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共生生长的蚕豆(L.)品种根瘤中矿物质和碳代谢对有机磷补充的响应调节

Mineral and Carbon Metabolic Adjustments in Nodules of Symbiotically Grown Faba Bean ( L.) Varieties in Response to Organic Phosphorus Supplementation.

作者信息

Amoako Frank K, Sulieman Saad, Mühling Karl H

机构信息

Institute of Plant Nutrition and Soil Science, Kiel University, Hermann-Rodewald-Straße 2, 24118 Kiel, Germany.

出版信息

Plants (Basel). 2023 Nov 17;12(22):3888. doi: 10.3390/plants12223888.

Abstract

Phosphorus (P) is a major limiting factor for legume and symbiotic nitrogen fixation (SNF). Although overall adaptations of legumes to P supplementation have been extensively studied in connection with inorganic P, little information is currently available regarding nodulation or SNF responses to organic P (Po) in hydroponics. We investigated the mineral and carbon metabolism of Po-induced nodules of two contrasting faba bean varieties grown hydroponically under inorganic P (Pi), viz., in P-deficient (2 µM KHPO -Pi), sufficient-P (200 µM KHPO, +Pi), and phytic acid (200 µM, Po) conditions, and were inoculated with bv. 3841 and grown for 30 days. The results consistently reveal similar growth and biomass partitioning patterns between +Pi and Po, with both varying substantially from -Pi. In comparison, +Pi and Po observed equivalent accumulations of overall elemental P concentrations, with both increasing by 114 and 119%, respectively, relative to -Pi. A principal component analysis on metabolites showed a clear separation of the -Pi treatment from the others, with +Pi and Po correlating closely together, highlighting the nonsignificant differences between them. Additionally, the δN abundance of shoots, roots, and nodules was not significantly different between treatments and varieties and exhibited negative δN signatures for all tissues. Our study provides a novel perspective on mineral and carbon metabolism and their regulation of the growth, functioning, and reprogramming of nodules upon phytate supply.

摘要

磷(P)是豆类和共生固氮(SNF)的主要限制因素。尽管豆类对添加磷的总体适应性已在与无机磷相关的研究中得到广泛探讨,但目前关于水培条件下豆类结瘤或对有机磷(Po)的共生固氮反应的信息却很少。我们研究了两种对比鲜明的蚕豆品种在无机磷(Pi)条件下,即在缺磷(2 μM KH₂PO₄ -Pi)、磷充足(200 μM KH₂PO₄,+Pi)和植酸(200 μM,Po)条件下水培生长时,Po诱导的根瘤的矿物质和碳代谢情况。这些蚕豆接种了bv. 3841并培养30天。结果一致显示,+Pi和Po条件下的生长和生物量分配模式相似,且两者均与 -Pi条件下有很大差异。相比之下,+Pi和Po条件下总体元素磷浓度的积累相当,相对于 -Pi条件,两者分别增加了114%和119%。对代谢物进行的主成分分析表明,-Pi处理与其他处理明显分离,+Pi和Po紧密相关,突出了它们之间的无显著差异。此外,各处理和品种间地上部、根部和根瘤的δN丰度无显著差异,且所有组织均呈现负δN特征。我们的研究为矿物质和碳代谢及其对植酸供应时根瘤生长、功能和重编程的调控提供了新的视角。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/11ab/10675292/07fada3ca930/plants-12-03888-g001.jpg

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