Understanding the basis of a novel fruit type in Brassicaceae: conservation and deviation in expression patterns of six genes
Understanding the basis of a novel fruit type in Brassicaceae: conservation and deviation in expression patterns of six genes
AbstractBackgroundVariation in fruit morphology is important for plant fitness because it influences dispersal capabilities. Approximately half the members of tribe Brassiceae (Brassicaceae) exhibit fruits with segmentation and variable dehiscence, called heteroarthrocarpy. The knowledge of the genetics of fruit patterning in Arabidopsis offers the opportunity to ask: (1) whether this genetic pathway is conserved in taxa with different fruit morphologies; (2) how the pathway may be modified to produce indehiscence; and (3) whether the pathway has been recruited for a novel abscission zone.MethodsWe identified homologs ofALCATRAZ,FRUITFULL,INDEHISCENT,SHATTERPROOF, andREPLUMLESSfrom two taxa, representing different types of heteroarthrocarpy. ComParative gene expression of twelve loci was assessed to address how their expression may have been modified to produce heteroarthrocarpy.ResultsStudies demonstrated overall conservation in gene expression patterns between dehiscent segments ofErucaria erucarioidesand Arabidopsis, with some difference in expression of genes that position the valve margin. In contrast, indehiscence in heteroarthrocarpic fruit segments was correlated with the elimination of the entire valve margin pathway inErucariaandCakile lanceolataas well as its absence from a novel lateral abscission zone.ConclusionsThese findings suggest that modifications in the valve margin positioning genes are responsible for differences between heteroarthrocarpic and Arabidopsis-like fruits and support the hypothesis that heteroarthrocarpy evolved via repositioning the valve margin. They also highlight conservation in the dehiscence pathway across Brassicaceae.
- Duke University United States
- National Research Council Italy
- Department of Biology United States
- Harvard University United States
- University of Alberta Canada
580, 570, Silique, <it>REPLUMLESS</it>, INDEHISCENT, Evolution, Fruit development, Research, <it>SHATTERPROOF</it>, ALCATRAZ, FRUITFULL, Brassicaceae, SHATTERPROOF, QH359-425, <it>FRUITFULL</it>, <it>ALCATRAZ</it>, <it>INDEHISCENT</it>, REPLUMLESS
580, 570, Silique, <it>REPLUMLESS</it>, INDEHISCENT, Evolution, Fruit development, Research, <it>SHATTERPROOF</it>, ALCATRAZ, FRUITFULL, Brassicaceae, SHATTERPROOF, QH359-425, <it>FRUITFULL</it>, <it>ALCATRAZ</it>, <it>INDEHISCENT</it>, REPLUMLESS
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