Nato A, Mirshahi A, Tichtinsky G, Mirshahi M, Faure J P, Lavergne D, De Buyser J, Jean C, Ducreux G, Henry Y
Laboratoire de Morphogénèse Expérimentale Végétale, Université Paris XI, Orsay, France.
Plant Physiol. 1997 Mar;113(3):801-7. doi: 10.1104/pp.113.3.801.
An immunochemical approach was used to detect the expression of putative guanine nucleotide-binding proteins (G-proteins), arrestin, and nucleoside diphosphate kinases during wheat (Triticum aestivum) tissue culture initiated from immature embryos. Both the soluble and membrane extracts from the immature embryos revealed bands of 58, 40, and 16 kD with antibodies to G-protein (alpha subunit), arrestin, and nucleoside diphosphate kinase, respectively. These proteins were overexpressed in vitro in both nonembryogenic callus and embryogenic cultures. An additional soluble protein (32 kD) was detected by anti-G alpha antibodies in cultured tissues but not in immature embryos, suggesting a possible function in cell multiplication. Moreover, somatic embryogenesis was associated with the appearance of a 29-kD protein reactive with anti-arrstin antibodies, both in soluble and membrane fractions. Tissue-cultured genetic stocks of Chinese Spring wheat, including the disomic, 36 ditelosomic, and 6 nullisomic-tetrasomic wheat lines, were used to ascertain the chromosomal location of the genes encoding the 29-kD arrestin-like protein. The lack of a signal with the nonembryogenic ditelosomic 3 D short chromosome arm line suggests that the 3 D long chromosome arm possesses at least one gene involved in the expression of the 29-kD protein. The putative role of the 29-kD protein in signal-transduction regulating embryogenesis is discussed.
采用免疫化学方法检测从小麦(普通小麦)未成熟胚起始的组织培养过程中假定的鸟嘌呤核苷酸结合蛋白(G蛋白)、抑制蛋白和核苷二磷酸激酶的表达。未成熟胚的可溶性提取物和膜提取物分别与抗G蛋白(α亚基)、抑制蛋白和核苷二磷酸激酶的抗体反应,显示出58、40和16 kD的条带。这些蛋白在非胚性愈伤组织和胚性培养物中均在体外过表达。抗Gα抗体在培养组织中检测到一种额外的可溶性蛋白(32 kD),但在未成熟胚中未检测到,提示其可能在细胞增殖中发挥作用。此外,体细胞胚胎发生与一种29 kD蛋白的出现有关,该蛋白在可溶性和膜组分中均与抗抑制蛋白抗体发生反应。利用中国春小麦的组织培养遗传材料,包括二体、36个端体和6个缺体-四体小麦品系,来确定编码29 kD抑制蛋白样蛋白的基因的染色体定位。非胚性3D短染色体臂端体品系缺乏信号,表明3D长染色体臂至少拥有一个参与29 kD蛋白表达的基因。本文讨论了29 kD蛋白在调节胚胎发生的信号转导中的假定作用。