Centro de Biotecnología y Genómica de Plantas (CBGP), Instituto Nacional de Investigación y Tecnología Agraria y Alimentaria, Campus de Montegancedo, Pozuelo de Alarcón, ZIP 28223, Madrid, Spain.
Centro de Investigación en Producción Animal y Vegetal (CIPAV), Timac Agro Int-Roullier Group, Polígono Arazuri-Orcoyen, C/C n Degrees 32, ZIP 31160, Orcoyen, Spain.
New Phytol. 2019 Oct;224(1):242-257. doi: 10.1111/nph.16020. Epub 2019 Jul 26.
Phosphate (Pi) is an essential nutrient for all organisms. Roots are underground organs, but the majority of the root biology studies have been done on root systems growing in the presence of light. Root illumination alters the Pi starvation response (PSR) at different intensities. Thus, we have analyzed morphological, transcriptional and physiological responses to Pi starvation in dark-grown roots. We have identified new genes and pathways regulated by Pi starvation that were not described previously. We also show that Pi-starved plants increase the cis-zeatin (cZ) : trans-zeatin (tZ) ratio. Transcriptomic analyses show that tZ preferentially represses cell cycle and PSR genes, whereas cZ induces genes involved in cell and root hair elongation and differentiation. In fact, cZ-treated seedlings show longer root system as well as longer root hairs compared with tZ-treated seedlings, increasing the total absorbing surface. Mutants with low cZ concentrations do not allocate free Pi in roots during Pi starvation. We propose that Pi-starved plants increase the cZ : tZ ratio to maintain basal cytokinin responses and allocate Pi in the root system to sustain its growth. Therefore, cZ acts as a PSR hormone that stimulates root and root hair elongation to enlarge the root absorbing surface and to increase Pi concentrations in roots.
磷(Pi)是所有生物的必需营养素。根是地下器官,但大多数根生物学研究都是在有光照的条件下对根系生长进行的。根系光照以不同的强度改变磷饥饿响应(PSR)。因此,我们分析了黑暗生长的根系对磷饥饿的形态、转录和生理响应。我们鉴定了以前未描述的受磷饥饿调控的新基因和途径。我们还表明,缺磷的植物增加了顺式玉米素(cZ):反式玉米素(tZ)的比例。转录组分析表明,tZ 优先抑制细胞周期和 PSR 基因,而 cZ 诱导参与细胞和根毛伸长和分化的基因。事实上,与 tZ 处理的幼苗相比,cZ 处理的幼苗具有更长的根系和更长的根毛,从而增加了总吸收面积。cZ 浓度低的突变体在磷饥饿期间不会在根系中分配游离 Pi。我们提出,缺磷的植物增加 cZ:tZ 比例以维持基础细胞分裂素反应,并在根系中分配 Pi 以维持其生长。因此,cZ 作为 PSR 激素,刺激根和根毛伸长,从而扩大根的吸收表面,并增加根系中的 Pi 浓度。