University of Freiburg, Faculty of Biology, Institute for Biology II, Botany/Plant Physiology, D-79104 Freiburg, Germany.
J Exp Bot. 2012 Sep;63(14):5337-50. doi: 10.1093/jxb/ers197. Epub 2012 Jul 21.
Myrigalone A (MyA) is a rare flavonoid in fruit leachates of Myrica gale, a deciduous shrub adapted to flood-prone habitats. As a putative allelochemical it inhibits seed germination and seedling growth. Using Lepidium sativum as a model target species, experiments were conducted to investigate how environmental cues modulate MyA's interference with key processes of seed germination. Time course analyses of L. sativum testa and endosperm rupture under different light conditions and water potentials were combined with quantifying testa permeability, endosperm weakening, tissue-specific gibberellin (GA) and abscisic acid (ABA) contents, as well as embryo growth and apoplastic superoxide production important for cell expansion growth. Lepidium sativum testa permeability and early water uptake by imbibition is enhanced by MyA. During late germination, MyA inhibits endosperm weakening and embryo growth, both processes required for endosperm rupture. Inhibition of embryo cell expansion by MyA depends on environmental cues, which is evident from the light-modulated severity of the MyA-mediated inhibition of apoplastic superoxide accumulation. Several important key weakening and growth processes during early and late germination are targets for MyA. These effects are modulated by light conditions and ambient water potential. It is speculated that MyA is a soil seed bank-destroying allelochemical that secures the persistence of M. gale in its flood-prone environment.
杨梅酮 A(MyA)是杨梅果实渗出物中的一种稀有类黄酮,杨梅是一种适应洪水泛滥生境的落叶灌木。作为一种假定的化感物质,它抑制种子萌发和幼苗生长。本研究以萝卜为模式目标物种,进行了实验以研究环境线索如何调节 MyA 对种子萌发关键过程的干扰。在不同光照条件和水势下,对萝卜种皮和胚乳破裂的时间过程分析,结合定量测定种皮通透性、胚乳弱化、组织特异性赤霉素(GA)和脱落酸(ABA)含量,以及对细胞扩展生长很重要的胚胎生长和质外体超氧产生,进行了实验。杨梅酮 A 增强了萝卜种皮的通透性和早期的吸胀吸水。在萌发后期,MyA 抑制胚乳弱化和胚胎生长,这两个过程是胚乳破裂所必需的。MyA 对胚胎细胞扩展的抑制取决于环境线索,这从光照调节 MyA 介导的质外体超氧积累抑制的严重程度上可以明显看出。早期和晚期萌发过程中的几个重要的弱化和生长过程是 MyA 的作用靶点。这些影响受光照条件和环境水势的调节。推测杨梅酮 A 是一种破坏土壤种子库的化感物质,它确保了杨梅在洪水泛滥的环境中的生存。