Jones David L, Hodge Angela, Kuzyakov Yakov
School of Agricultural and Forest Sciences, University of Wales, Bangor, Gwynedd, LL57 2UW, Wales, UK.
Department of Biology, University of York, PO Box 373, York YO10 5YW, England, UK.
New Phytol. 2004 Sep;163(3):459-480. doi: 10.1111/j.1469-8137.2004.01130.x.
The loss of carbon from roots (rhizodeposition) and the consequent proliferation of microorganisms in the surrounding soil, coupled with the physical presence of a root and processes associated with nutrient uptake, gives rise to a unique zone of soil called the rhizosphere. In this review, we bring together evidence to show that roots can directly regulate most aspects of rhizosphere C flow either by regulating the exudation process itself or by directly regulating the recapture of exudates from soil. Root exudates have been hypothesized to be involved in the enhanced mobilization and acquisition of many nutrients from soil or the external detoxification of metals. With few exceptions, there is little mechanistic evidence from soil-based systems to support these propositions. We conclude that much more integrated work in realistic systems is required to quantify the functional significance of these processes in the field. We need to further unravel the complexities of the rhizosphere in order to fully engage with key scientific ideas such as the development of sustainable agricultural systems and the response of ecosystems to climate change. Contents I. Introduction 460 II. What is rhizodeposition? 460 III. Regulation of rhizodeposition 460 IV. How large is the root exudation C flux? 463 V. How responsive is the root exudation C flux? 463 VI. How responsive is the microbial community to root exudation? 464 VII. The role of root exudates in nutrient acquisition 464 VIII. Mycorrhizal fungi and rhizodeposition 471 IX. Future thoughts 474 Acknowledgements 474 References 474.
根系中碳的流失(根际沉积)以及随之而来的周围土壤中微生物的增殖,再加上根系的物理存在以及与养分吸收相关的过程,形成了一个独特的土壤区域,称为根际。在这篇综述中,我们汇总了证据,表明根系可以通过调节渗出过程本身或直接调节从土壤中重新捕获渗出物,直接调控根际碳流的大多数方面。据推测,根系分泌物参与了从土壤中增强多种养分的活化和获取或金属的外部解毒过程。除了少数例外,基于土壤的系统几乎没有机制性证据来支持这些观点。我们得出结论,需要在实际系统中开展更多综合研究,以量化这些过程在田间的功能重要性。我们需要进一步解开根际的复杂性,以便充分理解关键科学理念,如可持续农业系统的发展以及生态系统对气候变化的响应。目录 一、引言460 二、什么是根际沉积?460 三、根际沉积的调控460 四、根系渗出碳通量有多大?463 五、根系渗出碳通量的响应性如何?463 六、微生物群落对根系渗出的响应性如何?464 七、根系分泌物在养分获取中的作用464 八、菌根真菌与根际沉积471 九、未来展望474 致谢474 参考文献474