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Focus Issue on Ethylene: The Central Role of PhEIN2 in Ethylene Responses throughout Plant Development in Petunia

机译:乙烯的焦点问题:矮牵牛整个植物发育过程中PhEIN2在乙烯反应中的核心作用

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摘要

The plant hormone ethylene regulates many aspects of growth and development. Loss-of-function mutations in ETHYLENE INSENSITIVE2 (EIN2) result in ethylene insensitivity in Arabidopsis, indicating an essential role of EIN2 in ethylene signaling. However, little is known about the role of EIN2 in species other than Arabidopsis. To gain a better understanding of EIN2, a petunia (Petunia × hybrida cv Mitchell Diploid [MD]) homolog of the Arabidopsis EIN2 gene (PhEIN2) was isolated, and the role of PhEIN2 was analyzed in a wide range of plant responses to ethylene, many that do not occur in Arabidopsis. PhEIN2 mRNA was present at varying levels in tissues examined, and the PhEIN2 expression decreased after ethylene treatment in petals. These results indicate that expression of PhEIN2 mRNA is spatially and temporally regulated in petunia during plant development. Transgenic petunia plants with reduced PhEIN2 expression were compared to wild-type MD and ethylene-insensitive petunia plants expressing the Arabidopsis etr1-1 gene for several physiological processes. Both PhEIN2 and etr1-1 transgenic plants exhibited significant delays in flower senescence and fruit ripening, inhibited adventitious root and seedling root hair formation, premature death, and increased hypocotyl length in seedling ethylene response assays compared to MD. Moderate or strong levels of reduction in ethylene sensitivity were achieved with expression of both etr1-1 and PhEIN2 transgenes, as measured by downstream expression of PhEIL1. These results demonstrate that PhEIN2 mediates ethylene signals in a wide range of physiological processes and also indicate the central role of EIN2 in ethylene signal transduction.
机译:植物激素乙烯调节生长和发育的许多方面。 ETHENSENE INSENSITIVE2(EIN2)的功能丧失突变导致拟南芥对乙烯的不敏感性,表明EIN2在乙烯信号传导中起重要作用。然而,人们对EIN2在拟南芥以外的物种中的作用了解甚少。为了更好地了解EIN2,分离了拟南芥EIN2基因(PhEIN2)的矮牵牛(Petunia×hybrida cv Mitchell Diploid [MD])同源物,并分析了PhEIN2在植物对乙烯的多种反应中的作用,许多在拟南芥中不存在的。 PhEIN2 mRNA在所检查的组织中以不同水平存在,并且乙烯处理后在花瓣中PhEIN2表达降低。这些结果表明,在植物发育过程中,矮牵牛中PhEIN2 mRNA的表达受到时空调节。将具有减少的PhEIN2表达的转基因矮牵牛植物与表达拟南芥etr1-1基因的野生型MD和对乙烯不敏感的矮牵牛植物进行了几个生理过程的比较。与MD相比,PhEIN2和etr1-1转基因植物在花衰老和果实成熟上均表现出显着的延迟,在幼苗乙烯反应测定中抑制了不定根和幼苗根毛的形成,过早死亡并增加了下胚轴长度。用etr1-1和PhEIN2转基因的表达可以实现中等程度或强烈的乙烯敏感性降低,这是通过PhEIL1的下游表达来衡量的。这些结果表明,PhEIN2在广泛的生理过程中介导乙烯信号,也表明EIN2在乙烯信号转导中的核心作用。

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