Loudet Olivier, Michael Todd P, Burger Brian T, Le Metté Claire, Mockler Todd C, Weigel Detlef, Chory Joanne
Plant Biology Laboratory, The Salk Institute for Biological Studies, 10010 North Torrey Pines Road, La Jolla, CA 92037, USA.
Proc Natl Acad Sci U S A. 2008 Nov 4;105(44):17193-8. doi: 10.1073/pnas.0807264105. Epub 2008 Oct 29.
Growth in plants is modulated by a complex interplay between internal signals and external cues. Although traditional mutagenesis has been a successful approach for the identification of growth regulatory genes, it is likely that many genes involved in growth control remain to be discovered. In this study, we used the phenotypic variation between Bay-0 and Shahdara, two natural strains (accessions) of Arabidopsis thaliana, to map quantitative trait loci (QTL) affecting light- and temperature-regulated growth of the embryonic stem (hypocotyl). Using heterogeneous inbred families (HIFs), the gene underlying one QTL, LIGHT5, was identified as a tandem zinc knuckle/PLU3 domain encoding gene (At5g43630; TZP), which carries a premature stop codon in Bay-0. Hypocotyl growth assays in monochromatic light and microarray analysis demonstrate that TZP controls blue light associated growth in a time-of-day fashion by regulating genes involved in growth, such as peroxidase and cell wall synthesis genes. TZP expression is phased by the circadian clock and light/dark cycles to the beginning of the day, the time of maximal growth in A. thaliana in short-day conditions. Based on its domain structure and localization in the nucleus, we propose that TZP acts downstream of the circadian clock and photoreceptor signaling pathways to directly control genes responsible for growth. The identification of TZP thus provides new insight into how daily synchronization of growth pathways plays a critical role in growth regulation.
植物的生长受到内部信号和外部线索之间复杂相互作用的调节。尽管传统诱变已成为鉴定生长调节基因的成功方法,但可能仍有许多参与生长控制的基因有待发现。在本研究中,我们利用拟南芥的两个自然株系(种质)Bay-0和Shahdara之间的表型变异,来定位影响胚茎(下胚轴)光和温度调节生长的数量性状基因座(QTL)。利用异质近交家系(HIF),一个QTL(LIGHT5)的潜在基因被鉴定为编码串联锌指/PLU3结构域的基因(At5g43630;TZP),该基因在Bay-0中携带一个提前终止密码子。单色光下的下胚轴生长测定和微阵列分析表明,TZP通过调节参与生长的基因(如过氧化物酶和细胞壁合成基因),以一天中的特定时间模式控制蓝光相关的生长。TZP的表达受昼夜节律钟和光/暗周期调节,在一天开始时表达,这是拟南芥在短日条件下生长最快的时间。基于其结构域结构和在细胞核中的定位,我们提出TZP在昼夜节律钟和光受体信号通路的下游起作用,直接控制负责生长的基因。因此,TZP的鉴定为生长途径的每日同步如何在生长调节中发挥关键作用提供了新的见解。