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首页> 外文期刊>Journal of Experimental Botany >TIR1 auxin receptors are implicated in the differential response to 4-Cl-IAA and IAA in developing pea fruit
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TIR1 auxin receptors are implicated in the differential response to 4-Cl-IAA and IAA in developing pea fruit

机译:TiR1植物素受体涉及到4-Cl-IAA和IAA在发育豌豆果中的差异反应

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The auxins indole-3-acetic acid (IAA) and 4-chloroindole-3-acetic acid (4-Cl-IAA) occur naturally in pea (Pisum sativum); however, only 4-Cl-IAA mimics the presence of seeds in stimulating pericarp growth. To examine if this differential auxin effect is mediated through TIR1/AFB auxin receptors, pea TIR1 and AFB2 homologs were functionally characterized in Arabidopsis, and receptor expression, and auxin distribution and action were profiled in developing pea fruits. PsTIR1a, PsTIR1b, and PsAFB2 restored the auxin-sensitive root growth response to the mutant Arabidopsis seedlings Attir1-10 and/or Attir1-10 afb2-3. Expression of PsTIR1 or AtTIR1 in Attir1-10 afb2-3 mutants also restored the greater root inhibitory response of 4-Cl-IAA compared to that of IAA, implicating TIR1 receptors in this response. The ability of 4-Cl-IAA to stimulate a stronger DR5:: GUS auxin response than IAA at the same concentration in pea pericarps was associated with its ability to enrich the auxin-receptor transcript pool with PsTIR1a and PsAFB2 by decreasing the transcript abundance of PsTIR1b (mimicking results in pericarps with developing seeds). Therefore, the markedly different effect of IAA and 4-Cl-IAA on pea fruit growth may at least partially involve TIR1/AFB receptors and the differential modulation of their population, resulting in specific Aux/IAA protein degradation that leads to an auxin-specific tissue response.
机译:制冷吲哚-3-乙酸(IAA)和4-氯吲哚-3-乙酸(4-CL-IAA)在豌豆(Pisum Sativum)中自然发生;然而,只有4-cl-IAA模仿种子的存在刺激果皮生长。为了检查这种差异的毒素效应是否通过TiR1 / AFB疾病受体介导,豌豆TIR1和AFB2同源物在拟南芥中的功能表征,以及受体表达,以及在发育豌豆果实中进行植物素分布和作用。 Pstir1a,pstir1b和psafb2恢复到突变体拟南芥幼苗attir1-10和/或attir1-10 afb2-3的植物敏敏感根生长响应。 Pstir1或抗atir1在attir1-10 Afb2-3突变体中的表达还恢复了与IAA的抑制4-Cl-Iaa的更大的根抑制反应,在该反应中暗示TiR1受体。 4-Cl-IAA刺激更强的DR5 :: GUS毒素响应的能力与IAA相同浓度的豌豆Pericarps的响应与其通过降低转录物丰度来丰富具有Pstir1a和psafb2的生长素受体转录池的能力有关pstir1b(模拟果皮的结果与显影种子)。因此,IAA和4-CL-IAA对豌豆果实生长的显着不同的效果可以至少部分地涉及TIR1 / AFB受体和它们的群体的差异调节,导致特异性的AUX / IAA蛋白质降解,导致毒素特异性组织反应。

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