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A strong constitutive ethylene-response phenotype conferred on Arabidopsis plants containing null mutations in the ethylene receptors ETR1 and ERS1

机译:拟南芥植物具有很强的本构乙烯反应表型,在乙烯受体ETR1和ERS1中含有无效突变

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摘要

Background: The ethylene receptor family of Arabidopsis consists of five members, falling into two subfamilies. Subfamily 1 is composed of ETR1 and ERS1, and subfamily 2 is composed of ETR2, ERS2, and EIN4. Although mutations have been isolated in the genes encoding all five family members, the only previous insertion allele of ERS1 (ers1-2) is a partial loss-of-function mutation based on our analysis. The purpose of this study was to determine the extent of signaling mediated by subfamily-1 ethylene receptors through isolation and characterization of null mutations. ududResults: We isolated new T-DNA insertion alleles of subfamily 1 members ERS1 and ETR1 (ers1-3 and etr1-9, respectively), both of which are null mutations based on molecular, biochemical, and genetic analyses. Single mutants show an ethylene response similar to wild type, although both mutants are slightly hypersensitive to ethylene. Double mutants of ers1-3 with etr1-9, as well as with the previously isolated etr1-7, display a constitutive ethylene-response phenotype more pronounced than that observed with any previously characterized combination of ethylene receptor mutations. Dark-grown etr1-9;ers1-3 and etr1-7;ers1-3 seedlings display a constitutive triple-response phenotype. Light-grown etr1-9;ers1-3 and etr1-7;ers1-3 plants are dwarfed, largely sterile, exhibit premature leaf senescence, and develop novel filamentous structures at the base of the flower. A reduced level of ethylene response was still uncovered in the double mutants, indicating that subfamily 2 receptors can independently contribute to signaling, with evidence suggesting that this is due to their interaction with the Raf-like kinase CTR1. ududConclusion: Our results are consistent with the ethylene receptors acting as redundant negative regulators of ethylene signaling, but with subfamily 1 receptors playing the predominant role. Loss of a single member of subfamily 1 is largely compensated for by the activity of the other member, but loss of both subfamily members results in a strong constitutive ethylene-response phenotype. The role of subfamily 1 members is greater than previously suspected and analysis of the double mutant null for both ETR1 and ERS1 uncovers novel roles for the receptors not previously characterized.
机译:背景:拟南芥的乙烯受体家族由五个成员组成,分为两个亚家族。子家族1由ETR1和ERS1组成,子家族2由ETR2,ERS2和EIN4组成。尽管已在编码所有五个家族成员的基因中分离出突变,但根据我们的分析,ERS1(ers1-2)的唯一先前插入等位基因是部分功能丧失的突变。本研究的目的是通过无效突变的分离和表征来确定亚家族1乙烯受体介导的信号传导程度。 ud ud结果:我们分离了亚家族1成员ERS1和ETR1(分别为ers1-3和etr1-9)的新T-DNA插入等位基因,基于分子,生化和遗传分析,两者均为无效突变。单个突变体显示出与野生型相似的乙烯反应,尽管两个突变体均对乙烯稍微敏感。具有etr1-9以及先前分离的etr1-7的ers1-3双重突变体显示出组成性乙烯反应表型,比任何先前表征的乙烯受体突变组合所观察到的更为明显。深色的etr1-9; ers1-3和etr1-7; ers1-3幼苗显示本构性的三响应表型。轻生的etr1-9; ers1-3和etr1-7; ers1-3植物矮化,大部分不育,表现出过早的叶片衰老,并在花的基部发育出新的丝状结构。仍未在双突变体中发现乙烯反应的降低水平,表明亚家族2受体可以独立地促进信号传导,证据表明这是由于它们与Raf样激酶CTR1的相互作用。结论:我们的结果与乙烯受体充当乙烯信号的冗余负调节剂一致,但亚家族1受体起主要作用。亚家族1的单个成员的丧失在很大程度上被另一成员的活性所补偿,但是两个亚家族的成员的丧失导致强烈的本构乙烯反应表型。亚家族1成员的作用比以前怀疑的要大,对ETR1和ERS1的双重突变无效的分析揭示了以前未鉴定的受体的新作用。

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