Umber Marie, Clément Bernadette, Otten Léon
Institut de Biologie Moléculaire des Plantes, CNRS UPR2357, Rue du Géneral Zimmer 12, 67084 Strasbourg, France.
Mol Plant Microbe Interact. 2005 Mar;18(3):205-11. doi: 10.1094/MPMI-18-0205.
The related orf8 and iaaM T-DNA genes from Agrobacterium are each composed of two distinct parts. The 5' parts (called Norf8 or NiaaM) encode a 200-amino-acid (aa) sequence with homology to various T-DNA oncoproteins such as RolB, RolC, and 6b. The 3' parts (Corf8 or CiaaM) encode a 550-aa sequence with homology to IaaM proteins from Pseudomonas and Pantoea spp. Whereas iaaM genes encode flavin adenine dinucleotide (FAD)-dependent tryptophan 2-monooxygenases that catalyze the synthesis of indole-3-acetamide (IAM), A4-orf8 from Agrobacterium rhizogenes A4 does not. Plants expressing a 2x35S-A4-Norf8 construct accumulate soluble sugars and starch. We now have regenerated plants that express the full-size 2x35S-A4-orf8 and the truncated 2x35S-A4-Corf8 gene. 2x35S-A4-Corf8 plants accumulate starch and show reduced growth like 2x35S-A4-Norf8 plants but, in addition, display a novel set of characteristic growth modifications. These consist of leaf hypertrophy and hyperplasia (blisters); thick, dark-green leaves; thick stems; and swollen midveins. Mutations in the putative FAD-binding site of A4-Orf8 did not affect the blister syndrome. Plants expressing 2x35S-A4-Corf8 had a normal phenotype but contained less starch and soluble sugars than did wild-type plants. When 2x35S-A4-Corf8 plants were crossed to starch-accumulating 2x35S-A4-Norf8 plants with reduced growth, A4-Corf8 partially restored growth and reduced starch accumulation. A4-Corf8xA4-Norf8 crosses did not lead to the blister syndrome, suggesting that this requires physical linkage of the A4-NOrf8 and A4-COrf8 sequences.
来自农杆菌的相关orf8和iaaM T-DNA基因均由两个不同的部分组成。5'部分(称为Norf8或NiaaM)编码一个200个氨基酸(aa)的序列,与各种T-DNA癌蛋白如RolB、RolC和6b具有同源性。3'部分(Corf8或CiaaM)编码一个550个氨基酸的序列,与来自假单胞菌属和泛菌属的IaaM蛋白具有同源性。虽然iaaM基因编码黄素腺嘌呤二核苷酸(FAD)依赖性色氨酸2-单加氧酶,催化吲哚-3-乙酰胺(IAM)的合成,但发根农杆菌A4的A4-orf8却不能。表达2x35S-A4-Norf8构建体的植物积累可溶性糖和淀粉。我们现在已经再生出了表达全长2x35S-A4-orf8和截短的2x35S-A4-Corf8基因的植物。2x35S-A4-Corf8植物积累淀粉,并且像2x35S-A4-Norf8植物一样生长减缓,但除此之外,还表现出一组新的特征性生长改变。这些改变包括叶片肥大和增生(水泡);叶片厚且深绿;茎粗;以及中脉肿胀。A4-Orf8推定的FAD结合位点的突变并不影响水泡综合征。表达2x35S-A4-Corf8的植物具有正常表型,但与野生型植物相比,其淀粉和可溶性糖含量较低。当将2x35S-A4-Corf8植物与生长减缓的淀粉积累型2x35S-A4-Norf8植物杂交时,A4-Corf8部分恢复了生长并减少了淀粉积累。A4-Corf8×A4-Norf8杂交并未导致水泡综合征,这表明这需要A4-NOrf8和A4-COrf8序列的物理连接。