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解磷细菌在低磷水平下对[物种名称]生长和基因表达的显著影响。 (注:原文中“ spp.”表述有误,推测可能是某一具体物种的学名,这里保留原文错误表述形式进行翻译)

Large effect of phosphate-solubilizing bacteria on the growth and gene expression of spp. at low phosphorus levels.

作者信息

Koczorski Piotr, Furtado Bliss Ursula, Baum Christel, Weih Martin, Ingvarsson Pär, Hulisz Piotr, Hrynkiewicz Katarzyna

机构信息

Department of Microbiology, Faculty of Biological and Veterinary Sciences, Nicolaus Copernicus University, Torun, Poland.

Soil Science, Faculty of Agricultural and Environmental Sciences, University of Rostock, Rostock, Germany.

出版信息

Front Plant Sci. 2023 Aug 29;14:1218617. doi: 10.3389/fpls.2023.1218617. eCollection 2023.

Abstract

Phosphorus is one of the most important nutrients required for plant growth and development. However, owing to its low availability in the soil, phosphorus is also one of the most difficult elements for plants to acquire. Phosphorus released into the soil from bedrock quickly becomes unavailable to plants, forming poorly soluble complexes. Phosphate-solubilizing bacteria (PSB) can solubilize unavailable phosphorus-containing compounds into forms in which phosphorus is readily available, thus promoting plant growth. In this study, two willow species, cv. Loden and × cv. Tora, were inoculated with two selected bacterial strains, and spp., to evaluate the plant growth parameters and changes in gene expression in the presence of different concentrations of tricalcium phosphate: 0 mM (NP), 1 mM (LP), and 2 mM (HP). Inoculation with PSB increased root, shoot and leaf biomass, and for the HP treatment, significant changes in growth patterns were observed. However, the growth responses to plant treatments tested depended on the willow species. Analysis of the leaf transcriptomes of the phosphate-solubilizing bacterium-inoculated plants showed a large variation in gene expression between the two willow species. For the Tora willow species, upregulation of genes was observed, particularly for those involved in pathways related to photosynthesis, and this effect was strongly influenced by bacterial phosphate solubilization. The Loden willow species was characterized by a general downregulation of genes involved in pathway activity that included ion transport, transcription regulation and chromosomes. The results obtained in this study provide an improved understanding of the dynamics of growth and gene expression under the influence of PSB, contributing to an increase in yield and phosphorus-use efficiency.

摘要

磷是植物生长发育所需的最重要养分之一。然而,由于其在土壤中的有效性较低,磷也是植物最难获取的元素之一。从基岩释放到土壤中的磷很快就会变得无法被植物利用,形成难溶性复合物。解磷细菌(PSB)可以将难溶性含磷化合物溶解为植物易于利用的形式,从而促进植物生长。在本研究中,将两种柳树品种,即Loden品种和×Tora品种,接种两种选定的细菌菌株,即 和 spp.,以评估在不同浓度磷酸三钙(0 mM(NP)、1 mM(LP)和2 mM(HP))存在下的植物生长参数和基因表达变化。接种PSB增加了根、茎和叶的生物量,对于HP处理,观察到生长模式有显著变化。然而,对所测试的植物处理的生长反应取决于柳树品种。对接种解磷细菌的植物的叶片转录组分析表明,两种柳树品种之间的基因表达存在很大差异。对于Tora柳树品种,观察到基因上调,特别是那些参与光合作用相关途径的基因,并且这种效应受到细菌解磷的强烈影响。Loden柳树品种的特征是参与途径活性的基因普遍下调,这些途径包括离子运输、转录调控和染色体。本研究获得的结果有助于更好地理解在PSB影响下柳树的生长动态和基因表达,有助于提高产量和磷利用效率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5924/10495996/6ebec67ca844/fpls-14-1218617-g001.jpg

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