Umber Marie, Voll Lars, Weber Andreas, Michler Pierre, Otten Léon
Institut de Biologie Moléculaire des Plantes, CNRS UPR2357, Strasbourg, France.
Mol Plant Microbe Interact. 2002 Sep;15(9):956-62. doi: 10.1094/MPMI.2002.15.9.956.
Many Agrobacterium T-DNA genes belong to the highly diverse rolB family. The mode of action of most of these genes is still unknown. rolB-like sequences also are present at the 5' ends of the T-DNA-located iaaM genes and the iaaM homolog orf8, whereas iaaM genes from Pseudomonas and Erwinia spp. lack such sequences. iaaM genes encode tryptophan monooxygenases; these enzymes convert tryptophan into indole-3-acetamide, a precursor of indole-3-acetic acid. Tobacco plants expressing the rolB-like part of the A4 orf8 gene (2x35S-A4-Norf8 plants) accumulate glucose, fructose, sucrose, and starch and resemble sucrose transporter (NtSUT1) antisense plants. Different lines of evidence indicate that 2x35S-A4-Norf8 plants export less sucrose from source leaves. Glucose, fructose, sucrose, and starch accumulate in source leaves during sink-source transition, whereas sink tissues like petioles and midveins contain lower levels than normal. Petiole exudation experiments demonstrate a significant decrease in export of label after 14C-sucrose infiltration and after 14CO2 labeling. Grafting of stunted homozygous 2x35S-A4-Norf8 plants onto wild-type rootstocks restores growth, indicating that unloading is not affected. Growth of 2x35S-A4-Norf8 seedlings is inhibited on naphthalene acetic acid-containing media, suggesting a link between sucrose transport and auxin sensitivity.
许多农杆菌T-DNA基因属于高度多样化的rolB家族。这些基因中大多数的作用模式仍然未知。rolB样序列也存在于位于T-DNA的iaaM基因和iaaM同源物orf8的5'端,而来自假单胞菌属和欧文氏菌属的iaaM基因缺乏此类序列。iaaM基因编码色氨酸单加氧酶;这些酶将色氨酸转化为吲哚-3-乙酰胺,吲哚-3-乙酸的前体。表达A4 orf8基因rolB样部分的烟草植株(2x35S-A4-Norf8植株)积累葡萄糖、果糖、蔗糖和淀粉,类似于蔗糖转运蛋白(NtSUT1)反义植株。不同的证据表明,2x35S-A4-Norf8植株从源叶输出的蔗糖较少。在源库转换期间,葡萄糖、果糖、蔗糖和淀粉在源叶中积累,而叶柄和中脉等库组织中的含量低于正常水平。叶柄渗出实验表明,在14C-蔗糖渗入和14CO2标记后,标记物的输出显著减少。将发育不良的纯合2x35S-A4-Norf8植株嫁接到野生型砧木上可恢复生长,表明卸载不受影响。2x35S-A4-Norf8幼苗在含萘乙酸的培养基上生长受到抑制,这表明蔗糖运输与生长素敏感性之间存在联系。