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首页> 外文期刊>American Journal of Experimental Agriculture >Genotype by Environment (G x E) Modeling of the Variable Initiation of Parthenocarpy sensu stricto in Musa: Elucidation of the Environmental Components of Variable Expressivity of Parthenocarpy in a Facultative Apomictic Musa acuminata Subspecies Microcar
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Genotype by Environment (G x E) Modeling of the Variable Initiation of Parthenocarpy sensu stricto in Musa: Elucidation of the Environmental Components of Variable Expressivity of Parthenocarpy in a Facultative Apomictic Musa acuminata Subspecies Microcar

机译:按环境分型的基因型(G x E)建模在Musa中的单性结实Sensu stricto:阐明兼性无融合生殖无性Musa acuminata亚种微型汽车中单性结实的可变表达的环境成分

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To better understand the genome by environment (G x E) interactions that need to be accommodated in order to better predict hybrid performance for a high breeding value vegetative parthenocarpy trait sensu stricto. An analysis of the possible environmental signals contributing to the variability of a vegetative parthenocarpy trait sensu stricto via the genome x environment initiation of a genetic lesion that temporally, developmentally and systematically results in abortion of a parthenocarpic developmental regime was performed utilizing Musa acuminata accession Borneo as a model plant. We examined the effect of the variable and potentially modulating environmental signals, and performed a dissection of the genetic components of expressivity and penetrance in the vegetative parthenocarpy in Borneo, utilizing 180 apomictic progeny planted at different developmental ages in duplicate at each of two ecoregional zones. A total of 2,160 floral rachis from 720 mats of Borneo were measured for their subsequent expressivity and penetrance for vegetative parthenocarpy across individual flowers produced from a single vegetative mat, across local duplicate mats, and across ecoregional zones. The results of our study have produced a predictive G x E Model for expressivity of vegetative parthenocarpy in Musa, with validation of this model by a variety of statistical and probabilistic methods. Since expressivity of vegetative parthenocarpy to similar environmental signals have been identified across the monocot to dicot plants such as tomato, the generalized use of models such as presented in our study may have broader applicability to a wider range of crop plants.
机译:为了更好地了解基因组在环境(G x E)中的相互作用,需要更好地预测高繁殖价值的植物性单性结实性状sensu stricto的杂交表现。通过使用Musa acuminata登录号婆罗洲作为一种遗传性病变的基因组x环境启动,对暂时性,发育性和系统性导致单性结实发育方式流产的可能的环境信号进行了分析,该环境信号有助于无性单性结实性状的变异。示范工厂。我们检查了可变和潜在调控环境信号的影响,并利用两个不同生态区的两个不同发育时期种植的180个无融合生殖子代,剖析了婆罗洲营养单性结实的表达和外显性的遗传成分。对来自婆罗洲720个席子的总共2160个花ra进行了测量,分析了它们在单个植物席上产生的单个花,局部重复席和整个生态区域中的植物性单性结实的表现力和渗透性。我们的研究结果产生了预测性G x E模型,用于预测Musa中营养性单性结实的表达,并通过多种统计和概率方法对该模型进行了验证。由于已经在单子叶植物中对单子叶植物如番茄确定了营养单性结实对类似环境信号的表达,因此在我们的研究中提出的模型的普遍使用可能对更广泛的农作物具有更广泛的适用性。

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