Cruz-Hernández A, Gómez-Lim M A
CINVESTAV-Unidad Irapuato, Guanajuato, México.
Planta. 1995;197(4):569-76. doi: 10.1007/BF00191562.
Alternative oxidase is a respiratory-chain component of higher plants and fungi that catalyzes cyanide-resistant oxygen consumption. The activity of a alternative oxidase has been detected during ripening in several climacteric fruit including mango (Mangifera indica L.). Synthetic oligonucleotides, corresponding to conserved regions of the Sauromatum guttatum and Arabidopsis thaliana nucleotide sequences, were used as primers for polymerase chain reaction to amplify genomic DNA extracted from mango leaves. The 623-bp fragment was found to encode an open reading frame of 207 amino acids showing high identity to the S. guttatum enzyme. Using this fragment to screen a ripe mango mesocarp cDNA library, one full-length cDNA clone, designated pAOMI.1, was obtained that contained an open reading frame encoding a polypeptide of 318 amino acids. The predicted amino-acid sequence exhibited 62, 64 and 68% identity to the S. guttatum, soybean, and A. thaliana enzymes respectively, indicating that this cDNA encodes a mango homologue of the alternative oxidase. Gel blot hybridization showed that pAOMI.1 is likely to be encoded by a single-copy gene. The 1.6 kb-transcript was induced during mango fruit ripening although the transcript was clearly detectable in unripe and developing fruit. Antibodies raised against the S. guttatum enzyme recognized three bands of approximately 27, approximately 33 and approximately 36 kDa from mitochondrial mango proteins. Two of the bands were detectable before ripening and increase in ripe fruit, the other band (27 kDa) was barely present in unripe fruit but accumulated during ripening. The clone pAOMI.1 was able to complement an Escherichia coli hemA mutant deficient in cytochrome-mediated aerobic respiration. This is the first report on the analysis of alternative oxidase at the molecular level during the ripening of a climacteric fruit.
交替氧化酶是高等植物和真菌呼吸链的一个组成部分,可催化抗氰耗氧。在包括芒果(Mangifera indica L.)在内的几种跃变型果实成熟过程中检测到了交替氧化酶的活性。与海芋(Sauromatum guttatum)和拟南芥(Arabidopsis thaliana)核苷酸序列保守区相对应的合成寡核苷酸,被用作聚合酶链反应的引物,以扩增从芒果叶片中提取的基因组DNA。发现这个623bp的片段编码一个207个氨基酸的开放阅读框,与海芋的酶具有高度同源性。用这个片段筛选成熟芒果中果皮cDNA文库,获得了一个全长cDNA克隆,命名为pAOMI.1,它包含一个编码318个氨基酸多肽的开放阅读框。预测的氨基酸序列与海芋、大豆和拟南芥的酶分别具有62%、64%和68%的同源性,表明这个cDNA编码交替氧化酶的芒果同源物。凝胶印迹杂交表明,pAOMI.1可能由单拷贝基因编码。1.6kb的转录本在芒果果实成熟过程中被诱导,尽管在未成熟和发育中的果实中也能清楚地检测到该转录本。针对海芋酶产生的抗体识别出芒果线粒体蛋白中约27kDa、约33kDa和约36kDa的三条带。其中两条带在成熟前可检测到,在成熟果实中增加,另一条带(27kDa)在未成熟果实中几乎不存在,但在成熟过程中积累。克隆pAOMI.1能够互补缺乏细胞色素介导的有氧呼吸的大肠杆菌hemA突变体。这是关于跃变型果实成熟过程中交替氧化酶分子水平分析的首次报道。