论文标题
意大利水稻种质的表型变异性
Phenotypic variability in Italian rice germplasm
论文作者
论文摘要
植物育种是进一步提高作物产量的关键策略之一。但是,有效的育种策略需要对可用种质的表型表征。这项研究试图表征与物候,植物结构和产量相关的14种作物特征的表型表达,其中40个品种的小组中,在两个季节的实验过程中代表意大利水稻种质中存在的表型变异性。 The observed range of phenotypic variation was high for many traits (coefficients of variation ranging from 5.9\% to 45.4\%) including yield (mean: 6.47 t ha\textsuperscript{-1}; CV: 15.4\%; min: 2.19 t ha\textsuperscript{-1}; max: 8.95 t HA \ TextSuperScript {-1}),在所有分析性状中都出现了多个强大关联。聚类分析提取了三组基因型,这些基因型的特征是替代产量策略,即“高浸泡”,“早期成熟”和“增加的源链接”。我们的发现强调,当一种策略过分强调时,水稻产量会降低。相比之下,收益最高的基因型在水槽和源器官之间具有平衡的比率,以及成比例的营养和生殖阶段。这项研究描述了意大利水稻品种的表型变异性,并提出了一种基于与产量相关的特征的新分类,该特征可能用于多种水稻育种应用中。
Plant breeding is one of the key strategies for further enhancement of crop yields; however, effective breeding strategies require phenotypic characterisation of the available germplasm. This study sought to characterise the phenotypic expression of fourteen crop traits related to phenology, plant architecture, and yield in a panel of 40 cultivars selected to represent the phenotypic variability present in Italian rice germplasm during a two-season field experiment. The observed range of phenotypic variation was high for many traits (coefficients of variation ranging from 5.9\% to 45.4\%) including yield (mean: 6.47 t ha\textsuperscript{-1}; CV: 15.4\%; min: 2.19 t ha\textsuperscript{-1}; max: 8.95 t ha\textsuperscript{-1}), and multiple strong associations emerged in all the analysed traits. Cluster analysis extracted three groups of genotypes characterised by alternative yield strategies, i.e. "high-tillering", "early maturing", and "increased source-sink". Our findings highlight that rice yield decrease when one strategy is overemphasised. In contrast, the highest-yielding genotypes have a balanced ratio between sink and source organs, along with a proportional duration of vegetative and reproductive phases. This study depicts the phenotypic variability in Italian rice cultivars and proposes a novel classification based on yield-related traits which could be of use in multiple rice breeding applications.