Tsuda Katsutoshi, Abraham-Juarez Maria-Jazmin, Maeno Akiteru, Dong Zhaobin, Aromdee Dale, Meeley Robert, Shiroishi Toshihiko, Nonomura Ken-Ichi, Hake Sarah
Experimental Farm, National Institute of Genetics, Mishima, Shizuoka 411-8540, Japan.
Department of Genetics, School of Life Science, Graduate University for Advanced Studies, Mishima, Shizuoka 411-8540, Japan.
Plant Cell. 2017 May;29(5):1105-1118. doi: 10.1105/tpc.16.00967. Epub 2017 Apr 5.
Monocot stems lack the vascular cambium and instead have characteristic structures in which intercalary meristems generate internodes and veins remain separate and scattered. However, developmental processes of these unique structures have been poorly described. BELL1-like homeobox (BLH) transcription factors (TFs) are known to heterodimerize with KNOTTED1-like homeobox TFs to play crucial roles in shoot meristem maintenance, but their functions are elusive in monocots. We found that maize () BLH12 and BLH14 have redundant but important roles in stem development. BLH12/14 interact with KNOTTED1 (KN1) in vivo and accumulate in overlapping domains in shoot meristems, young stems, and provascular bundles. Similar to loss-of-function mutants, () double mutants fail to maintain axillary meristems. Unique to is an abnormal tassel branching and precocious internode differentiation that results in dwarfism and reduced veins in stems. Micro-computed tomography observation of vascular networks revealed that double mutants had reduced vein number due to fewer intermediate veins in leaves and precocious anastomosis in young stems. Based on these results, we propose two functions of BLH12/14 during stem development: (1) maintaining intercalary meristems that accumulate KN1 and prevent precocious internode differentiation and (2) preventing precocious anastomosis of provascular bundles in young stems to ensure the production of sufficient independent veins.
单子叶植物茎缺乏维管形成层,取而代之的是具有特征性结构,其中居间分生组织产生节间,叶脉保持分离且分散。然而,这些独特结构的发育过程却鲜有描述。已知类BELL1同源异型框(BLH)转录因子(TFs)与类KNOTTED1同源异型框TFs异源二聚化,在茎尖分生组织维持中发挥关键作用,但它们在单子叶植物中的功能尚不清楚。我们发现玉米BLH12和BLH14在茎发育中具有冗余但重要的作用。BLH12/14在体内与KNOTTED1(KN1)相互作用,并在茎尖分生组织、幼茎和原形成层束的重叠区域积累。与功能缺失突变体类似,玉米双突变体无法维持腋生分生组织。玉米特有的是雄穗分支异常和节间早熟分化,导致植株矮小和茎中叶脉减少。对维管网络的微计算机断层扫描观察表明,双突变体由于叶片中间叶脉较少和幼茎早熟吻合,叶脉数量减少。基于这些结果,我们提出BLH12/14在茎发育过程中的两个功能:(1)维持积累KN1的居间分生组织,防止节间早熟分化;(2)防止幼茎中原形成层束的早熟吻合,以确保产生足够数量的独立叶脉。