Massalha Hassan, Korenblum Elisa, Tholl Dorothea, Aharoni Asaph
Department of Plant Sciences, Weizmann Institute of Science, Rehovot, 76100, Israel.
Department of Biological Sciences, Virginia Polytechnic Institute and State University, Blacksburg, VA, 24061, USA.
Plant J. 2017 May;90(4):788-807. doi: 10.1111/tpj.13543. Epub 2017 Apr 22.
Soil communities are diverse taxonomically and functionally. This ecosystem experiences highly complex networks of interactions, but may also present functionally independent entities. Plant roots, a metabolically active hotspot in the soil, take an essential part in below-ground interactions. While plants are known to release an extremely high portion of the fixated carbon to the soil, less information is known about the composition and role of C-containing compounds in the rhizosphere, in particular those involved in chemical communication. Specialized metabolites (or secondary metabolites) produced by plants and their associated microbes have a critical role in various biological activities that modulate the behavior of neighboring organisms. Thus, elucidating the chemical composition and function of specialized metabolites in the rhizosphere is a key element in understanding interactions in this below-ground environment. Here, we review key classes of specialized metabolites that occur as mostly non-volatile compounds in root exudates or are emitted as volatile organic compounds (VOCs). The role of these metabolites in below-ground interactions and response to nutrient deficiency, as well as their tissue and cell type-specific biosynthesis and release are discussed in detail.
土壤群落具有分类学和功能上的多样性。这个生态系统经历着高度复杂的相互作用网络,但也可能呈现出功能上独立的实体。植物根系是土壤中代谢活跃的热点区域,在地下相互作用中起着至关重要的作用。虽然已知植物会将极高比例的固定碳释放到土壤中,但关于根际含碳化合物的组成和作用,尤其是那些参与化学通讯的化合物,人们了解得较少。植物及其相关微生物产生的特殊代谢产物(或次生代谢产物)在调节邻近生物体行为的各种生物活动中起着关键作用。因此,阐明根际特殊代谢产物的化学成分和功能是理解这个地下环境中相互作用的关键要素。在这里,我们综述了主要以非挥发性化合物形式存在于根系分泌物中或以挥发性有机化合物(VOCs)形式释放的特殊代谢产物的关键类别。详细讨论了这些代谢产物在地下相互作用和对养分缺乏的响应中的作用,以及它们在组织和细胞类型特异性生物合成和释放方面的情况。