Iris typhifolia Responses to Saline–Alkali Stress: Germination, Antioxidant Activity, Hormones, and Photosynthetic Performance

IF 4.7 3区 材料科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC ACS Applied Electronic Materials Pub Date : 2024-06-04 DOI:10.3390/horticulturae10060588
Lifei Chen, Jiahui Yu, Xi Lu, Qi Wang, Shizhuo Wang, Yuze Shan, Yang Liu, Yuan Meng, Yunwei Zhou
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Abstract

Iris typhifolia Kitag is a perennial herbaceous species with high ornamental and applied value. Elucidating the mechanism of saline–alkali tolerance in Iris is crucial for their promotion in saline–alkali areas. Saline–alkali stress is one of the factors that affects plant growth, which has become a significant global issue. In this study, we measured the physiological and biochemical indexes of I. typhifolia, through germination and potting trials, to evaluate the resistance of I. typhifolia to different levels of artificial saline–alkali stress (0, 50, 100, 150, and 200 mmol·L−1). The results showed that artificial saline–alkali stress negatively impacted germination parameters, cell membrane integrity, and photosynthetic parameters. Different trends in osmoregulatory substances and endogenous hormones were observed. It was shown that I. typhifolia had a potential adaptability to the saline–alkali environment by enhancing its internal defense mechanism. Based on regression analyses, the germination threshold of I. typhifolia was calculated to be 87.15 mmol·L−1, which provided a theoretical basis for the application in soil saline–alkalization areas.
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鸢尾对盐碱胁迫的反应:发芽、抗氧化活性、激素和光合作用表现
鸢尾(Iris typhifolia Kitag)是一种多年生草本植物,具有很高的观赏和应用价值。阐明鸢尾耐盐碱的机理对其在盐碱地区的推广至关重要。盐碱胁迫是影响植物生长的因素之一,已成为一个重要的全球性问题。本研究通过发芽试验和盆栽试验,测定了鸢尾的生理生化指标,以评价鸢尾对不同水平人工盐碱胁迫(0、50、100、150和200 mmol-L-1)的抗性。结果表明,人工盐碱胁迫对发芽参数、细胞膜完整性和光合作用参数有负面影响。观察到渗透调节物质和内源激素的不同变化趋势。结果表明,I. typhifolia 通过增强内部防御机制对盐碱环境具有潜在的适应能力。根据回归分析,计算出I. typhifolia的发芽阈值为87.15 mmol-L-1,为其在土壤盐碱化地区的应用提供了理论依据。
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来源期刊
CiteScore
7.20
自引率
4.30%
发文量
567
期刊介绍: ACS Applied Electronic Materials is an interdisciplinary journal publishing original research covering all aspects of electronic materials. The journal is devoted to reports of new and original experimental and theoretical research of an applied nature that integrate knowledge in the areas of materials science, engineering, optics, physics, and chemistry into important applications of electronic materials. Sample research topics that span the journal's scope are inorganic, organic, ionic and polymeric materials with properties that include conducting, semiconducting, superconducting, insulating, dielectric, magnetic, optoelectronic, piezoelectric, ferroelectric and thermoelectric. Indexed/​Abstracted: Web of Science SCIE Scopus CAS INSPEC Portico
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