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如何构建果实:芸薹属中一种新型果实类型的转录组学研究。

How to build a fruit: Transcriptomics of a novel fruit type in the Brassiceae.

机构信息

Biological Sciences, University of Alberta, Edmonton, AB, Canada.

Department of Biology, University of Waterloo, Waterloo, Ontario, Canada.

出版信息

PLoS One. 2019 Jul 18;14(7):e0209535. doi: 10.1371/journal.pone.0209535. eCollection 2019.

Abstract

Comparative gene expression studies are invaluable for predicting how existing genetic pathways may be modified or redeployed to produce novel and variable phenotypes. Fruits are ecologically important organs because of their impact on plant fitness and seed dispersal, modifications in which results in morphological variation across species. A novel fruit type in the Brassicaceae known as heteroarthrocarpy enables distinct dispersal methods in a single fruit through segmentation via a lateral joint and variable dehiscence at maturity. Given the close relationship to Arabidopsis, species that exhibit heteroarthrocarpy are powerful models to elucidate how differences in gene expression of a fruit patterning pathway may result in novel fruit types. Transcriptomes of distal, joint, and proximal regions from Erucaria erucarioides and Cakile lanceolata were analyzed to elucidate within fruit and between species differences in whole transcriptome, gene ontology, and fruit patterning expression profiles. Whole transcriptome expression profiles vary between fruit regions in patterns that are consistent with fruit anatomy. These transcriptomic variances do not correlate with changes in gene ontology, as they remain generally stable within and between both species. Upstream regulators in the fruit patterning pathway, FILAMENTOUS FLOWER and YABBY3, are expressed in the distal and proximal regions of E. erucarioides, but not in the joint, implicating alterations in the pathway in heteroarthrocarpic fruits. Downstream gene, INDEHISCENT, is significantly upregulated in the abscissing joint region of C. lanceolata, which suggests repurposing of valve margin genes for novel joint disarticulation in an otherwise indehiscent fruit. In summary, these data are consistent with modifications in fruit patterning genes producing heteroarthrocarpic fruits through different components of the pathway relative to other indehiscent, non-heteroarthrocarpic, species within the family. Our understanding of fruit development in Arabidopsis is now extended to atypical siliques within the Brassicaceae, facilitating future studies on seed shattering in important Brassicaceous crops and pernicious weeds.

摘要

比较基因表达研究对于预测现有遗传途径如何被修饰或重新利用以产生新的和可变的表型非常有价值。果实是生态上重要的器官,因为它们对植物适应性和种子散布有影响,这些修饰导致了物种之间的形态变异。在十字花科中,一种新的果实类型称为异型关节果,通过侧向关节的分割和成熟时的可变开裂,在单个果实中实现了不同的散布方法。鉴于与拟南芥的密切关系,表现出异型关节果的物种是阐明果实形态发生途径中基因表达差异如何导致新型果实类型的有力模型。对 Erucaria erucarioides 和 Cakile lanceolata 的远端、关节和近端区域的转录组进行了分析,以阐明果实内和物种间在全转录组、基因本体和果实形态发生表达谱上的差异。果实区域之间的全转录组表达谱差异模式与果实解剖结构一致。这些转录组差异与基因本体的变化无关,因为它们在两个物种内和之间基本保持稳定。果实形态发生途径中的上游调节剂 FILAMENTOUS FLOWER 和 YABBY3 在 E. erucarioides 的远端和近端区域表达,但不在关节处表达,这表明异型关节果中该途径的改变。下游基因 INDEHISCENT 在 C. lanceolata 的离区关节区域显著上调,这表明在其他不开裂的果实中,瓣缘基因被重新用于新的关节分离。总之,这些数据与果实形态发生基因的修饰一致,通过该途径的不同组成部分产生异型关节果,而相对于该科中的其他不开裂、非异型关节果物种则有所不同。我们对拟南芥果实发育的理解现在扩展到了十字花科中的非典型蒴果,这有助于未来对重要十字花科作物和有害杂草中种子崩解的研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9c0c/6638736/e7e6dac49040/pone.0209535.g001.jpg

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