Matzke Courtney M, Shore Joel S, Neff Michael M, McCubbin Andrew G
School of Biological Sciences, Washington State University, PO Box 644236, Pullman, WA 99164-4236, USA.
Department of Biology, York University, 4700 Keele Street, Toronto, ON M3J1P3, Canada.
Plants (Basel). 2020 Nov 13;9(11):1566. doi: 10.3390/plants9111566.
Heterostyly distinct hermaphroditic floral morphs enforce outbreeding. Morphs differ structurally, promote cross-pollination, and physiologically block self-fertilization. In the self-incompatibility (S)-locus controlling heterostyly possesses three genes specific to short-styled morph genomes. Only one gene, , is expressed in pistils and this has been hypothesized to possess brassinosteroid (BR)-inactivating activity. We tested this hypothesis using heterologous expression in as a bioassay, thereby assessing growth phenotype, and the impacts on the expression of endogenous genes involved in BR homeostasis and seedling photomorphogenesis. Transgenic expressing displayed phenotypes typical of BR-deficient mutants, with phenotype severity dependent on expression level. , which encodes an enzyme involved in BR inactivation, was downregulated in -expressing lines. and which encode enzymes involved in BR biosynthesis, were upregulated. Hypocotyl growth of dwarfs responded to application of brassinolide in light and dark in a manner typical of plants over-expressing genes encoding BR-inactivating activity. These results provide empirical support for the hypothesis that TsBAHD possesses BR-inactivating activity. Further this suggests that style length in is controlled by the same mechanism (BR inactivation) as that reported for , but using a different class of enzyme. This reveals interesting convergent evolution in a biochemical mechanism to regulate floral form in heterostyly.
花柱异长现象中不同的雌雄同体花形态促进异花授粉。不同形态在结构上存在差异,促进异花授粉,并在生理上阻止自花受精。在控制花柱异长的自交不亲和(S)位点中,短花柱形态基因组有三个特定基因。只有一个基因,即TsBAHD,在雌蕊中表达,并且据推测它具有油菜素类固醇(BR)失活活性。我们通过在拟南芥中进行异源表达作为生物测定来验证这一假设,从而评估生长表型以及对参与BR稳态和幼苗光形态建成的内源基因表达的影响。表达TsBAHD的转基因拟南芥表现出典型的BR缺陷突变体的表型,表型严重程度取决于TsBAHD的表达水平。编码参与BR失活的一种酶的BASI,在表达TsBAHD的株系中下调。编码参与BR生物合成的酶的DWF4和CPD上调。在光照和黑暗条件下,过表达TsBAHD的矮化拟南芥下胚轴生长对油菜素内酯的施用反应,与过表达编码BR失活活性基因的植物的典型反应方式相同。这些结果为TsBAHD具有BR失活活性这一假设提供了实证支持。此外,这表明报春花属植物的花柱长度是由与拟南芥中报道的相同机制(BR失活)控制的,但使用了不同类型的酶。这揭示了在调节花柱异长花形态的生化机制中有趣的趋同进化。