Impact of pea-wheat intercropping on grain ionome in relation with changes in Pseudomonas spp. and Enterobacterales abundances

IF 3.9 2区 农林科学 Q1 AGRONOMY Plant and Soil Pub Date : 2024-08-10 DOI:10.1007/s11104-024-06861-x
Amélie Semblat, Cem Turanoglu, Céline Faivre-Primot, Jean-Paul Lemaître, Damien Marchand, Valérie Dufayet, Patrice Rouet, Laure Avoscan, Sylvie Mazurier, Philippe Lemanceau, Etienne-Pascal Journet, Barbara Pivato
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Abstract

Background and aims

Cereal-legume intercropping (IC) is proposed to address the challenges of increasing yields and improving crop nutrient quality, crucial for food security and human health. This study aimed to characterize the impact of pea-wheat IC on grain ionome composition, and asses its potential relation with the abundance of Pseudomonas spp. and Enterobacterales in plant roots.

Methods

In a field experiment, four pea varieties were cultivated in sole- or intercropping with wheat in two different soil types. Grain ionome was analysed by mass spectrometry, while Pseudomonas spp. and Enterobacterales abundances were quantified by qPCR.

Results

Pea grains intercropped with wheat showed increased concentrations of Ca, Mg, and Mo in one soil type, and higher Mn and Ni concentrations and total grain content in another. Wheat grains intercropped with peas, exhibited increased Cu, Fe, Mn, N, S, and Zn concentrations and/or total grain content, only in one soil type. Pseudomonas spp. showed increased abundance in pea root tissues when intercropped with wheat, specifically in one soil type. Pseudomonas spp. appeared to affect K, Fe, and Zn concentrations or total content in pea grains, depending on the cropping system.

Conclusion

These findings suggest that IC can enhance specific element concentrations and/or total grain content in pea and wheat grains, upon soil type. Pseudomonas spp. may facilitate nutrient uptake and translocation to grains. Further research is needed to understand the mechanisms behind element accumulation in IC grains and to explore the potential benefits of IC for plant nutrition and growth.

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豌豆-小麦间作对谷物离子组的影响与假单胞菌属和肠杆菌丰度变化的关系
背景与目的谷物-豆类间作(IC)被提出来应对提高产量和改善作物营养质量的挑战,这对粮食安全和人类健康至关重要。本研究旨在描述豌豆-小麦间作对谷物离子组组成的影响,并评估其与植物根部假单胞菌属和肠杆菌丰度的潜在关系。结果在一种土壤类型中,与小麦间作的豌豆籽粒中钙、镁和钼的浓度增加,而在另一种土壤类型中,锰和镍的浓度和籽粒总含量较高。与豌豆间作的小麦粒仅在一种土壤中表现出铜、铁、锰、氮、硒和锌浓度和/或总粒含量的增加。豌豆与小麦间作时,假单胞菌属在豌豆根部组织中的丰度增加,特别是在一种土壤类型中。假单胞菌似乎会影响豌豆籽粒中钾、铁和锌的浓度或总含量,具体取决于种植系统。假单胞菌属可能会促进养分的吸收和向谷粒的转移。要了解集成电路谷物中元素积累背后的机制并探索集成电路对植物营养和生长的潜在益处,还需要进一步的研究。
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来源期刊
Plant and Soil
Plant and Soil 农林科学-农艺学
CiteScore
8.20
自引率
8.20%
发文量
543
审稿时长
2.5 months
期刊介绍: Plant and Soil publishes original papers and review articles exploring the interface of plant biology and soil sciences, and that enhance our mechanistic understanding of plant-soil interactions. We focus on the interface of plant biology and soil sciences, and seek those manuscripts with a strong mechanistic component which develop and test hypotheses aimed at understanding underlying mechanisms of plant-soil interactions. Manuscripts can include both fundamental and applied aspects of mineral nutrition, plant water relations, symbiotic and pathogenic plant-microbe interactions, root anatomy and morphology, soil biology, ecology, agrochemistry and agrophysics, as long as they are hypothesis-driven and enhance our mechanistic understanding. Articles including a major molecular or modelling component also fall within the scope of the journal. All contributions appear in the English language, with consistent spelling, using either American or British English.
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