Manning K
Horticulture Research International, Wellesbourne, Warwick, UK.
Planta. 1998 Aug;205(4):622-31. doi: 10.1007/s004250050365.
The ripening of strawberry (Fragaria ananassa Duch.), a non-climacteric fruit, is a complex developmental process that involves many changes in gene expression. To understand how these changes relate to the biochemistry and composition of the fruit the specific genes involved have been examined. A high-quality cDNA library prepared from ripe strawberry fruit was differentially screened for ripening-related clones using cDNA from ripe and white fruits. From 112 up-regulated clones obtained in the primary screen, 66 differentially expressed clones were isolated from the secondary screen. The partial sequences of these cDNAs were compared with database sequences and 26 families of non-redundant clones were identified. Northern analysis confirmed that all of these cDNAs were ripening-enhanced. The expression of many of their corresponding genes was negatively regulated in auxin-treated fruit. These sequences, several of which are novel to fruits, encode proteins involved in key metabolic events including anthocyanin biosynthesis, cell wall degradation, sucrose and lipid metabolism, protein synthesis and degradation, and respiration. These findings are discussed in relation to the role of these genes in determining fruit quality characteristics.
草莓(Fragaria ananassa Duch.)属于非跃变型果实,其成熟是一个复杂的发育过程,涉及基因表达的诸多变化。为了解这些变化与果实生物化学及成分之间的关系,已对相关特定基因进行了研究。利用成熟果实和白果的cDNA,对从成熟草莓果实制备的高质量cDNA文库进行差异筛选,以获取与成熟相关的克隆。在初次筛选得到的112个上调克隆中,从二次筛选中分离出66个差异表达克隆。将这些cDNA的部分序列与数据库序列进行比较,鉴定出26个非冗余克隆家族。Northern分析证实所有这些cDNA在成熟过程中表达增强。其许多相应基因的表达在生长素处理的果实中受到负调控。这些序列中的一些对果实来说是新发现的,它们编码参与关键代谢事件的蛋白质,包括花青素生物合成、细胞壁降解、蔗糖和脂质代谢、蛋白质合成与降解以及呼吸作用。结合这些基因在决定果实品质特性方面的作用对这些发现进行了讨论。