Balagué C, Watson C F, Turner A J, Rouge P, Picton S, Pech J C, Grierson D
Ecole Nationale Supérieure Agronomique Toulouse, Laboratoire Ethylène et Maturation des Fruits, France.
Eur J Biochem. 1993 Feb 15;212(1):27-34. doi: 10.1111/j.1432-1033.1993.tb17628.x.
A cDNA clone (pMEL1) was isolated from a climacteric melon fruit cDNA library using the tomato ethylene-forming-enzyme (EFE) cDNA, pTOM13, as a probe. Northern analysis of RNA isolated from wounded leaf and fruit tissue and from preclimacteric and climacteric pericarp tissue was used to determine the pattern of pMEL1 RNA expression. pMEL1 hybridized to a 1.3-kb transcript in climacteric fruit and wounded leaf tissue but was undetectable in preclimacteric fruit and unwounded leaves. Maximal expression of pMEL1 RNA occurred in wounded ripe fruit. pMEL1 contained a 1230-bp insert containing a predicted open reading frame of 318 amino acids and molecular mass of 35.3 kDa. The predicted amino acid sequence of pMEL1 was 73-81% identical to the deduced amino acid sequences of tomato (pTOM13) EFE and EFE-related genes isolated from tomato and avocado fruit and senescent carnation petals. Genomic Southern analysis indicated that pMEL1 hybridized to a number of genomic fragments consistent with the presence of more than one pMEL1-related gene in melon. On Western analysis of total protein extracts from ripe tomato and melon fruit, using an antibody raised against tomato EFE (pTOM13) expressed in Escherichia coli, a single 35.5-kDa protein was detected. A 35-kDa product translated from in-vitro transcribed pMEL1 and immunoadsorbed by anti-EFE serum was very similar in size to the predicted 35.3-kDa pMEL1 cDNA protein product. These results indicate that pMEL1 may encode an EFE gene involved in ethylene biosynthesis during fruit ripening and may be identical to or share extensive sequence similarity with an EFE expressed in response to tissue wounding.
使用番茄乙烯形成酶(EFE)cDNA(pTOM13)作为探针,从跃变型甜瓜果实cDNA文库中分离出一个cDNA克隆(pMEL1)。通过对从受伤叶片和果实组织以及跃变前和跃变期果皮组织中分离的RNA进行Northern分析,以确定pMEL1 RNA的表达模式。pMEL1与跃变期果实和受伤叶片组织中的一个1.3kb转录本杂交,但在跃变前果实和未受伤叶片中未检测到。pMEL1 RNA在受伤的成熟果实中表达量最高。pMEL1包含一个1230bp的插入片段,其中含有一个预测的318个氨基酸的开放阅读框,分子量为35.3 kDa。pMEL1预测的氨基酸序列与从番茄和鳄梨果实以及衰老康乃馨花瓣中分离出的番茄(pTOM13)EFE和EFE相关基因推导的氨基酸序列具有73%-81%的同一性。基因组Southern分析表明,pMEL1与多个基因组片段杂交,这与甜瓜中存在多个pMEL1相关基因一致。使用针对在大肠杆菌中表达的番茄EFE(pTOM13)产生的抗体,对成熟番茄和甜瓜果实的总蛋白提取物进行Western分析,检测到一种单一的35.5kDa蛋白。从体外转录的pMEL1翻译并被抗EFE血清免疫吸附的35kDa产物,其大小与预测的35.3kDa pMEL1 cDNA蛋白产物非常相似。这些结果表明,pMEL1可能编码一个参与果实成熟过程中乙烯生物合成的EFE基因,并且可能与响应组织损伤而表达的EFE相同或具有广泛的序列相似性。