Hebelstrup Kim H, Nielsen Morten Munch, Carciofi Massimiliano, Andrzejczak Olga, Shaik Shahnoor Sultana, Blennow Andreas, Palcic Monica M
Department of Molecular Biology and Genetics, Section of Crop Genetics and Biotechnology, Aarhus University, Forsøgsvej 1, 4200 Slagelse, Denmark.
Carlsberg Laboratory, Gamle Carlsberg Vej 10, DK-1799 København V, Denmark.
J Exp Bot. 2017 Feb 1;68(5):931-941. doi: 10.1093/jxb/erw503.
Amylose synthesis is strictly associated with activity of granule-bound starch synthase (GBSS) enzymes. Among several crops there are cultivars containing starch types with either little or no amylose known as near-waxy or waxy. This (near) amylose-free phenotype is associated with a single locus (waxy) which has been mapped to GBSS-type genes in different crops. Most waxy varieties are a result of either low or no expression of a GBSS gene. However, there are some waxy cultivars where the GBSS enzymes are expressed normally. For these types, single nucleotide polymorphisms have been hypothesized to represent amino-acid substitutions leading to loss of catalytic activity. We here confirm that the HvGBSSIa enzyme from one such waxy barley variety, CDC_Alamo, has a 90% reduction in catalytic activity. We also engineered plants with expression of transgenic C-terminal green fluorescent protein-tagged HvGBSSIa of both the non-waxy type and of the CDC_Alamo type to monitor their subcellular localization patterns in grain endosperm. HvGBSSIa from non-waxy cultivars was found to localize in discrete concentric spheres strictly within starch granules. In contrast, HvGBSSIa from waxy CDC_Alamo showed deficient starch targeting mostly into unknown subcellular bodies of 0.5-3 µm in size, indicating that the waxy phenotype of CDC_Alamo is associated with deficient targeting of HvGBSSIa into starch granules.
直链淀粉的合成与颗粒结合型淀粉合酶(GBSS)的活性密切相关。在几种作物中,存在一些含有几乎不含或完全不含直链淀粉的淀粉类型的品种,即近糯性或糯性品种。这种(近)无直链淀粉的表型与一个单一基因座(蜡质基因座)相关,该基因座已在不同作物中定位到GBSS类型的基因上。大多数糯性品种是由于GBSS基因表达低或不表达所致。然而,也有一些糯性品种,其GBSS酶正常表达。对于这些类型,有人推测单核苷酸多态性代表导致催化活性丧失的氨基酸取代。我们在此证实,来自一个这样的糯性大麦品种CDC_Alamo的HvGBSSIa酶的催化活性降低了90%。我们还构建了表达非糯性类型和CDC_Alamo类型的转基因C端绿色荧光蛋白标记的HvGBSSIa的植物,以监测它们在谷物胚乳中的亚细胞定位模式。发现非糯性品种的HvGBSSIa定位于淀粉粒内严格呈离散同心球的位置。相比之下,来自糯性CDC_Alamo的HvGBSSIa显示淀粉靶向缺陷,大多进入大小为0.5 - 3 µm的未知亚细胞体,这表明CDC_Alamo的糯性表型与HvGBSSIa靶向淀粉粒缺陷有关。