Commonwealth Scientific and Industrial Research Organization Plant Industry, Queensland Bioscience Precinct, St. Lucia, Brisbane, Queensland 4067, Australia.
Plant Physiol. 2012 Sep;160(1):407-18. doi: 10.1104/pp.112.199067. Epub 2012 Jul 10.
The LATERAL ORGAN BOUNDARIES (LOB) DOMAIN (LBD) gene family encodes plant-specific transcriptional regulators functioning in organ development. In a screen of Arabidopsis (Arabidopsis thaliana) sequence-indexed transferred DNA insertion mutants, we found disruption of the LOB DOMAIN-CONTAINING PROTEIN20 (LBD20) gene led to increased resistance to the root-infecting vascular wilt pathogen Fusarium oxysporum. In wild-type plants, LBD20 transcripts were barely detectable in leaves but abundant in roots, where they were further induced after F. oxysporum inoculation or methyl jasmonate treatment. Induction of LBD20 expression in roots was abolished in coronatine insensitive1 (coi1) and myc2 (allelic to jasmonate insensitive1) mutants, suggesting LBD20 may function in jasmonate (JA) signaling. Consistent with this, expression of the JA-regulated THIONIN2.1 (Thi2.1) and VEGETATIVE STORAGE PROTEIN2 (VSP2) genes were up-regulated in shoots of lbd20 following treatment of roots with F. oxysporum or methyl jasmonate. However, PLANT DEFENSIN1.2 expression was unaltered, indicating a repressor role for LBD20 in a branch of the JA-signaling pathway. Plants overexpressing LBD20 (LBD20-OX) had reduced Thi2.1 and VSP2 expression. There was a significant correlation between increased LBD20 expression in the LBD20-OX lines with both Thi2.1 and VSP2 repression, and reduced survival following F. oxysporum infection. Chlorosis resulting from application of F. oxysporum culture filtrate was also reduced in lbd20 leaves relative to the wild type. Taken together, LBD20 is a F. oxysporum susceptibility gene that appears to regulate components of JA signaling downstream of COI1 and MYC2 that are required for full elicitation of F. oxysporum- and JA-dependent responses. To our knowledge, this is the first demonstration of a role for a LBD gene family member in either biotic stress or JA signaling.
侧生器官边界(LOB)域(LBD)基因家族编码在器官发育中起作用的植物特异性转录调节剂。在拟南芥(Arabidopsis thaliana)序列索引转座 DNA 插入突变体的筛选中,我们发现 LOB 域包含蛋白 20(LBD20)基因的破坏导致对根侵染的维管束萎病菌 Fusarium oxysporum 的抗性增加。在野生型植物中,LBD20 转录本在叶片中几乎检测不到,但在根中丰富,在根中接种 Fusarium oxysporum 或茉莉酸甲酯处理后进一步诱导。在 coronatine insensitive1(coi1)和 myc2(jasmonate insensitive1 的等位基因)突变体中,根中 LBD20 表达的诱导被消除,表明 LBD20 可能在茉莉酸(JA)信号转导中起作用。与此一致,在根中用 Fusarium oxysporum 或茉莉酸甲酯处理后,lbd20 植株的 JA 调节的 THIONIN2.1(Thi2.1)和 VSP2 基因的表达在地上部被上调。然而,PLANT DEFENSIN1.2 的表达没有改变,表明 LBD20 在 JA 信号通路的一个分支中起抑制作用。过表达 LBD20(LBD20-OX)的植物的 Thi2.1 和 VSP2 表达减少。在 LBD20-OX 系中 LBD20 表达增加与 Thi2.1 和 VSP2 抑制以及 Fusarium oxysporum 感染后存活率降低之间存在显著相关性。与野生型相比,用 Fusarium oxysporum 培养滤液处理后,lbd20 叶片的黄化也减少。总之,LBD20 是一个 Fusarium oxysporum 易感性基因,似乎调节 COI1 和 MYC2 下游的 JA 信号转导的组成部分,这些组成部分是充分激发 Fusarium oxysporum 和 JA 依赖性反应所必需的。据我们所知,这是首次证明 LBD 基因家族成员在生物胁迫或 JA 信号转导中发挥作用。