Lim H, Gounaris I, Hardison R C, Boyer C D
Department of Horticulture, Pennsylvania State University, University Park 16802.
Curr Genet. 1990 Oct;18(3):273-5. doi: 10.1007/BF00318393.
A detailed restriction map of squash chloroplast DNA (cpDNA) was constructed with five restriction endonucleases, SalI, PvuII, BglI, SacII, and PstI. The cleavage sites were mapped by sequential digestion of cpDNA using low-gelling temperature agarose. The restriction map shows that squash cpDNA is an approximately 153 kilobase (kb) circle with a large inverted repeat sequence of 23.3 kb, separated by a large (83.7 kb) and a small (22.7 kb) single copy region. Genes for a number of chloroplast polypeptides were localized on the map by hybridizing the cpDNA restriction fragments to heterologous gene-specific probes from tobacco, pea, tomato, maize, and spinach chloroplasts. The gene locations and organization of squash cpDNA are highly conserved and similar to chloroplast genomes of tomato, pepper, and Ginkgo.
利用五种限制性内切酶SalI、PvuII、BglI、SacII和PstI构建了南瓜叶绿体DNA(cpDNA)的详细限制性图谱。通过使用低熔点琼脂糖对cpDNA进行顺序酶切来定位切割位点。限制性图谱显示,南瓜cpDNA是一个约153千碱基(kb)的环状分子,具有一个23.3 kb的大反向重复序列,被一个大的(83.7 kb)和一个小的(22.7 kb)单拷贝区域隔开。通过将cpDNA限制性片段与来自烟草、豌豆、番茄、玉米和菠菜叶绿体的异源基因特异性探针杂交,在图谱上定位了许多叶绿体多肽的基因。南瓜cpDNA的基因位置和组织高度保守,与番茄、辣椒和银杏的叶绿体基因组相似。