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硅在缓解水培玉米品种“优异”硼毒性及增强其生长和生理特性方面的作用

Role of silicon in alleviating boron toxicity and enhancing growth and physiological traits in hydroponically cultivated Zea mays var. Merit.

作者信息

Behtash Farhad, Mogheri Farima, Aghaee Ahmad, Seyed Hajizadeh Hanifeh, Kaya Ozkan

机构信息

Department of Horticulture, Faculty of Agriculture, University of Maragheh, Maragheh, 55136-553, Iran.

Department of Biology, Faculty of Science, University of Maragheh, Maragheh, Iran.

出版信息

BMC Plant Biol. 2024 Jun 14;24(1):550. doi: 10.1186/s12870-024-05275-2.

Abstract

BACKGROUND

Boron (B) is a micronutrient, but excessive levels can cause phytotoxicity, impaired growth, and reduced photosynthesis. B toxicity arises from over-fertilization, high soil B levels, or irrigation with B-rich water. Conversely, silicon (Si) is recognized as an element that mitigates stress and alleviates the toxic effects of certain nutrients. In this study, to evaluate the effect of different concentrations of Si on maize under boron stress conditions, a factorial experiment based on a randomized complete block design was conducted with three replications in a hydroponic system. The experiment utilized a nutrient solution for maize var. Merit that contained three different boron (B) concentrations (0.5, 2, and 4 mg L) and three Si concentrations (0, 28, and 56 mg L).

RESULTS

Our findings unveiled that exogenous application of B resulted in a substantial escalation of B concentration in maize leaves. Furthermore, B exposure elicited a significant diminution in fresh and dry plant biomass, chlorophyll index, chlorophyll a (Chl a), chlorophyll b (Chl b), carotenoids, and membrane stability index (MSI). As the B concentration augmented, malondialdehyde (MDA) content and catalase (CAT) enzyme activity exhibited a concomitant increment. Conversely, the supplementation of Si facilitated an amelioration in plant fresh and dry weight, total carbohydrate, and total soluble protein. Moreover, the elevated activity of antioxidant enzymes culminated in a decrement in hydrogen peroxide (HO) and MDA content. In addition, the combined influence of Si and B had a statistically significant impact on the leaf chlorophyll index, total chlorophyll (a + b) content, Si and B accumulation levels, as well as the enzymatic activities of guaiacol peroxidase (GPX), ascorbate peroxidase (APX), and HO levels. These unique findings indicated the detrimental impact of B toxicity on various physiological and biochemical attributes of maize, while highlighting the potential of Si supplementation in mitigating the deleterious effects through modulation of antioxidant machinery and biomolecule synthesis.

CONCLUSIONS

This study highlights the potential of Si supplementation in alleviating the deleterious effects of B toxicity in maize. Increased Si consumption mitigated chlorophyll degradation under B toxicity, but it also caused a significant reduction in the concentrations of essential micronutrients iron (Fe), copper (Cu), and zinc (Zn). While Si supplementation shows promise in counteracting B toxicity, the observed decrease in Fe, Cu, and Zn concentrations warrants further investigation to optimize this approach and maintain overall plant nutritional status.

摘要

背景

硼(B)是一种微量营养素,但过量会导致植物毒性、生长受损和光合作用降低。硼中毒源于过度施肥、土壤硼含量高或用富含硼的水灌溉。相反,硅(Si)被认为是一种能减轻胁迫并缓解某些营养素毒性作用的元素。在本研究中,为评估不同浓度的硅对硼胁迫条件下玉米的影响,在水培系统中采用随机完全区组设计进行了析因试验,重复三次。该试验使用了针对玉米品种“优点”的营养液,其中包含三种不同的硼(B)浓度(0.5、2和4毫克/升)和三种硅浓度(0、28和56毫克/升)。

结果

我们的研究结果表明,外源施用硼导致玉米叶片中硼浓度大幅升高。此外,硼暴露导致植物鲜重和干重、叶绿素指数、叶绿素a(Chl a)、叶绿素b(Chl b)、类胡萝卜素和膜稳定性指数(MSI)显著降低。随着硼浓度的增加丙二醛(MDA)含量和过氧化氢酶(CAT)活性随之增加。相反,补充硅有助于改善植物鲜重和干重、总碳水化合物和总可溶性蛋白。此外,抗氧化酶活性的提高最终导致过氧化氢(HO)和MDA含量降低。此外,硅和硼的联合影响对叶片叶绿素指数总叶绿素(a + b)含量、硅和硼积累水平以及愈创木酚过氧化物酶(GPX)、抗坏血酸过氧化物酶(APX)的酶活性和HO水平具有统计学显著影响。这些独特的发现表明硼中毒对玉米的各种生理和生化特性有不利影响,同时突出了补充硅通过调节抗氧化机制和生物分子合成来减轻有害影响的潜力。

结论

本研究突出了补充硅减轻玉米硼中毒有害影响的潜力。增加硅的用量可减轻硼中毒下的叶绿素降解,但也导致必需微量营养素铁(Fe)、铜(Cu)和锌(Zn)的浓度显著降低。虽然补充硅在对抗硼中毒方面显示出前景,但观察到的铁、铜和锌浓度的降低值得进一步研究,以优化这种方法并维持植物的整体营养状况。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7bae/11177410/defc5165e789/12870_2024_5275_Fig1_HTML.jpg

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