Institute of Biological Chemistry, Washington State University, Pullman, WA, 99164-6340, USA.
Plant J. 2015 Mar;81(6):849-60. doi: 10.1111/tpj.12776. Epub 2015 Feb 20.
Jasmonate hormone (JA) plays critical roles in both plant defense and reproductive development. Arabidopsis thaliana plants deficient in JA-biosynthesis or -signaling are male-sterile, with defects in stamen and pollen development. MYC2, MYC3 and MYC4 are JAZ-interacting bHLH transcription factors that play a major role in controlling JA responses in vegetative tissue, but are not likely to play a role in reproductive tissue. We found that a closely related transcription factor, MYC5 (bHLH28), was able to induce JAZ promoters that control some of the early JA-responsive genes in a Daucus carota (carrot) protoplast expression system. A G-box sequence in the JAZ2 promoter was necessary and sufficient for induction by MYC5 (as it is for MYC2, MYC3 and MYC4), and induction of JAZ genes was repressed by co-expression of a stabilized, JAZ1ΔJas repressor. Two allelic myc5 mutants exhibited no overt phenotype; however, transgenic lines expressing MYC5 fused to an SRDX (SUPERMAN repressive domain X) motif phenocopied mutants defective in JA signaling. In particular, MYC5-SRDX plants were male-sterile, with defects in stamen filament elongation, anther dehiscence and pollen viability. Importantly, expression of MYB21 and other transcription factors required for stamen and pollen maturation was strongly reduced in stamens of MYC5-SRDX plants relative to the wild type. Taken together, these results indicate that MYC5, probably together with other, redundant transcription factors, may be activated by JA signaling to induce the expression of MYB21 and components required for male fertility.
茉莉酸激素(JA)在植物防御和生殖发育中都起着关键作用。缺乏 JA 生物合成或信号的拟南芥植物雄性不育,雄蕊和花粉发育缺陷。MYC2、MYC3 和 MYC4 是 JAZ 相互作用的 bHLH 转录因子,它们在控制营养组织中的 JA 反应中起主要作用,但不太可能在生殖组织中发挥作用。我们发现,一个密切相关的转录因子 MYC5(bHLH28),能够在胡萝卜原生质体表达系统中诱导控制一些早期 JA 反应基因的 JAZ 启动子。JAZ2 启动子中的 G 盒序列是由 MYC5 诱导所必需和充分的(就像 MYC2、MYC3 和 MYC4 一样),并且 JAZ 基因的诱导受到稳定的 JAZ1ΔJas 抑制剂共表达的抑制。两个等位基因 myc5 突变体没有明显的表型;然而,表达 MYC5 与 SRDX(超人抑制域 X)基序融合的转基因系表现出 JA 信号缺陷的突变体表型。特别是,MYC5-SRDX 植物雄性不育,雄蕊花丝伸长、花药开裂和花粉活力缺陷。重要的是,相对于野生型,MYC5-SRDX 植物的雄蕊中,用于雄蕊和花粉成熟的 MYB21 和其他转录因子的表达强烈降低。总之,这些结果表明,MYC5 可能与其他冗余转录因子一起,可能被 JA 信号激活,诱导 MYB21 和雄性育性所需成分的表达。