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丛枝菌根共生使具有不同根系性状的高粱品种能够高效吸收磷。

Arbuscular Mycorrhizal Symbiosis Enables Efficient Phosphorus Uptake in Sorghum Accessions With Contrasting Root Traits.

作者信息

Gill Jasmine, Tharp Courtney L, Suseela Vidya

机构信息

Department of Plant and Environmental Sciences, Clemson University, Clemson, South Carolina, USA.

出版信息

Plant Cell Environ. 2025 Oct;48(10):7699-7713. doi: 10.1111/pce.15666. Epub 2025 Jul 14.

Abstract

Phosphorus (P), an essential nutrient, is apparently unavailable to plants due to strong sorption in soils. Plants with shallow root systems and high surface area exhibit high P acquisition efficiency (PAE). Arbuscular mycorrhizal fungal (AMF) symbiosis can also enhance PAE. However, whether AMF symbiosis will equally benefit crop accessions with contrasting root traits is less known. We selected sorghum accessions that varied in root traits to evaluate P uptake strategies and assessed changes in root traits, acid-phosphatase activity, primary and specialised metabolome in the presence of AMF, and under limited and stratified P availability. Our results revealed that regardless of the inherent accession differences in root traits, all accessions had higher shoot P and biomass with AMF inoculation. AMF-inoculated plants had lower specific root length, higher hyphal length and acid phosphatase activity than the non-inoculated control, indicating that plants can enhance PAE with AMF, irrespective of inherent accession differences. The AMF induced similar changes in root metabolome, where AMF-inoculated plants had higher organic acids and specialised metabolites necessary for a functional symbiosis. Our results emphasise the critical role of AMF in efficient P uptake regardless of inherent root traits, which should be considered while selecting crop accessions for improved PAE.

摘要

磷(P)是一种必需营养素,由于在土壤中强烈吸附,植物显然无法获取。根系浅且表面积大的植物表现出较高的磷获取效率(PAE)。丛枝菌根真菌(AMF)共生也可以提高PAE。然而,AMF共生是否会同样有益于具有不同根系特征的作物品种,目前尚不清楚。我们选择了根系特征不同的高粱品种来评估磷吸收策略,并评估了在AMF存在下以及在有限和分层磷供应条件下根系特征、酸性磷酸酶活性、初级和特殊代谢组的变化。我们的结果表明,无论根系特征的固有品种差异如何,接种AMF后所有品种的地上部磷含量和生物量都更高。接种AMF的植物比未接种的对照具有更低的比根长、更高的菌丝长度和酸性磷酸酶活性,这表明无论固有品种差异如何,植物都可以通过AMF提高PAE。AMF在根系代谢组中诱导了类似的变化,接种AMF的植物具有更高的有机酸和功能性共生所需的特殊代谢物。我们的结果强调了AMF在高效磷吸收中的关键作用,无论根系特征如何,在选择作物品种以提高PAE时都应考虑这一点。

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