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一种创新的铁基芬顿堆肥改良剂可促进生菜幼苗(L.)的生长和初级代谢。

Growth and Primary Metabolism of Lettuce Seedlings ( L.) Are Promoted by an Innovative Iron-Based Fenton-Composted Amendment.

作者信息

Piro Amalia, Oliva Daniela, Nisticò Dante Matteo, Lania Ilaria, Basile Maria Rita, Chidichimo Giuseppe, Mazzuca Silvia

机构信息

Laboratory of Plant Biology and Plant Proteomics (Lab.Bio.Pro.Ve.), Department of Chemistry and Chemical Technologies, Università della Calabria, 87036 Rende, Italy.

Physical Chemistry (CFINABEC) Laboratory, Department of Chemistry and Chemical Technologies, Università della Calabria, 87036 Rende, Italy.

出版信息

Plants (Basel). 2023 Jun 7;12(12):2234. doi: 10.3390/plants12122234.

Abstract

Information regarding the physiological and molecular plant responses to the treatment with new biofertilizers is limited. In this study, a fast-composting soil amendment obtained from solid waste by means of a Fenton reaction was assessed to evaluate the effects on the growth of L. var. longifolia seedlings. Growth rate, root biomass, chlorophyll concentration, and total soluble proteins of seedlings treated with the 2% fast-composting soil amendment showed significant increases in comparison with the control seedlings. Proteomic analysis revealed that the soil amendment induced the up-regulation of proteins belonging to photosynthesis machinery, carbohydrate metabolism, and promoted energy metabolism. Root proteomics indicated that the fast-composting soil amendment strongly induced the organs morphogenesis and development; root cap development, lateral root formation, and post-embryonic root morphogenesis were the main biological processes enriched by the treatment. Overall, our data suggest that the addition of the fast-composting soil amendment formulation to the base soils might ameliorate plant growth by inducing carbohydrate primary metabolism and the differentiation of a robust root system.

摘要

关于植物对新型生物肥料处理的生理和分子反应的信息有限。在本研究中,评估了一种通过芬顿反应从固体废物中获得的快速堆肥土壤改良剂,以评价其对长叶莴苣幼苗生长的影响。与对照幼苗相比,用2%快速堆肥土壤改良剂处理的幼苗的生长速率、根生物量、叶绿素浓度和总可溶性蛋白均显著增加。蛋白质组学分析表明,土壤改良剂诱导了属于光合作用机制、碳水化合物代谢的蛋白质上调,并促进了能量代谢。根系蛋白质组学表明,快速堆肥土壤改良剂强烈诱导器官形态发生和发育;根冠发育、侧根形成和胚后根形态发生是该处理富集的主要生物学过程。总体而言,我们的数据表明,在基础土壤中添加快速堆肥土壤改良剂配方可能通过诱导碳水化合物初级代谢和健壮根系的分化来改善植物生长。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/21b1/10301099/6e05b97abeca/plants-12-02234-g001.jpg

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