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硅与锰在高纤维含量能源甘蔗营养和生理方面的相互作用。

Interaction of silicon and manganese in nutritional and physiological aspects of energy cane with high fiber content.

机构信息

Department of Agricultural Production Sciences, Sector of Soils and Fertilizers, Laboratory of Plant Nutrition, São Paulo State University (UNESP), Via de Acesso Prof. Paulo Donato Castellane, s/n, Jaboticabal, São Paulo, 14884-900, Brazil.

Department of Biology Applied to Agriculture, Laboratory of Plant Physiology, São Paulo State University (UNESP), Via de Acesso Prof. Paulo Donato Castellane, s/n, Jaboticabal, São Paulo, 14884900, Brazil.

出版信息

BMC Plant Biol. 2022 Jul 29;22(1):374. doi: 10.1186/s12870-022-03766-8.

Abstract

BACKGROUND

Silicon (Si) is a multiple stress attenuator element in plants, however more research is needed to elucidate the actions in the plants defense system with low nutrition of manganese (Mn) for a prolonged period, and the attenuation mechanisms involved in the effects of Mn deficiency on energy cane with high fiber content. Thus, the objective of this study was to evaluate whether Si reduces the oxidative stress of the energy cane grown in low Mn in nutrient solution, to mitigate the effects of Mn deficiency, improving enzymatic and non-enzymatic defense, uptake of Mn the plant growth.

METHODS

An experiment was carried out with pre-sprouted seedlings of Saccharum spontaneum L. in a 2 × 2 factorial scheme in five replications in which the plants were grown under sufficiency (20.5 μmol L) and deficiency (0.1 μmol L) of Mn combined with the absence and presence of Si (2.0 mmol L) for 160 days from the application of the treatments. The following parameters were evaluated: accumulation of Mn and Si, HO MDA, activity of SOD and GPOX, total phenol content, pigments, and quantum efficiency of PSII.

RESULTS

Mn deficiency induced the oxidative stress for increase the HO and MDA content in leaves of plants and reduce the activity of antioxidant enzymes and total phenols causing damage to quantum efficiency of photosystem II and pigment content. Si attenuated the effects of Mn deficiency even for a longer period of stress by reducing HO (18%) and MDA (32%) content, and increased the Mn uptake efficiency (53%), SOD activity (23%), GPOX (76%), phenol contents, thus improving growth.

CONCLUSIONS

The supply of Si promoted great nutritional and physiological improvements in energy cane with high fiber content in Mn deficiency. The results of this study propose the supply of Si via fertirrigation as a new sustainable strategy for energy cane cultivation in low Mn environments.

摘要

背景

硅(Si)是植物的多种应激衰减元素,然而,需要更多的研究来阐明在植物防御系统中,锰(Mn)长期处于低营养水平时的作用,以及在高纤维含量的能源甘蔗中,锰缺乏对其影响所涉及的衰减机制。因此,本研究的目的是评估硅是否能减轻能源甘蔗在低锰营养溶液中的氧化应激,减轻锰缺乏的影响,改善酶和非酶防御,提高植物对锰的吸收和生长。

方法

在 2×2 析因设计方案中,对 Pre-sprouted 甘蔗(Saccharum spontaneum L.)幼苗进行了一项实验,共进行了五次重复。在 160 天的处理期间,植物在锰充足(20.5 μmol L)和缺乏(0.1 μmol L)条件下,结合硅(2.0 mmol L)的有无生长。评估了以下参数:Mn 和 Si 的积累、HO MDA、SOD 和 GPOX 的活性、总酚含量、色素和 PSII 的量子效率。

结果

锰缺乏会导致氧化应激,增加叶片中的 HO 和 MDA 含量,降低抗氧化酶和总酚的活性,从而导致 PSII 量子效率和色素含量受损。硅即使在较长时间的胁迫下,也能减轻锰缺乏的影响,降低 HO(18%)和 MDA(32%)的含量,提高 Mn 的吸收效率(53%)、SOD 活性(23%)、GPOX(76%)、酚类物质含量,从而促进生长。

结论

在锰缺乏的情况下,硅的供应促进了高纤维含量的能源甘蔗在营养和生理方面的显著改善。本研究结果提出了通过施肥供应硅作为一种新的可持续策略,用于在低锰环境中种植能源甘蔗。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dd32/9335997/8f9a5bf50c16/12870_2022_3766_Fig1_HTML.jpg

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