Westberg J, Odom W R, Guikema J A
Division of Biology, Kansas State University, Manhattan 66506-4903, USA.
J Exp Zool. 1994 Jul 1;269(3):223-9. doi: 10.1002/jez.1402690307.
In Phaseolus vulgaris, primary roots show gravitational sensitivity soon after emerging from the seed. In contrast, lateral roots are agravitropic during early development, and become gravitropic after several cm growth. Primary and lateral root tissues were examined by polyacrylamide gel electrophoresis, coupled with western blotting techniques, to compare proteins which may contribute to the acquisition of gravitational sensitivity. Root tips and zones of cell elongation were compared for each root type, using immunological probes for calmodulin, alpha-actin, alpha-tubulin, and proteins of the plastid envelope. Lateral roots contained qualitatively less calmodulin, and showed a slightly different pattern of actin-related epitope proteins, than did primary root tissues, suggesting that polypeptide differences may contribute to the gravitational sensitivity which these root types express.
在菜豆中,初生根从种子中伸出后很快就表现出重力敏感性。相比之下,侧根在早期发育过程中是无向重力性的,在生长几厘米后变为向重力性。通过聚丙烯酰胺凝胶电泳结合蛋白质印迹技术对初生根和侧根组织进行检测,以比较可能有助于获得重力敏感性的蛋白质。使用针对钙调蛋白、α-肌动蛋白、α-微管蛋白和质体包膜蛋白的免疫探针,对每种根类型的根尖和细胞伸长区进行了比较。与初生根组织相比,侧根中钙调蛋白的含量在质量上较少,并且肌动蛋白相关表位蛋白的模式略有不同,这表明多肽差异可能有助于这些根类型所表现出的重力敏感性。