Shahmarbiglou Hadi Hosseinzadeh, Razavi Seyed Mehdi
Department of Biology, Faculty of Science, University of Mohaghegh Ardabili, Ardabil, Iran.
Physiol Mol Biol Plants. 2024 May;30(5):791-805. doi: 10.1007/s12298-024-01460-7. Epub 2024 May 25.
Naringenin based nanocomposite alleviate the harmful effects of drought stress in Cuminum cyminum and enhance carefully the plant tolerance against drought condition with different mechanisms.
In the recent years, drought stress is considered as one of the most important stressful conditions for agricultural plants. Reducing the effects of drought on plants is a crucial need nowadays, which calls for innovative methods. Naringenin is one of the most known plant flavonoids with antioxidant properties. In the present work, a naringenin based nanocomposite containing carboxymethylcellulose (CMC) as carrier (CMC-Nar) with an average size of 65 nm were synthesized by coacervation method. In order to investigate the effect of CMC nanocomposites containing naringenin (CMC-Nar) and pure naringenin in modulating the effects of drought stress, cultivation of (varieties: Isfahan and Kashan) was carried out in greenhouse conditions. Drought stress was imposed as 30% of the field capacity. Various physiological, biochemical, and phytochemical assays were performed after treating the plants in drought conditions (30%). The results indicated that treatment of nanocomposites (CMC-Nar) and pure naringenin at drought conditions increased growth and photosynthetic parameters such as germination, shoot and root fresh weight, shoot dry weight, and chlorophyll content of the Cumin. Stress markers such as malondialdehyde, HO, and electrolyte leakage decreased under the treatment of narinjenin and especially nanocomposites (CMC-Nar) under drought conditions. Moreover, under same condition and treatments, some biochemical parameters including soluble sugar and total protein increased but the activity of antioxidant enzymes and the level of free amino acids has gone down. Compatible Solutes (Proline and glycine betaine) also increased. There was an increase in phytochemical parameters such as total phenols, flavonoids, anthocyanin, and tannins under naringenin and nanocomposites (CMC-Nar) treatment in drought conditions. In general, nanocomposites and pure naringenin reduced the harmful effects of drought stress, and the ameliorating impacts of nanocomposites (CMC-Nar) are more than pure naringenin. According to the results: In most cases, the impact of drought stress was modulated to a greater extent by (CMC-Nar) nanocomposites in the Isfahan variety compared to the Kashan variety. This research tries to propose a new method to reduce the effects of drought stress on .
The online version contains supplementary material available at 10.1007/s12298-024-01460-7.
基于柚皮素的纳米复合材料减轻了孜然芹干旱胁迫的有害影响,并通过不同机制精心增强了植物对干旱条件的耐受性。
近年来,干旱胁迫被认为是农业植物面临的最重要胁迫条件之一。如今,降低干旱对植物的影响是一项迫切需求,这需要创新方法。柚皮素是最知名的具有抗氧化特性的植物黄酮类化合物之一。在本研究中,通过凝聚法合成了一种以羧甲基纤维素(CMC)为载体、平均粒径为65nm的基于柚皮素的纳米复合材料(CMC-Nar)。为了研究含柚皮素的CMC纳米复合材料(CMC-Nar)和纯柚皮素对调节干旱胁迫影响的作用,在温室条件下种植了孜然芹(品种:伊斯法罕和卡尚)。将干旱胁迫设定为田间持水量的30%。在干旱条件(30%)下处理植物后,进行了各种生理、生化和植物化学分析。结果表明,在干旱条件下,纳米复合材料(CMC-Nar)和纯柚皮素处理提高了孜然芹的生长和光合参数,如发芽率、地上部和根部鲜重、地上部干重以及叶绿素含量。在干旱条件下,柚皮素尤其是纳米复合材料(CMC-Nar)处理使丙二醛、过氧化氢和电解质渗漏等胁迫标志物减少。此外,在相同条件和处理下,一些生化参数包括可溶性糖和总蛋白增加,但抗氧化酶活性和游离氨基酸水平下降。相容性溶质(脯氨酸和甘氨酸甜菜碱)也增加。在干旱条件下,柚皮素和纳米复合材料(CMC-Nar)处理使总酚、黄酮类化合物、花青素和单宁等植物化学参数增加。总体而言,纳米复合材料和纯柚皮素减轻了干旱胁迫的有害影响,且纳米复合材料(CMC-Nar)的改善作用大于纯柚皮素。根据结果:在大多数情况下,与卡尚品种相比,伊斯法罕品种中(CMC-Nar)纳米复合材料对干旱胁迫影响的调节作用更大。本研究试图提出一种减少干旱胁迫对孜然芹影响的新方法。
在线版本包含可在10.1007/s12298-024-01460-7获取的补充材料。