Pacín Manuel, Semmoloni Mariana, Legris Martina, Finlayson Scott A, Casal Jorge J
IFEVA, Facultad de Agronomía, Universidad de Buenos Aires and CONICET, Av. San Martın 4453, 1417, Buenos Aires, Argentina.
Fundación Instituto Leloir, Instituto de Investigaciones Bioquímicas de Buenos Aires-CONICET, 1405, Buenos Aires, Argentina.
New Phytol. 2016 Aug;211(3):967-79. doi: 10.1111/nph.13965. Epub 2016 Apr 22.
Shade-avoidance responses require CONSTITUTIVE PHOTOMORPHOGENESIS 1 (COP1) but the mechanisms of action of COP1 under shade have not been elucidated. Using simulated shade and control conditions, we analysed: the transcriptome and the auxin levels of cop1 and phytochrome interacting factor 1 (pif1) pif3 pif4 pif5 (pifq) mutants; the dynamics of ELONGATED HYPOCOTYL 5 (HY5) and LONG HYPOCOTYL IN FAR-RED (HFR1) proteins; and the epistatic relationships between cop1 and pif3, pif4, pif5, hy5 and hfr1 mutations in Arabidopsis thaliana. Despite severely impaired shade-avoidance responses, only a few genes that responded to shade in the wild-type failed to do so in cop1. Shade enhanced the convergence between cop1 and pifq transcriptomes, mainly on shade-avoidance marker genes. Shade failed to increase auxin levels in cop1. Residual shade avoidance in cop1 was not further reduced by the pif3, pif4 or pif5 mutations, suggesting convergent pathways. HFR1 stability decreased under shade in a COP1-dependent manner but shade increased HY5 stability. The cop1 mutant retains responses to shade and is more specifically impaired in shade avoidance. COP1 promotes the degradation of HFR1 under shade, thus increasing the ability of PIFs to control gene expression, increase auxin levels and promote stem growth.
避荫反应需要组成型光形态建成1(COP1),但COP1在遮荫条件下的作用机制尚未阐明。利用模拟遮荫和对照条件,我们分析了:cop1和光敏色素相互作用因子1(pif1)、pif3、pif4、pif5(pifq)突变体的转录组和生长素水平;伸长下胚轴5(HY5)和远红光下的长下胚轴(HFR1)蛋白的动态变化;以及拟南芥中cop1与pif3、pif4、pif5、hy5和hfr1突变之间的上位关系。尽管避荫反应严重受损,但在野生型中对遮荫有反应的基因中,只有少数在cop1中没有反应。遮荫增强了cop1和pifq转录组之间的趋同,主要集中在避荫标记基因上。遮荫未能提高cop1中的生长素水平。cop1中残留的避荫反应不会因pif3、pif4或pif5突变而进一步降低,表明存在趋同途径。在遮荫条件下,HFR1的稳定性以COP1依赖的方式降低,但遮荫增加了HY5的稳定性。cop1突变体保留了对遮荫的反应,并且在避荫方面更具体地受损。COP1在遮荫条件下促进HFR1的降解,从而提高PIFs控制基因表达、增加生长素水平和促进茎生长的能力。