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首页> 外文期刊>Journal of Experimental Botany >Embryo growth, testa permeability, and endosperm weakening are major targets for the environmentally regulated inhibition of Lepidium sativum seed germination by myrigalone A
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Embryo growth, testa permeability, and endosperm weakening are major targets for the environmentally regulated inhibition of Lepidium sativum seed germination by myrigalone A

机译:胚胎生长,睾丸通透性和胚乳弱化是myrigalone A对环境调节的番茄种子萌发的主要调控目标

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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.
机译:Myrigalone A(MyA)是在Myrica gale的水果浸出液中的一种罕见的类黄酮。作为推测的化感物质,它抑制种子发芽和幼苗生长。以番茄作为物种的目标物种进行了实验,以研究环境提示如何调节MyA对种子萌发关键过程的干扰。在不同光照条件下和水分潜势下,对葡萄球菌和胚乳破裂的时程分析与定量睾丸通透性,胚乳弱化,组织特异性赤霉素(ABA)和脱落酸(ABA)含量以及胚胎生长和质外再生相结合超氧化物的产生对于细胞扩增生长很重要。 MyA增强了小菜蛾的睾丸渗透性和吸水率。在晚发芽期间,MyA抑制胚乳破裂所需的两个过程,即胚乳衰弱和胚胎生长。 MyA对胚细胞扩增的抑制取决于环境提示,这从MyA介导的质外体超氧化物积累抑制的光调制严重性可以明显看出。 MyA的目标是在发芽早期和晚期发芽的几个重要的重要弱化和生长过程。这些影响受光照条件和环境水势的调节。据推测,MyA是一种破坏土壤种子库的化感物质,可确保大风梭菌在易受洪水侵袭的环境中持久存在。

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