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

Author:

Chen Lifei1,Yu Jiahui1ORCID,Lu Xi1,Wang Qi1,Wang Shizhuo1,Shan Yuze1,Liu Yang1,Meng Yuan1,Zhou Yunwei1

Affiliation:

1. College of Horticulture, Jilin Agricultural University, 2888 Xincheng Street, Changchun 130118, China

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.

Funder

Key Research and Development Project of Jilin Provincial Science and Technology Department

Natural Science Foundation of Jilin Provincial Science and Technology Department

Jilin Provincial Science and Technology Department’s Key Research and Development Projects “breeding and demonstration of good varieties (lines) of Changbai Mountain Iris”

Jilin Provincial Education Department’s scientific research project

Publisher

MDPI AG

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