Debeaujon I, Peeters A J, Léon-Kloosterziel K M, Koornneef M
Laboratory of Genetics, Graduate School of Experimental Plant Sciences, Wageningen University, Dreijenlaan 2, 6703 HA Wageningen, The Netherlands.
Plant Cell. 2001 Apr;13(4):853-71. doi: 10.1105/tpc.13.4.853.
Phenolic compounds that are present in the testa interfere with the physiology of seed dormancy and germination. We isolated a recessive Arabidopsis mutant with pale brown seeds, transparent testa12 (tt12), from a reduced seed dormancy screen. Microscopic analysis of tt12 developing and mature testas revealed a strong reduction of proanthocyanidin deposition in vacuoles of endothelial cells. Double mutants with tt12 and other testa pigmentation mutants were constructed, and their phenotypes confirmed that tt12 was affected at the level of the flavonoid biosynthetic pathway. The TT12 gene was cloned and found to encode a protein with similarity to prokaryotic and eukaryotic secondary transporters with 12 transmembrane segments, belonging to the MATE (multidrug and toxic compound extrusion) family. TT12 is expressed specifically in ovules and developing seeds. In situ hybridization localized its transcript in the endothelium layer, as expected from the effect of the tt12 mutation on testa flavonoid pigmentation. The phenotype of the mutant and the nature of the gene suggest that TT12 may control the vacuolar sequestration of flavonoids in the seed coat endothelium.
种皮中存在的酚类化合物会干扰种子休眠和萌发的生理过程。我们从一个降低种子休眠的筛选中分离出了一个具有浅棕色种子的隐性拟南芥突变体,即透明种皮12(tt12)。对tt12发育中的和成熟的种皮进行显微镜分析发现,内皮细胞液泡中的原花青素沉积显著减少。构建了tt12与其他种皮色素沉着突变体的双突变体,其表型证实tt12在类黄酮生物合成途径水平上受到影响。克隆了TT12基因,发现它编码一种与具有12个跨膜区段的原核和真核二级转运蛋白相似的蛋白质,属于MATE(多药和有毒化合物外排)家族。TT12在胚珠和发育中的种子中特异性表达。原位杂交将其转录本定位在内皮层,这与tt12突变对种皮类黄酮色素沉着的影响预期一致。突变体的表型和基因性质表明,TT12可能控制种皮内皮中类黄酮的液泡隔离。