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Mechanisms for cellular transport and release of allelochemicals from plant roots into the rhizosphere

机译:细胞化学物质从植物根部运输到根际的运输和释放机制

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摘要

Allelochemicals and other metabolites released by plant roots play important roles in rhizosphere signalling, plant defence and responses to abiotic stresses. Plants use a variety of sequestration and transport mechanisms to move and export bioactive products safely into the rhizosphere. The use of mutants and molecular tools to study gene expression has revealed new information regarding the diverse group of transport proteins and conjugation processes employed by higher plants. Transport systems used for moving secondary products into and out of root cells are similar to those used elsewhere in the plant but are closely linked to soil environmental conditions and local root health. Root cells can rapidly generate and release large quantities of allelochemicals in response to stress or local rhizosphere conditions, so the production and transport of these compounds in cells are often closely linked. Plants need to manage the potentially toxic allelochemicals and metabolites they produce by sequestering them to the vacuole or other membrane-bound vesicles. These compartments provide secure storage areas and systems for safely moving bioactive chemicals throughout the cytosol. Release into the apoplast occurs either by exocytosis or through membrane-bound transport proteins. This review discusses the possible transport mechanisms involved in releasing specific root-produced allelochemicals by combining microscopic observations of the specialized root cells with the physical and chemical properties of the exudates.
机译:植物根部释放的化感物质和其他代谢产物在根际信号传递,植物防御和对非生物胁迫的响应中起重要作用。植物利用各种螯合和运输机制将生物活性产品安全地出口和出口到根际。使用突变体和分子工具研究基因表达,揭示了有关高等植物所使用的转运蛋白的不同种类和结合过程的新信息。用于将次级产品移入或移出根细胞的运输系统与植物中其他地方使用的运输系统相似,但与土壤环境条件和当地根系健康状况密切相关。根细胞可以响应压力或局部根际条件迅速生成和释放大量化感物质,因此这些化合物在细胞中的产生和运输通常紧密相连。植物需要通过将其隔离到液泡或其他与膜结合的囊泡中来管理其产生的潜在有毒的化感物质和代谢产物。这些隔室提供了安全的存储区域和系统,可在整个细胞溶胶中安全移动生物活性化学物质。通过胞吐作用或通过膜结合转运蛋白释放到质外体中。这篇综述讨论了通过结合专门的根细胞的显微镜观察结果与渗出物的物理和化学特性来释放特定的根产生的化感物质中可能涉及的转运机制。

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