Assessing the Efficacy of Cyanobacterial Strains as Oryza sativa Growth Biostimulants in Saline Environments

Plants Pub Date : 2024-09-06 DOI:10.3390/plants13172504
Meruyert O. Bauenova, Fariza K. Sarsekeyeva, Assemgul K. Sadvakasova, Bekzhan D. Kossalbayev, Ramazan Mammadov, Aziza I. Token, Huma Balouch, Pavel Pashkovskiy, Yoong Kit Leong, Jo-Shu Chang, Suleyman I. Allakhverdiev
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Abstract

Soil salinity, which affects plant photosynthesis mechanisms, significantly limits plant productivity. Soil microorganisms, including cyanobacteria, can synthesize various exometabolites that contribute to plant growth and development in several ways. These microorganisms can increase plant tolerance to salt stress by secreting various phytoprotectants; therefore, it is highly relevant to study soil microorganisms adapted to high salinity and investigate their potential to increase plant resistance to salt stress. This study evaluated the antioxidant activity of four cyanobacterial strains: Spirulina platensis Calu-532, Nostoc sp. J-14, Trichormus variabilis K-31, and Oscillatoria brevis SH-12. Among these, Nostoc sp. J-14 presented the highest antioxidant activity. Their growth-stimulating effects under saline conditions were also assessed under laboratory conditions. These results indicate that Nostoc sp. J-14 and T. variabilis K-31 show significant promise in mitigating the harmful effects of salinity on plant size and weight. Both strains notably enhanced the growth of Oryza sativa plants under saline conditions, suggesting their potential as biostimulants to improve crop productivity in saline environments. This research underscores the importance of understanding the mechanisms by which cyanobacteria increase plant tolerance to salt stress, paving the way for sustainable agricultural practices in saline areas.
评估蓝藻菌株作为盐碱环境中黑麦草生长生物刺激剂的功效
土壤盐分会影响植物的光合作用机制,严重限制植物的生产力。包括蓝藻在内的土壤微生物可合成多种外代谢产物,通过多种方式促进植物的生长和发育。这些微生物可以通过分泌各种植物保护剂来提高植物对盐胁迫的耐受性;因此,研究适应高盐度的土壤微生物并探讨其提高植物对盐胁迫的耐受性的潜力是非常有意义的。本研究评估了四种蓝藻菌株的抗氧化活性:J-14, Trichormus variabilis K-31, and Oscillatoria brevis SH-12.其中,Nostoc sp. J-14 的抗氧化活性最高。还在实验室条件下评估了它们在盐碱条件下的生长刺激作用。这些结果表明,Nostoc sp. J-14 和 T. variabilis K-31 在减轻盐度对植物大小和重量的有害影响方面具有显著的前景。在盐碱条件下,这两种菌株都能显著促进旱金莲植物的生长,这表明它们具有作为生物刺激剂提高盐碱环境下作物产量的潜力。这项研究强调了了解蓝藻提高植物对盐胁迫耐受性的机制的重要性,为盐碱地区的可持续农业实践铺平了道路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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