Department of Horticulture, West Pomeranian University of Technology, 3 Papieża Pawła VI Str., 71-459 Szczecin, Poland.
Department of Soil Science, Grassland Management and Environmental Chemistry, West Pomeranian University of Technology, Słowackiego 17 Str., 71-434 Szczecin, Poland.
Molecules. 2018 Apr 2;23(4):812. doi: 10.3390/molecules23040812.
Biopolymers have become increasingly popular as biostimulators of plant growth. One of them, oligo-alginate, is a molecule that regulates plant biological processes and may be used in horticultural practice as a plant growth regulator. Biostimulators are mainly used to improve plant tolerance to abiotic stresses, including salinity. The aim of the study was to assess the effects of salinity and oligo-alginate of various molecular masses on the growth and physiological activity of . The species is an ornamental and medicinal plant that has been used for a long time in the traditional medicine of South Africa. The bulbs of were coated using depolymerized sodium alginate of molecular mass 32,000; 42,000, and 64,000 g mol. All of these oligo-alginates fractions stimulated plant growth, and the effect was the strongest for the fraction of 32,000 g mol. This fraction was then selected for the second stage of the study, when plants were exposed to salt stress evoked by the presence of 100 mM NaCl. We found that the oligo-alginate coating mitigated the negative effects of salinity. Plants treated with the oligomer and watered with NaCl showed smaller reduction in the weight of the above-ground parts and bulbs, pigment content and antioxidant activity as compared with those not treated with the oligo-alginate. The study demonstrated for the first time that low molecular mass oligo-alginate may be used as plant biostimulator that limits negative effects of salinity in .
生物聚合物作为植物生长的生物刺激剂越来越受欢迎。其中一种寡聚海藻酸盐是一种调节植物生物过程的分子,可在园艺实践中用作植物生长调节剂。生物刺激剂主要用于提高植物对非生物胁迫的耐受性,包括盐度。本研究的目的是评估盐度和不同分子量的寡聚海藻酸盐对. 的生长和生理活性的影响。该物种是一种观赏和药用植物,在南非传统医学中已经使用了很长时间。使用分子量为 32,000、42,000 和 64,000 g/mol 的降解的海藻酸钠对 的鳞茎进行包被。所有这些寡聚海藻酸盐片段都刺激了植物的生长,而 32,000 g/mol 的片段的效果最强。然后,选择该片段进行研究的第二阶段,当植物暴露于 100 mM NaCl 引起的盐胁迫时。我们发现寡聚海藻酸盐涂层减轻了盐度的负面影响。与未用寡聚海藻酸盐处理的植物相比,用低聚物和盐水浇水的植物地上部分和鳞茎的重量减少较小,色素含量和抗氧化活性也较小。该研究首次表明,低分子量的寡聚海藻酸盐可用作植物生物刺激剂,可限制. 中盐度的负面影响。