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Root Structure and Functioning for Efficient Acquisition of Phosphorus: Matching Morphological and Physiological Traits

机译:有效吸收磷的根系结构和功能:匹配形态和生理特征

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摘要

• Background Global phosphorus (P) reserves are being depleted, with half-depletion predicted to occur between 2040 and 2060. Most of the P applied in fertilizers may be sorbed by soil, and not be available for plants lacking specific adaptations. On the severely P-impoverished soils of south-western Australia and the Cape region in South Africa, non-mycorrhizal species exhibit highly effective adaptations to acquire P. A wide range of these non-mycorrhizal species, belonging to two monocotyledonous and eight dicotyledonous families, produce root clusters. Non-mycorrhizal species with root clusters appear to be particularly effective at accessing P when its availability is extremely low.• Scope There is a need to develop crops that are highly effective at acquiring inorganic P (Pi) from P-sorbing soils. Traits such as those found in non-mycorrhizal root-cluster-bearing species in Australia, South Africa and other P-impoverished environments are highly desirable for future crops. Root clusters combine a specialized structure with a specialized metabolism. Native species with such traits could be domesticated or crossed with existing crop species. An alternative approach would be to develop future crops with root clusters based on knowledge of the genes involved in development and functioning of root clusters.• Conclusions Root clusters offer enormous potential for future research of both a fundamental and a strategic nature. New discoveries of the development and functioning of root clusters in both monocotyledonous and dicotyledonous families are essential to produce new crops with superior P-acquisition traits.
机译:•背景全球磷的储量正在枯竭,预计到2040年至2060年将发生一半的枯竭。施肥中施用的大多数P可能被土壤吸收,不适用于缺乏特殊适应性的植物。在澳大利亚西南部和南非开普地区的严重P贫瘠的土壤上,非菌根物种表现出对P的高效适应。这些非菌根物种种类繁多,分别属于两个单子叶和八个双子叶科,产生根簇。当根系非菌根物种的可用性极低时,似乎对根除磷特别有效。•范围有必要开发一种能从吸收磷的土壤中高效获取无机磷(Pi)的作物。诸如在澳大利亚,南非和其他磷贫瘠的环境中的非菌根根丛物种中发现的那些性状对于未来的农作物是非常需要的。根簇结合了专门的结构和专门的新陈代谢。具有这种特性的本地物种可以被驯化或与现有作物物种杂交。另一种方法是根据根簇的发育和功能所涉及的基因知识,利用根簇来培育未来的作物。结论结论根簇为基础和战略性质的未来研究提供了巨大的潜力。单子叶和双子叶家庭的根簇发育和功能的新发现对于生产具有优良P习性的新作物至关重要。

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