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[具体植物名称]杂交系中花瓣形态变异与[具体基因名称]样基因型之间的关联。

Association between Petal Form Variation and -like Genotype in a Hybrid Line of .

作者信息

Hsu Hao-Chun, Wang Chun-Neng, Liang Chia-Hao, Wang Cheng-Chun, Kuo Yan-Fu

机构信息

Department of Bio-Industrial Mechatronics Engineering, National Taiwan UniversityTaipei, Taiwan.

Institute of Ecology and Evolutionary Biology, National Taiwan UniversityTaipei, Taiwan.

出版信息

Front Plant Sci. 2017 Apr 18;8:558. doi: 10.3389/fpls.2017.00558. eCollection 2017.

Abstract

This study used three-dimensional (3D) micro-computed tomography (μCT) imaging to examine petal form variation in a hybrid cross of between a cultivar with actinomorphic flowers and a variety with zygomorphic flowers. The major objectives were to determine the genotype-phenotype associations between the petal form variation and -like alleles in . () and to morphologically investigate the differences in petal types between actinomorphic and zygomorphic flowers. In this study, μCT was used to accurately acquire 3D floral images. Landmark-based geometric morphometrics (GM) was applied to evaluate the major form variations of the petals. Nine morphological traits of the petals were defined according to the form variations quantified through the GM analysis. The results indicated that the outward curvature of dorsal petals, the midrib asymmetry of lateral petals, and the dilation of ventral region of the tube were closely associated with the genotype. Multiple analyses of form similarity between the petals suggested that the dorsal and ventral petals of actinomorphic plants resembled the ventral petals of zygomorphic plants. This observation indicated that the transition from zygomorphic to actinomorphic flowers in might be caused by the ventralization of the dorsal petals. We demonstrated that the 3D-GM approach can be used to determine genotype-phenotype associations and to provide morphological evidence for the transition of petal types between actinomorphic and zygomorphic flowers in .

摘要

本研究使用三维(3D)显微计算机断层扫描(μCT)成像技术,来检测辐射对称花品种与两侧对称花变种杂交后代花瓣形态的变化。主要目的是确定花瓣形态变异与[具体基因]中[具体等位基因]之间的基因型-表型关联,并从形态学上研究辐射对称花和两侧对称花花瓣类型的差异。在本研究中,μCT被用于精确获取三维花朵图像。基于地标点的几何形态测量学(GM)被应用于评估花瓣的主要形态变化。根据通过GM分析量化的形态变化,定义了花瓣的九个形态特征。结果表明,背侧花瓣的向外弯曲、侧花瓣的中脉不对称以及花管腹侧区域的扩张与[具体基因]基因型密切相关。对花瓣之间形态相似性的多重分析表明,辐射对称植物的背侧和腹侧花瓣类似于两侧对称植物的腹侧花瓣。这一观察结果表明,[具体植物]中从两侧对称花到辐射对称花的转变可能是由背侧花瓣的腹侧化引起的。我们证明了3D-GM方法可用于确定基因型-表型关联,并为[具体植物]中辐射对称花和两侧对称花之间花瓣类型的转变提供形态学证据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2019/5394160/bf4ac2e5ac97/fpls-08-00558-g001.jpg

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