Medina-Escobar N, Cárdenas J, Muñoz-Blanco J, Caballero J L
Dpto. de Bioquímica y Biología Molecular, Facultad de Ciencias, Universidad de Córdoba.
Plant Mol Biol. 1998 Jan;36(1):33-42. doi: 10.1023/a:1005994800671.
We have isolated and characterized a cDNA from a strawberry fruit subtractive library that shows homology to class-I low-molecular-weight (LMW) heat-shock protein genes from other higher plants. The strawberry cDNA (clone njjs4) was a 779 bp full-length cDNA with a single open reading frame of 468 bp that is expected to encode a protein of ca. 17.4 kDa with a pI of 6.57. Southern analysis with genomic DNA showed several high-molecular-weight hybridization bands, indicating that the corresponding njjs4 gene is not present as a single copy in the genome. This strawberry gene was not expressed in roots, leaves, flowers and stolons but in fruits at specific stages of elongation and ripening. However, a differential pattern of mRNA expression was detected in the fruit tissues achenes and receptacle. The njjs4 gene expression increased in achenes accompanying the process of seed maturation whereas in the receptacle, a high mRNA expression was detected in the W2 stage, during which most of the metabolic changes leading to the fruit ripening are occurring. Our results clearly show a specific relationship of this njjs4 strawberry gene with the processes of seed maturation and fruit ripening, and strongly support that at least some of the class-I LMW heat-shock protein-like genes have a heat-stress-independent role in plant development, including fruit ripening.
我们从草莓果实消减文库中分离并鉴定了一个cDNA,它与其他高等植物的I类低分子量(LMW)热休克蛋白基因具有同源性。草莓cDNA(克隆njjs4)是一个779 bp的全长cDNA,具有一个468 bp的单一开放阅读框,预计编码一个约17.4 kDa、pI为6.57的蛋白质。用基因组DNA进行的Southern分析显示有几条高分子量杂交带,表明相应的njjs4基因在基因组中不是单拷贝存在。该草莓基因在根、叶、花和匍匐茎中不表达,但在果实伸长和成熟的特定阶段表达。然而,在果实组织瘦果和花托中检测到了mRNA表达的差异模式。njjs4基因的表达在瘦果中随着种子成熟过程而增加,而在花托中,在W2阶段检测到高mRNA表达,在此期间导致果实成熟的大多数代谢变化正在发生。我们的结果清楚地表明了这个njjs4草莓基因与种子成熟和果实成熟过程的特定关系,并有力地支持了至少一些I类LMW热休克蛋白样基因在包括果实成熟在内的植物发育中具有与热胁迫无关的作用。