Molecular analysis of St. Augustinegrass cultivar mixtures composition over time and latitude

IF 2 3区 农林科学 Q2 AGRONOMY Crop Science Pub Date : 2024-09-23 DOI:10.1002/csc2.21370
Rocio van der Laat, Ramon G. Leon, Adam G. Dale, Beatriz Gouveia, Esdras M. Carbajal, Marco Schiavon, J. Bryan Unruh, Basil V. Iannone, Susana R. Milla‐Lewis
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Abstract

St. Augustinegrass [Stenotaphrum secundatum (Walt.) Kuntze] is commonly planted in residential and commercial landscapes as a cultivar monoculture predisposing this lawn to pest invasion and high‐maintenance inputs. Researchers have suggested that increasing genetic diversity by growing cultivars in mixtures may increase turfgrass stress resilience. However, the stability and uniformity of those mixtures has not been studied. The present study was carried out to evaluate the stability of St. Augustinegrass cultivars mixtures over time and across three latitudes. The study was conducted in Citra and Fort Lauderdale, FL, and Jackson Springs, NC. Simple‐sequence repeats markers were used to genotype leaf samples of St. Augustinegrass cultivars planted in two‐ and four‐cultivar mixtures. Leaf samples were collected 1 and 3 years after establishment. In all locations, cultivar richness and evenness declined over time. Similarly, the relative abundance of the least persistent cultivars decreased approximately 50%–100% depending on cultivar and location. Differences in growth patterns among cultivars resulted in cultivar displacement and the predominance of a single cultivar. Cultivars that covered the ground faster or formed dense canopies early after establishment were dominant at the end of the study. Locally developed cultivars tended to be more dominant in their original latitude. The use of cultivar mixtures may help the identification of vigorous, competitive, and stress tolerant cultivars in turfgrass breeding programs. However, their commercial use remains challenging as if the patterns observed here for 3 years are representative of a continuous trend, and they do not persist over time.
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圣奥古斯丁草栽培混合物组成随时间和纬度变化的分子分析
圣奥古斯丁草(Stenotaphrum secundatum (Walt.) Kuntze)通常作为单一栽培品种种植在住宅和商业景观中,这使得这种草坪容易受到害虫入侵,并需要大量的维护投入。研究人员认为,通过混播栽培品种来增加遗传多样性,可以提高草坪草的抗逆性。然而,这些混合物的稳定性和均匀性尚未得到研究。本研究旨在评估圣奥古斯丁草栽培品种混合物在三个纬度地区随时间变化的稳定性。研究在佛罗里达州的西特拉和劳德代尔堡以及北卡罗来纳州的杰克逊斯普林斯进行。使用简单序列重复标记对种植在两种和四种混交品种中的圣奥古斯丁草栽培品种的叶片样本进行基因分型。叶片样本在种植 1 年和 3 年后采集。在所有地点,栽培品种的丰富度和均匀度都随着时间的推移而下降。同样,根据栽培品种和地点的不同,最不持久的栽培品种的相对丰度下降了约 50%-100%。栽培品种间生长模式的差异导致了栽培品种的移位和单一栽培品种的优势。在研究结束时,覆盖地面较快或在建立初期形成浓密树冠的栽培品种占优势。当地培育的栽培品种往往在原纬度上更占优势。混交栽培品种的使用可能有助于在草坪草育种计划中识别生命力强、竞争力强和抗逆性强的栽培品种。然而,这些品种的商业应用仍具有挑战性,因为在这里观察到的 3 年模式是否代表了一种连续趋势,并不会随着时间的推移而持续存在。
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来源期刊
Crop Science
Crop Science 农林科学-农艺学
CiteScore
4.50
自引率
8.70%
发文量
197
审稿时长
3 months
期刊介绍: Articles in Crop Science are of interest to researchers, policy makers, educators, and practitioners. The scope of articles in Crop Science includes crop breeding and genetics; crop physiology and metabolism; crop ecology, production, and management; seed physiology, production, and technology; turfgrass science; forage and grazing land ecology and management; genomics, molecular genetics, and biotechnology; germplasm collections and their use; and biomedical, health beneficial, and nutritionally enhanced plants. Crop Science publishes thematic collections of articles across its scope and includes topical Review and Interpretation, and Perspectives articles.
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