Gonzalez-Bosch C., Brummell D. A., Bennett A. B.
Mann Laboratory, Department of Vegetable Crops, University of California, Davis, California 95616.
Plant Physiol. 1996 Aug;111(4):1313-1319. doi: 10.1104/pp.111.4.1313.
The mRNA accumulation of two endo-1,4-[beta]-D-glucanase genes, Cel1 and Cel2, was examined in the pericarp and locules throughout the development of normal tomato (Lycopersicon esculentum) fruit and the ripening-impaired mutants rin and Nr. Both Cel1 and Cel2 were expressed transiently at the earliest stages of fruit development during a period corresponding to cell division and early cell expansion. In the pericarp, the mRNA abundance of both genes increased markedly at the breaker stage; the level of Cel1 mRNA decreased later in ripening, and that of Cel2 increased progressively. Cel2 mRNA levels also increased at the breaker stage in locules but after initial locule liquefaction was already complete. In rin fruit mRNA abundance of Cel1 was reduced and Cel2 was virtually absent, whereas in Nr Cel1 was expressed at wild-type levels and Cel2 was reduced. In wild-type fruit ethylene treatment slightly promoted the mRNA accumulation of both genes. In rin fruit ethylene treatment strongly increased the mRNA abundance of Cel1 to an extent greater than in wild-type fruit, but Cel2 mRNA was absent even after ethylene treatment. These two endo-1,4-[beta]-D-glucanase genes, therefore, do not show coordinated expression during fruit development and are subject to distinct regulatory control. These results suggest that the product of the Cel2 gene contributes to ripening-associated cell-wall changes.
在正常番茄(Lycopersicon esculentum)果实以及成熟缺陷型突变体rin和Nr的整个发育过程中,研究了两种内切-1,4-β-D-葡聚糖酶基因Cel1和Cel2在果皮和子房室中的mRNA积累情况。Cel1和Cel2在果实发育的最早阶段,即对应细胞分裂和早期细胞扩张的时期短暂表达。在果皮中,这两个基因的mRNA丰度在破色期显著增加;Cel1 mRNA水平在随后的成熟过程中下降,而Cel2的水平则逐渐增加。在子房室中,Cel2 mRNA水平在破色期也增加,但此时子房室的初始液化已经完成。在rin果实中,Cel1的mRNA丰度降低,Cel2几乎不存在,而在Nr果实中,Cel1以野生型水平表达,Cel2减少。在野生型果实中,乙烯处理略微促进了这两个基因的mRNA积累。在rin果实中,乙烯处理强烈增加了Cel1的mRNA丰度,其增加程度大于野生型果实,但即使经过乙烯处理,Cel2 mRNA仍然不存在。因此,这两个内切-1,4-β-D-葡聚糖酶基因在果实发育过程中不显示协同表达,并且受到不同的调控。这些结果表明,Cel2基因的产物有助于与成熟相关的细胞壁变化。