Santino Angelo, De Paolis Angelo, Gallo Antonia, Quarta Angela, Casey Rod, Mita Giovanni
Institute of Sciences of Food Production CNR Section of Lecce, Italy.
Eur J Biochem. 2003 Nov;270(21):4365-75. doi: 10.1046/j.1432-1033.2003.03831.x.
Plant lipoxygenases (LOXs) are a class of dioxygenases which display diverse functions in several physiological processes such as growth, development and response to biotic and abiotic stresses. Even though LOXs have been characterized from several plant species, the physiological role of seed LOXs is still unclear. With the aim to better clarify the occurrence of LOXs and their influence on hazelnut seed quality, we carried out the biochemical and molecular characterization of the main LOX isoforms expressed during seed development. A genomic clone containing a complete LOX gene was isolated and fully characterized. The 9887 bp sequence reported contains an open reading frame of 5334 bp encoding a putative polypeptide of 99 kDa. Semiquantitative RT-PCR carried out from RNAs extracted from seeds at different maturation stages showed that LOXs are mainly expressed at early developmental stages. These results were confirmed by LOX activity assays. Biochemical characterization of the reaction products of the hazelnut LOX indicated that it is a 9-LOX. Two cDNAs were isolated by RT-PCR carried out on total RNA from immature hazelnut seeds. Sequence analysis indicated that the two cDNAs are highly homologous (91.9% degree of identity) and one of these corresponded exactly to the genomic clone. The deduced amino acid sequences of the hazelnut LOXs showed that they are closely related to a previously reported almond LOX (79.5% identity) and, to a lesser extent, to some LOXs involved in plant responses to pathogens (cotton and tobacco LOXs, 75.5 and 74.6% identity, respectively). The physiological role of hazelnut LOXs and their role in influencing seed quality are also discussed.
植物脂氧合酶(LOXs)是一类双加氧酶,在生长、发育以及对生物和非生物胁迫的响应等多个生理过程中发挥着多种功能。尽管已经从多种植物物种中鉴定出了LOXs,但种子LOXs的生理作用仍不清楚。为了更好地阐明LOXs的存在及其对榛子种子品质的影响,我们对种子发育过程中表达的主要LOX同工型进行了生化和分子表征。分离并全面表征了一个包含完整LOX基因的基因组克隆。所报道的9887 bp序列包含一个5334 bp的开放阅读框,编码一个推定的99 kDa多肽。对从不同成熟阶段种子中提取的RNA进行半定量RT-PCR分析表明,LOXs主要在发育早期表达。这些结果通过LOX活性测定得到了证实。榛子LOX反应产物的生化表征表明它是一种9-LOX。通过对未成熟榛子种子总RNA进行RT-PCR分离出两个cDNA。序列分析表明这两个cDNA高度同源(同一性程度为91.9%),其中一个与基因组克隆完全对应。榛子LOXs推导的氨基酸序列表明,它们与先前报道的杏仁LOX密切相关(同一性为79.5%),在较小程度上与一些参与植物对病原体响应的LOXs相关(棉花和烟草LOXs,同一性分别为75.5%和74.6%)。还讨论了榛子LOXs的生理作用及其在影响种子品质方面的作用。