The response of alfalfa cultivars to mobile aluminum toxicity

IF 1.1 4区 农林科学 Q3 AGRICULTURE, MULTIDISCIPLINARY
Aurelija Liatukienė, Regina Skuodienė
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引用次数: 0

Abstract

Alfalfa (Medicago sativa L.) as a perennial forage grass is widely adapted to favorable environmental conditions with wide range of soils including acid soils. The productivity traits of alfalfa in the soil without and with 1.8–14.7 mgAl/kg concentration of mobile Al were investigated. The study site was conducted at the Vėžaičiai Branch of the Lithuanian Research Centre for Agriculture and Forestry, 55°70 N lat., 21°49 E long. The experiment featuring 19 cultivars was established on a Balthygleyic Dystric Retisol in 2018. In 2019 and 2020, the productivity traits were evaluated: spring regrowth, plant height before flowering, stem number, seed yield, and fresh and dry matter yield. The mobile Al negatively influenced productivity traits of alfalfa in 2019 and 2020. Several cultivars of alfalfa were distinguished by tolerance to mobile Al and will be used for further selection for breeding. In 2020, the cultivar Europe from France was distinguished by spring regrowth, number of stems and fresh matter yield in the soil with mobile Al. The cultivar Ludelis from France differed by spring regrowth and height before flowering time in the soil with mobile Al in 2019–2020. The cultivar Skriveru from Latvia was the most yielding by seed yield in the soil without and with mobile Al in 2019. The Lithuanian cultivar Antanė was yielding by dry matter yield in the soil with and without mobile Al in 2019. The cultivar Žydrūnė from Lithuania was yielding by fresh and dry matter yield in the soil with and without mobile Al in 2020. This study on acid soils with and without mobile Al concentrations has revealed the differences of productivity traits under different environmental conditions of experimental years. Results of this study are important not only for Lithuania but also for the other lands of Europe where Retisol are prevails.

紫花苜蓿品种对流动铝毒性的反应
苜蓿(Medicago sativa L.)是一种多年生牧草,广泛适应包括酸性土壤在内的各种土壤的良好环境条件。研究了流动铝浓度为1.8 ~ 14.7 mgAl/kg和无流动铝浓度为1.8 ~ 14.7 mgAl/kg的土壤中紫花苜蓿的生产特性。研究地点设在北纬55°70°立陶宛农业和林业研究中心Vėžaičiai分处。,长21°49 E。该试验于2018年在Balthygleyic Dystric Retisol上建立,共有19个品种。在2019年和2020年,分别评价了春季再生率、花前株高、茎数、种子产量和鲜干物质产量。流动铝对2019年和2020年紫花苜蓿产量性状有负向影响。几个苜蓿品种对流动铝的耐受性有明显的区别,将用于进一步的选育。2020年,法国品种“欧洲”在流动Al土壤中的春季再生量、茎数和鲜物质产量存在差异。2019-2020年,法国品种“Ludelis”在流动Al土壤中的春季再生量和开花前高度存在差异。2019年,拉脱维亚的Skriveru品种在无流动人工智能和有流动人工智能的土壤中种子产量最高。2019年,立陶宛品种塔那那利市在有和没有流动铝的土壤中以干物质产量计算产量。2020年立陶宛品种Žydrūnė在有和无流动Al土壤中鲜物质和干物质产量比较。对有和无流动Al浓度的酸性土壤进行了研究,揭示了不同环境条件下试验年份的生产力性状差异。这项研究的结果不仅对立陶宛很重要,而且对雷索尔盛行的欧洲其他地区也很重要。
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来源期刊
Grassland Science
Grassland Science Agricultural and Biological Sciences-Agronomy and Crop Science
CiteScore
2.70
自引率
7.70%
发文量
38
审稿时长
>12 weeks
期刊介绍: Grassland Science is the official English language journal of the Japanese Society of Grassland Science. It publishes original research papers, review articles and short reports in all aspects of grassland science, with an aim of presenting and sharing knowledge, ideas and philosophies on better management and use of grasslands, forage crops and turf plants for both agricultural and non-agricultural purposes across the world. Contributions from anyone, non-members as well as members, are welcome in any of the following fields: grassland environment, landscape, ecology and systems analysis; pasture and lawn establishment, management and cultivation; grassland utilization, animal management, behavior, nutrition and production; forage conservation, processing, storage, utilization and nutritive value; physiology, morphology, pathology and entomology of plants; breeding and genetics; physicochemical property of soil, soil animals and microorganisms and plant nutrition; economics in grassland systems.
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