首页> 外文期刊>Plant and cell physiology >Myrigalone A inhibits Lepidium sativum seed germination by interference with gibberellin metabolism and apoplastic superoxide production required for embryo extension growth and endosperm rupture. (Special Issue: Seed biology.)
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Myrigalone A inhibits Lepidium sativum seed germination by interference with gibberellin metabolism and apoplastic superoxide production required for embryo extension growth and endosperm rupture. (Special Issue: Seed biology.)

机译:Myrigalone A通过干扰赤霉素的代谢和胚芽增长和胚乳破裂所需的质外超氧化物的产生,抑制了番茄种子的萌发。 (特刊:种子生物学。)

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摘要

Myrica gale L. (sweet gale) fruit leachate contains myrigalone A (MyA), a rare C-methylated dihydrochalcone and putative allelochemical, which is known to be a phytotoxin impeding seedling growth. We found that MyA inhibited Lepidium sativum L. seed germination in a dose-dependent manner. MyA did not affect testa rupture, but inhibited endosperm rupture and the transition to subsequent seedling growth. MyA inhibited micropylar endosperm cap (CAP) weakening and the increase in the growth potential of the radical/hypocotyl region (RAD) of the embryo, both being key processes required for endosperm rupture. We compared the contents of abscisic acid (ABA) and gibberellins in the tissues and found that the major bioactive forms of gibberellin in L. sativum seed tissues were GA4 and GA6, while GA8 and GA13 were abundant inactive metabolites. MyA did not appreciably affect the ABA contents, but severely interfered with gibberellin metabolism and signaling by inhibiting important steps catalyzed by GA3 oxidase, as well as by interfering with the GID1-type gibberellin signaling pathway. The hormonally and developmentally regulated formation of apoplastic superoxide radicals is important for embryo growth. Specific zones within the RAD were associated with accumulation of apoplastic superoxide radicals and endoreduplication indicative of embryo cell extension. MyA negatively affected both of these processes and acted as a scavenger of apoplastic reactive oxygen species. We propose that MyA is an allelochemical with a novel mode of action on seed germination.
机译:迈里卡大风 L.(甜里风)水果浸出液含有myrigalone A(MyA),稀有的C-甲基化二氢查耳酮和推定的变态化学物质,众所周知,这是一种阻碍幼苗生长的植物毒素。我们发现,MyA以剂量依赖性方式抑制 Lepidium sativum L.种子萌发。 MyA不会影响睾丸破裂,但会抑制胚乳破裂和向随后幼苗生长的过渡。 MyA抑制了胚孔胚乳帽(CAP)的减弱和胚胎的自由基/下胚轴区(RAD)的生长潜力的增加,这都是胚乳破裂的关键过程。我们比较了组织中脱落酸(ABA)和赤霉素的含量,发现在 L中赤霉素的主要生物活性形式。番茄种子组织为GA 4 和GA 6 ,而GA 8 和GA 13 丰富无活性的代谢产物。 MyA不会显着影响ABA含量,但会通过抑制GA3氧化酶催化的重要步骤以及干扰GID1型赤霉素信号传导途径而严重干扰赤霉素的代谢和信号传导。激素和发育调控的质外生超氧化物自由基的形成对于胚胎生长很重要。 RAD中的特定区域与质外超氧化物自由基的积累和指示胚胎细胞延伸的核内复制有关。 MyA对这两个过程均产生负面影响,并充当质外生活性氧清除剂。我们建议MyA是一种对种子发芽具有新颖作用方式的化感物质。

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