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Tasselseed5 overexpresses a wound-inducible enzyme ZmCYP94B1 that affects jasmonate catabolism sex determination and plant architecture in maize

机译:Tasselseed5过表达一种伤口诱导酶ZmCYP94B1该酶会影响玉米的茉莉酸酯分解代谢性别决定和植物结构

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摘要

Maize is monecious, with separate male and female inflorescences. Maize flowers are initially bisexual but achieve separate sexual identities through organ arrest. Loss-of-function mutants in the jasmonic acid (JA) pathway have only female flowers due to failure to abort silks in the tassel. Tasselseed5 (Ts5) shares this phenotype but is dominant. Positional cloning and transcriptomics of tassels identified an ectopically expressed gene in the CYP94B subfamily, Ts5 (ZmCYP94B1). CYP94B enzymes are wound inducible and inactivate bioactive jasmonoyl-L-isoleucine (JA-Ile). Consistent with this result, tassels and wounded leaves of Ts5 mutants displayed lower JA and JA-lle precursors and higher 12OH-JA-lle product than the wild type. Furthermore, many wounding and jasmonate pathway genes were differentially expressed in Ts5 tassels. We propose that the Ts5 phenotype results from the interruption of JA signaling during sexual differentiation via the upregulation of ZmCYP94B1 and that its proper expression maintains maize monoecy.
机译:玉米花质旺盛,有雄花和雌花分开。玉米花最初是双性恋,但通过器官逮捕获得了不同的性身份。茉莉酸(JA)途径中功能丧失的突变体仅具有雌花,原因是无法使流苏中的丝中止。 Tasselseed5(Ts5)具有此表型,但占主导地位。流苏的位置克隆和转录组学在CYP94B亚家族Ts5(ZmCYP94B1)中鉴定出异位表达的基因。 CYP94B酶可被伤口诱导并使生物活性的茉莉酰基-L-异亮氨酸(JA-Ile)失活。与该结果一致,Ts5突变体的流苏和受伤叶显示出比野生型更低的JA和JA-lle前体以及更高的12OH-JA-lle产物。此外,许多创伤和茉莉酸途径基因在Ts5流苏中差异表达。我们建议,Ts5表型是通过ZmCYP94B1的上调,在性分化过程中干扰JA信号而产生的,其正确表达可以维持玉米的雌雄同体。

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