Stanga John P, Boonsirichai Kanokporn, Sedbrook John C, Otegui Marisa S, Masson Patrick H
Laboratory of Genetics, Department of Botany, University of Wisconsin, Madison, Wisconsin 53706, USA.
Plant Physiol. 2009 Apr;149(4):1896-905. doi: 10.1104/pp.109.135301. Epub 2009 Feb 11.
Arabidopsis (Arabidopsis thaliana) roots perceive gravity and reorient their growth accordingly. Starch-dense amyloplasts within the columella cells of the root cap are important for gravitropism, and starchless mutants such as pgm1 display an attenuated response to gravistimulation. The altered response to gravity1 (arg1) mutant is known to be involved with the early phases of gravity signal transduction. arg1 responds slowly to gravistimulation and is in a genetically distinct pathway from pgm1, as pgm1 mutants enhance the gravitropic defect of arg1. arg1 seeds were mutagenized with ethylmethane sulfonate to identify new mutants that enhance the gravitropic defect of arg1. Two modifier of arg1 mutants (mar1 and mar2) grow in random directions only when arg1 is present, do not affect phototropism, and respond like the wild type to application of phytohormones. Both have mutations affecting different components of the Translocon of Outer Membrane of Chloroplasts (TOC) complex. mar1 possesses a mutation in the TOC75-III gene; mar2 possesses a mutation in the TOC132 gene. Overexpression of TOC132 rescues the random growth phenotype of mar2 arg1 roots. Root cap amyloplasts in mar2 arg1 appear ultrastructurally normal. They saltate like the wild type and sediment at wild-type rates upon gravistimulation. These data point to a role for the plastidic TOC complex in gravity signal transduction within the statocytes.
拟南芥(Arabidopsis thaliana)的根能够感知重力并相应地重新定向其生长。根冠柱细胞内富含淀粉的造粉体对向重力性很重要,而诸如pgm1这样的无淀粉突变体对重力刺激的反应减弱。已知重力反应改变1(arg1)突变体与重力信号转导的早期阶段有关。arg1对重力刺激反应缓慢,并且与pgm1处于遗传上不同的途径,因为pgm1突变体增强了arg1的向重力性缺陷。用甲磺酸乙酯对arg1种子进行诱变,以鉴定增强arg1向重力性缺陷的新突变体。两个arg1突变体修饰因子(mar1和mar2)仅在存在arg1时随机生长,不影响向光性,并且对植物激素的应用反应与野生型相似。两者都有影响叶绿体外膜转位子(TOC)复合体不同组分的突变。mar1在TOC75-III基因中有一个突变;mar2在TOC132基因中有一个突变。TOC132的过表达挽救了mar2 arg1根的随机生长表型。mar2 arg1中的根冠造粉体在超微结构上看起来正常。它们像野生型一样跳跃,并在重力刺激下以野生型速率沉降。这些数据表明质体TOC复合体在平衡细胞内的重力信号转导中起作用。