on how effectors function in plant tissues and discuss future perspectives in the field of effector biology.
每种植物都与多种生物紧密相连。因此,解读植物如何与共生和寄生生物相互作用对于全面理解植物生物学至关重要。植物与生物相互作用领域最近围绕一个综合模型形成了统一观点。已经揭示了来自植物及其相关生物的主要分子类型。这些包括植物的细胞表面和细胞内免疫受体,以及入侵生物的质外体效应子和宿主细胞易位(细胞质)效应子。本文重点关注效应子,即由与植物相关的生物分泌的、改变植物生理过程的分子。在我们对植物 - 微生物相互作用的综合观点中,效应子已成为核心分子类别。对它们的研究极大地推动了我们对植物激素、植物发育、植物受体和表观遗传学的认识。许多病原体效应子是生物创新的杰出典范;它们包括一些已知在植物细胞内发挥作用的最显著蛋白质。在这里,我们回顾了从对与植物相关生物的效应子研究中出现的一些关键概念。特别是,我们重点关注效应子在植物组织中的功能,并讨论效应子生物学领域的未来前景。