Pourcel Lucille, Routaboul Jean-Marc, Kerhoas Lucien, Caboche Michel, Lepiniec Loïc, Debeaujon Isabelle
Laboratoire de Biologie des Semences, Unité Mixte de Recherche 204, Institut National de la Recherche Agronomique/Institut National Agronomique Paris-Grignon, Institut Jean-Pierre Bourgin, 78026 Versailles, France.
Plant Cell. 2005 Nov;17(11):2966-80. doi: 10.1105/tpc.105.035154. Epub 2005 Oct 21.
The Arabidopsis thaliana transparent testa10 (tt10) mutant exhibits a delay in developmentally determined browning of the seed coat, also called the testa. Seed coat browning is caused by the oxidation of flavonoids, particularly proanthocyanidins, which are polymers of flavan-3-ol subunits such as epicatechin and catechin. The tt10 mutant seeds accumulate more epicatechin monomers and more soluble proanthocyanidins than wild-type seeds. Moreover, intact testa cells of tt10 cannot trigger H2O2-independent browning in the presence of epicatechin and catechin, in contrast with wild-type cells. UV-visible light detection and mass spectrometry revealed that the major oxidation products obtained with epicatechin alone are yellow dimers called dehydrodiepicatechin A. These products differ from proanthocyanidins in the nature and position of their interflavan linkages. Flavonol composition was also affected in tt10 seeds, which exhibited a higher ratio of quercetin rhamnoside monomers versus dimers than wild-type seeds. We identified the TT10 gene by a candidate gene approach. TT10 encodes a protein with strong similarity to laccase-like polyphenol oxidases. It is expressed essentially in developing testa, where it colocalizes with the flavonoid end products proanthocyanidins and flavonols. Together, these data establish that TT10 is involved in the oxidative polymerization of flavonoids and functions as a laccase-type flavonoid oxidase.
拟南芥透明种皮10(tt10)突变体在种子表皮(也称为种皮)发育决定的褐变过程中表现出延迟。种皮褐变是由类黄酮尤其是原花青素的氧化引起的,原花青素是黄烷-3-醇亚基(如表儿茶素和儿茶素)的聚合物。与野生型种子相比,tt10突变体种子积累了更多的表儿茶素单体和更多的可溶性原花青素。此外,与野生型细胞不同,tt10完整的种皮细胞在存在表儿茶素和儿茶素的情况下不能触发不依赖过氧化氢的褐变。紫外-可见光检测和质谱分析表明,单独用表儿茶素获得的主要氧化产物是称为脱氢二表儿茶素A的黄色二聚体。这些产物在其黄烷间连接的性质和位置上与原花青素不同。tt10种子中的黄酮醇组成也受到影响,与野生型种子相比,其槲皮素鼠李糖苷单体与二聚体的比例更高。我们通过候选基因方法鉴定了TT10基因。TT10编码一种与漆酶样多酚氧化酶高度相似的蛋白质。它主要在发育中的种皮中表达,在那里它与类黄酮终产物原花青素和黄酮醇共定位。总之,这些数据表明TT10参与类黄酮的氧化聚合,并作为漆酶型类黄酮氧化酶发挥作用。