Evaluation of Achillea, Matricaria, and Anthemis plants following selection for drought tolerance at seedling stages

IF 0.9 Q4 ECOLOGY Folia Oecologica Pub Date : 2021-12-30 DOI:10.2478/foecol-2022-0009
P. S. Shanjani, Leila Rasoulzadeh, H. Javadi
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Abstract

Abstract The genetic potentials of eight species of Achillea (A. millefolium, A. fillipendulla, A. biebersteinii, A. nobilis, A. eriophora), Matricaria (M. ricotita), and Anthemis (An. haussknechtii and An. tinctoria) under drought conditions during the seedling stage were measured. Non-ionic water-soluble polymer polyethylene glycol (PEG, molecular weight 6000) was used to simulate water stress at five osmotic potential levels (0, –0.3, –0.6, –0.9, and –1.2 MPa). An acceptable threshold value for germination was osmotic potential –0.6 MPa, and the modest osmotic potential was –1.2 MPa for studied taxa. Seedlings of germinated at two control and osmotic potential –0.6 MPa (as an acceptable threshold value for germination) treatments were sowed in a field under rainfed conditions. Genetic differentiation of control plants (CP) versus early selected plants (ESP, germinated at osmotic potential –0.6 MPa) was studied using morphological, physiological, and molecular (ISSR) markers. No significant differences were observed between morphological traits of CP and ESP in all species, however, days to full flowering shortened in ESP. The physiological results demonstrate that under rainfed conditions, the ESP, in a quick response, collect osmolytes and amplify the activity of antioxidative enzymes to survive drought. The genetic relationship in the group of genotypes, that ISSR marker set it out, is affiliated to taxon even though AMOVA showed a partial differentiation between CP and ESP groups (21%). It was concluded that the selection of tolerating individuals at the seedling stage represents a likely positive strategy to have higher drought tolerance feature in plants under rainfed conditions.
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Achillea、Matricaria和Anthemis植物在苗期抗旱性选择后的评价
摘要测定了八种Achillea(A.millefolium、A.filipendulla、A.biebersteinii、A.nobilis、A.eriophora)、Matricaria(M.ricotita)和Anthemis(An.hausknechti和An.tinuctoria)在干旱条件下的苗期遗传潜力。非离子水溶性聚合物聚乙二醇(PEG,分子量6000)用于模拟五个渗透势水平(0、-0.3、-0.6、-0.9和-1.2 MPa)下的水胁迫。可接受的发芽阈值是渗透势-0.6MPa,研究分类群的适度渗透势为-1.2MPa。在两种对照和渗透电位-0.6MPa(作为可接受的发芽阈值)处理下发芽的幼苗在降雨条件下播种在田地中。使用形态、生理和分子(ISSR)标记研究了对照植物(CP)与早期选择植物(ESP,在渗透电位-0.6MPa下发芽)的遗传分化。在所有物种中,CP和ESP的形态特征没有显著差异,但ESP的开花天数缩短。生理结果表明,在降雨条件下,ESP能迅速收集渗透液并增强抗氧化酶的活性,从而在干旱中生存。ISSR标记确定的基因型组中的遗传关系属于分类单元,尽管AMOVA在CP组和ESP组之间显示出部分分化(21%)。结果表明,在幼苗期选择耐受个体可能是一种积极的策略,可以使植物在降雨条件下具有更高的耐旱性。
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来源期刊
Folia Oecologica
Folia Oecologica Agricultural and Biological Sciences-Agricultural and Biological Sciences (miscellaneous)
CiteScore
2.50
自引率
15.40%
发文量
12
审稿时长
38 weeks
期刊介绍: Folia oecologica is a continuation of the journal Folia dendrologica published in the years 1974 - 1997. Folia oecologica is an international scientific journal. It has published original scientific works in the field of ecology oriented toward forest ecosystems, natural and urbanized environments, plants and animals.
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