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Multiple Loci Control Variation in Plasticity to Foliar Shade Throughout Development in

机译:在整个开发过程中为叶面阴影的可塑性控制变化

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摘要

The shade avoidance response is a set of developmental changes exhibited by plants to avoid shading by competitors, and is an important model of adaptive plant plasticity. While the mechanisms of sensing shading by other plants are well-known and appear conserved across plants, less is known about the developmental mechanisms that result in the diverse array of morphological and phenological responses to shading. This is particularly true for traits that appear later in plant development. Here we use a nested association mapping (NAM) population of Arabidopsis thaliana to decipher the genetic architecture of the shade avoidance response in late-vegetative and reproductive plants. We focused on four traits: bolting time, rosette size, inflorescence growth rate, and inflorescence size, found plasticity in each trait in response to shade, and detected 17 total QTL; at least one of which is a novel locus not previously identified for shade responses in Arabidopsis. Using path analysis, we dissected each colocalizing QTL into direct effects on each trait and indirect effects transmitted through direct effects on earlier developmental traits. Doing this separately for each of the seven NAM populations in each environment, we discovered considerable heterogeneity among the QTL effects across populations, suggesting allelic series at multiple QTL or interactions between QTL and the genetic background or the environment. Our results provide insight into the development and variation in shade avoidance responses in Arabidopsis, and emphasize the value of directly modeling the relationships among traits when studying the genetics of complex developmental syndromes.
机译:避免避免响应是植物展出的一系列发育变化,以避免竞争对手遮蔽,是自适应植物可塑性的重要模型。虽然其他植物感应遮阳的机制是众所周知的,但在植物上看起来尤为苛刻,而较少是已知的关于导致对阴影的不同形态和鉴别反应的发展机制。对于植物开发后面的特征尤其如此。在这里,我们使用Arabidopsis Thaliana的嵌套关联映射(NAM)群体来破译晚营养和生殖植物中的阴影避免反应的遗传架构。我们专注于四个特征:螺栓时间,胶囊尺寸,花序生长速度和花序尺寸,发现每个性状的可塑性响应阴影,并检测到17个总QTL;其中至少一种是先前未识别出于拟南芥的阴影反应的新型基因座。使用路径分析,我们分析了QTL对通过直接影响早期发育性状传播的每种特征和间接效应的直接影响。为每个环境中的七个NAM种群中的每一个单独进行这一点,我们在群体的QTL效应中发现了相当大的异质性,暗示了多个QTL或QTL与遗传背景或环境之间的相互作用的等位基因系列。我们的结果介绍了拟南芥避免避免反应的发展和变化,并强调在研究复杂发育综合征的遗传学时直接建模关系中的关系。

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