Keren-Keiserman Alexandra, Tanami Zaccharia, Shoseyov Oded, Ginzberg Idit
Department of Genetics and Vegetable Crops, ARO the Volcani Center, PO Box 6, Bet Dagan 50250, Israel.
Physiol Plant. 2004 May;121(1):141-148. doi: 10.1111/j.0031-9317.2004.00301.x.
The rind of fruits of muskmelon (Cucumis melo L. var. reticulatus) contains a network of suberized tissue referred to as the 'netting', and peroxidase (EC 1.11.1.7) activity is necessary to the polymerization of the aromatic domain of suberin. Peroxidase activity increased dramatically during the early stages of melon fruit netting, and in fruits exhibiting incomplete netting, peroxidase activity was significantly higher in netted than in non-netted regions of the same fruit. Moreover, analysis of peroxidase activity in three varieties of smooth-rind melons (Cucumis melo var. inodorous) indicated lower levels of the activity in rind samples, taken throughout fruit development, than in rinds of netted varieties. Netting-associated anionic peroxidase (NAPOD) was isolated from the melon rind at an early stage of netting development, partially purified, microsequenced and its cDNA was cloned. It was found to be a single-copy gene within the genome of netted and smooth melon varieties, and highly homologous to other Cucurbitaceous anionic peroxidases. A high transcript level was only detected in the rind of the netted variety. Monitoring the gene expression of netting-associated anionic peroxidase, together with other enzymes involved in the netting will shed light on the molecular control of the suberization processes in the melon rind and in plants in general.
甜瓜(Cucumis melo L. var. reticulatus)果实的外皮含有一层被称为“网纹”的栓质化组织网络,而过氧化物酶(EC 1.11.1.7)活性对于栓质芳香结构域的聚合是必需的。在甜瓜果实网纹形成的早期阶段,过氧化物酶活性急剧增加,并且在网纹不完全的果实中,同一果实中网纹区域的过氧化物酶活性显著高于非网纹区域。此外,对三个光皮甜瓜品种(Cucumis melo var. inodorous)过氧化物酶活性的分析表明,在整个果实发育过程中,其外皮样品中的该酶活性水平低于网纹品种的外皮。在网纹发育的早期阶段从甜瓜外皮中分离出与网纹相关的阴离子过氧化物酶(NAPOD),进行了部分纯化、微量测序并克隆了其cDNA。发现它在网纹甜瓜品种和光皮甜瓜品种的基因组中是单拷贝基因,并且与其他葫芦科阴离子过氧化物酶高度同源。仅在网纹品种的外皮中检测到高转录水平。监测与网纹相关的阴离子过氧化物酶以及其他参与网纹形成的酶的基因表达,将有助于揭示甜瓜外皮以及一般植物中栓质化过程的分子调控机制。