Phytohormone-Based Biostimulants as an Alternative Mitigating Strategy for Horticultural Plants Grown Under Adverse Multi-Stress Conditions: Common South African Stress Factors

Z. Khetsha, E. van der Watt, Maxson Masowa, Lesetja Legodi, Sanelisiwe Satshi, Lethabo Sadiki, Kenoni Moyo
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Abstract

Worldwide, it has been recorded extensively that plants are subjected to severe abiotic and biotic stressors. The scientific research community has widely reported that multi-abiotic stressors cause horticultural crop losses, accounting for at least 50 to 70% of the crop yield and quality losses. Therefore, this review focused on the detrimental effects caused by abiotic stress factors occurring in single-, combined- and multi-cell stresses on horticultural plants worldwide, along with the best production systems practices for mitigation during and post-single and combined abiotic or multi-stress damages. A conclusion and recommendation could be reached using the pool of research material, which constituted research articles, reviews, book chapters, thesis, research short communications and industrial short communications from at least twenty-five years ago. Findings showed that some of the leading abiotic stresses are single- and combined abiotic stressors like water deficit, salinity, soil pH, phosphate deficiency, wounding, soil density and pot size. Established commercial and smallholder farmers are globally adapting to plant growth regulators and biostimulants as part of their production systems. However, as much as the effectiveness of biostimulants containing humic acids, algal extracts, plant growth-promoting microorganisms and phytohormones has been reported to promote plant development under multi-stress, only a few studies are focusing on organic phytohormone-based biostimulants on horticultural crops grown under adverse multi stress factoring. In conclusion, the review recommends alternative solutions for emerging South African farmers and growers who cannot afford agricultural insurance options and energy alternatives on the common single- and combined abiotic- or multi-stress-factors.
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以植物激素为基础的生物刺激剂作为在多重胁迫条件下种植的园艺植物的替代缓解策略:南非常见的胁迫因素
据广泛记录,全世界的植物都受到严重的非生物和生物胁迫。科学研究界广泛报道,多重非生物胁迫造成园艺作物损失,至少占作物产量和质量损失的 50% 至 70%。因此,本综述重点关注单细胞、组合细胞和多细胞胁迫中出现的非生物胁迫因子对全球园艺植物造成的不利影响,以及在单细胞和组合非生物或多细胞胁迫损害期间和损害后减轻影响的最佳生产系统实践。这些研究材料包括至少二十五年前的研究文章、综述、书籍章节、论文、研究短文和工业短文。研究结果表明,一些主要的非生物胁迫是单一的和综合的非生物胁迫,如缺水、盐度、土壤 pH 值、磷酸盐缺乏、伤口、土壤密度和花盆大小。在全球范围内,成熟的商业农民和小农都在使用植物生长调节剂和生物刺激剂,作为其生产系统的一部分。然而,尽管含有腐殖酸、藻类提取物、植物生长促进微生物和植物激素的生物刺激剂在多重胁迫下促进植物生长发育的有效性已被报道,但只有少数研究关注基于有机植物激素的生物刺激剂在园艺作物生长过程中的多重胁迫不利因素。总之,针对常见的单一和综合非生物或多重胁迫因素,本综述为无力购买农业保险和能源替代品的新兴南非农民和种植者推荐了替代解决方案。
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