Institute of Forest Genetics, Pacific Southwest Research Station, U.S. Forest Service, Davis, California, United States of America.
PLoS One. 2011 Feb 28;6(2):e17458. doi: 10.1371/journal.pone.0017458.
The developmental mechanisms regulating cell differentiation and patterning during the secondary growth of woody tissues are poorly understood. Class III HD ZIP transcription factors are evolutionarily ancient and play fundamental roles in various aspects of plant development. Here we investigate the role of a Class III HD ZIP transcription factor, POPCORONA, during secondary growth of woody stems. Transgenic Populus (poplar) trees expressing either a miRNA-resistant POPCORONA or a synthetic miRNA targeting POPCORONA were used to infer function of POPCORONA during secondary growth. Whole plant, histological, and gene expression changes were compared for transgenic and wild-type control plants. Synthetic miRNA knock down of POPCORONA results in abnormal lignification in cells of the pith, while overexpression of a miRNA-resistant POPCORONA results in delayed lignification of xylem and phloem fibers during secondary growth. POPCORONA misexpression also results in coordinated changes in expression of genes within a previously described transcriptional network regulating cell differentiation and cell wall biosynthesis, and hormone-related genes associated with fiber differentiation. POPCORONA illustrates another function of Class III HD ZIPs: regulating cell differentiation during secondary growth.
调控木质部次生生长过程中细胞分化和模式形成的发育机制还知之甚少。III 类 HD-ZIP 转录因子在植物发育的各个方面发挥着基础性作用,具有古老的进化起源。本文研究了 III 类 HD-ZIP 转录因子 POPCORONA 在木质部茎次生生长中的作用。过表达 miRNA 抗性的 POPCORONA 或靶向 POPCORONA 的合成 miRNA 的转基因杨树(杨树)被用于推断 POPCORONA 在次生生长过程中的功能。比较了转基因和野生型对照植物的全株、组织学和基因表达变化。合成 miRNA 敲低 POPCORONA 导致髓细胞异常木质化,而 miRNA 抗性 POPCORONA 的过表达导致次生生长过程中木质部和韧皮部纤维的木质化延迟。POPCORONA 的异常表达也导致了先前描述的调控细胞分化和细胞壁生物合成的转录网络以及与纤维分化相关的激素相关基因的表达发生协调变化。POPCORONA 说明了 III 类 HD-ZIP 蛋白的另一个功能:调控次生生长过程中的细胞分化。