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KANADI and class III HD-Zip gene families regulate embryo patterning and modulate auxin flow during embryogenesis in Arabidopsis

机译:KANADI和III类HD-Zip基因家族在拟南芥胚发生过程中调控胚胎模式并调节植物生长素的流动。

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摘要

Embryo patterning in Arabidopsis thaliana is highly affected when KANADI or Class III HD-Zip genes are compromised. Triple loss-of-function kan1 kan2 kan4 embryos exhibit striking defects in the peripheral-central axis, developing lateral leaf-like organs from the hypocotyls, whereas loss of Class III HD-Zip gene activity results in a loss of bilateral symmetry. Loss of KANADI activity in a Class III HD-Zip mutant background mitigates the defects in bilateral symmetry, implying that the two gene families act antagonistically during embryonic pattern formation. Dynamic patterns of auxin concentration and flux contribute to embryo patterning. Polar cellular distribution of PIN-FORMED1 (PIN1) mediates auxin flow throughout embryogenesis and is required for establishment of the apical-basal axis and bilateral symmetry. Defects in the pattern of PIN1 expression are evident when members of either the KANADI or Class III HD-Zip gene families are compromised. Abnormal expression patterns of PIN1 in KANADI or Class III HD-Zip multiple mutants and the phenotype of plants in which members of both gene families are mutated suggest that pattern formation along the central-peripheral axis results from interplay between auxin and the KANADI and Class III HD-Zip transcription factors, whose defined spatial and temporal expression patterns may also be influenced by auxin.
机译:当KANADI或III类HD-Zip基因受损时,拟南芥中的胚胎模式会受到很大影响。三重功能丧失的kan1 kan2 kan4胚胎在外周中心轴上显示出惊人的缺陷,从下胚轴发育出侧叶状器官,而III类HD-Zip基因活性的丧失导致双侧对称性的丧失。在III类HD-Zip突变体背景下,KANADI活性的丧失减轻了双边对称性的缺陷,这意味着两个基因家族在胚胎模式形成过程中起着拮抗作用。生长素浓度和通量的动态模式有助于形成胚胎。 PIN-FORMED1(PIN1)的极性细胞分布介导整个胚发生过程中的生长素流,这是建立顶基轴和双侧对称所必需的。当KANADI或III类HD-Zip基因家族的成员受到损害时,PIN1表达模式的缺陷就很明显。 PIN1在KANADI或III类HD-Zip多个突变体中的异常表达模式以及两个基因家族的成员均发生突变的植物的表型表明,沿着中枢-外周轴的模式形成是由于生长素与KANADI和III类相互作用的结果HD-Zip转录因子,其定义的时空表达模式也可能受到生长素的影响。

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