施用常规无机氮后与杜鹃共耕对水稻全株代谢组的影响。

IF 4.8 1区 农林科学 Q1 AGRONOMY
Rice Pub Date : 2025-06-09 DOI:10.1186/s12284-025-00788-2
Elena Consorti, Alma Costarelli, Sara Cannavò, Martina Cerri, Maria Cristina Valeri, Lara Reale, Antonietta Saccomanno, Chiara Paleni, Veronica Gregis, Martin M Kater, Federico Brilli, Francesco Paolocci, Andrea Ghirardo
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引用次数: 0

摘要

杜鹃花是一种漂浮的蕨类植物,几个世纪以来一直被用作生物肥料,用无机氮丰富土壤,提高水稻产量。然而,直到最近,人们才开始深入研究杜鹃花与共栽培水稻之间的分子相互作用。在本研究中,我们利用低浓度和恒定浓度的无机氮,将水稻与杜鹃花一起种植。我们采用非靶向代谢组学、化学计量学和分子网络相结合的方法分析了共栽培对水稻根和叶代谢组学的影响,并对杜鹃花释放到生长介质中的代谢物进行了标注。我们的分析表明,杜鹃花在培养基中可以合成和释放多种代谢产物,主要包括小肽(即二肽和三肽)和类黄酮,这些代谢产物可能促进了水稻的生长。我们还观察到水稻代谢产物的系统性上调,首先在根,然后在叶。代谢组学分析表明,在共栽培初期,绿豆对水稻的影响主要表现在根系中小肽、脂质和碳水化合物的积累,以及叶片中黄酮类苷和碳水化合物的积累。与这些结果一致的是,水稻根系的转录组学分析表明,编码小肽和脂质转运蛋白的基因以及参与氨基酸回收和生物合成途径的基因的表达发生了显著变化。总的来说,我们的研究提供了新的见解,杜鹃花对水稻的有益和促进生长的作用。了解Azolla在水稻共栽培中作为生物刺激素的分子机制将有助于开发更可持续和更环保的增产技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Co-Cultivation with Azolla Affects the Metabolome of Whole Rice Plant Beyond Canonical Inorganic Nitrogen Fertilization.

Azolla spp. are floating ferns used for centuries as biofertilizers to enrich the soil with inorganic nitrogen and improve rice yields. However, the molecular interactions between Azolla and co-cultivated rice plants only recently started to be thoroughly investigated. In this study, we exploited an experiment in which rice plants were grown together with Azolla by maintaining a low and constant concentration of inorganic nitrogen. We employed a combination of non-targeted metabolomics, chemometrics, and molecular networking to dissect the impact of Azolla co-cultivation on the metabolome of rice roots- and leaves, as well as to annotate the metabolites released by Azolla into the growing medium. Our analyses showed that Azolla can synthesize and release a broad range of metabolites in the culture medium, mainly comprising small peptides (i.e., di- and tri-peptides) and flavonoids, that may have stimulated the rice plant growth. We also observed a systemic response in the upregulation of rice metabolites, first in the roots and then in the leaves. Metabolomics analysis indicated that during the first stages of co-cultivation, the impact of Azolla on rice mainly resulted in the accumulation of small peptides, lipids and carbohydrates in roots, as well as flavonoid glycosides and carbohydrates in leaves. Consistent with these results, transcriptomics analysis of rice roots indicated significant changes in the expressions of genes coding for small peptide and lipid transporters and genes involved in the pathways of amino acid salvage and biosynthesis. Overall, our study provides new insights into Azolla's beneficial and growth-promoting effects on rice. Understanding the molecular mechanisms by which Azolla functions as a biostimulant in rice co-culture will facilitate the development of more sustainable and environmentally friendly techniques to increase yields.

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来源期刊
Rice
Rice AGRONOMY-
CiteScore
10.10
自引率
3.60%
发文量
60
审稿时长
>12 weeks
期刊介绍: Rice aims to fill a glaring void in basic and applied plant science journal publishing. This journal is the world''s only high-quality serial publication for reporting current advances in rice genetics, structural and functional genomics, comparative genomics, molecular biology and physiology, molecular breeding and comparative biology. Rice welcomes review articles and original papers in all of the aforementioned areas and serves as the primary source of newly published information for researchers and students in rice and related research.
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