Prieto-Dapena Pilar, Almoguera Concepción, Personat José-María, Merchan Francisco, Jordano Juan
Departamento de Biotecnología Vegetal, Instituto de Recursos Naturales y Agrobiología de Sevilla, Consejo Superior de Investigaciones Científicas (CSIC), 41012 Seville, Spain.
Departamento de Microbiología y Parasitología, Facultad de Farmacia, Universidad de Sevilla, 41012 Seville, Spain.
J Exp Bot. 2017 Feb 1;68(5):1097-1108. doi: 10.1093/jxb/erx020.
HSFA9 is a seed-specific transcription factor that in sunflower (Helianthus annuus) is involved in desiccation tolerance and longevity. Here we show that the constitutive overexpression of HSFA9 in tobacco (Nicotiana tabacum) seedlings attenuated hypocotyl growth under darkness and accelerated the initial photosynthetic development. Plants overexpressing HSFA9 increased accumulation of carotenoids, chlorophyllide, and chlorophyll, and displayed earlier unfolding of the cotyledons. HSFA9 enhanced phytochrome-dependent light responses, as shown by an intensified hypocotyl length reduction after treatments with continuous far-red or red light. This observation indicated the involvement of at least two phytochromes: PHYA and PHYB. Reduced hypocotyl length under darkness did not depend on phytochrome photo-activation; this was inferred from the lack of effect observed using far-red light pulses applied before the dark treatment. HSFA9 increased the expression of genes that activate photomorphogenesis, including PHYA, PHYB, and HY5. HSFA9 might directly upregulate PHYA and indirectly affect PHYB transcription, as suggested by transient expression assays. Converse effects on gene expression, greening, and cotyledon unfolding were observed using a dominant-negative form of HSFA9, which was overexpressed under a seed-specific promoter. This work uncovers a novel transcriptional link, through HSFA9, between seed maturation and early photomorphogenesis. In all, our data suggest that HSFA9 enhances photomorphogenesis via early transcriptional effects that start in seeds under darkness.
HSFA9是一种种子特异性转录因子,在向日葵(Helianthus annuus)中参与耐旱性和寿命调节。我们在此表明,在烟草(Nicotiana tabacum)幼苗中组成型过表达HSFA9可减弱黑暗条件下的下胚轴生长,并加速初始光合发育。过表达HSFA9的植株增加了类胡萝卜素、叶绿素酸酯和叶绿素的积累,并表现出子叶更早展开。HSFA9增强了依赖光敏色素的光反应,连续远红光或红光处理后下胚轴长度缩短加剧即表明了这一点。该观察结果表明至少有两种光敏色素参与其中:PHYA和PHYB。黑暗条件下下胚轴长度的缩短并不依赖于光敏色素的光激活;这是从黑暗处理前施加远红光脉冲未观察到效果推断出来的。HSFA9增加了激活光形态建成的基因的表达,包括PHYA、PHYB和HY5。瞬时表达分析表明,HSFA9可能直接上调PHYA并间接影响PHYB转录。使用在种子特异性启动子下过表达的显性负性形式的HSFA9,观察到了对基因表达、绿化和子叶展开的相反影响。这项工作揭示了通过HSFA9在种子成熟和早期光形态建成之间建立的一种新的转录联系。总之,我们的数据表明,HSFA9通过在黑暗条件下种子中起始的早期转录效应增强光形态建成。