生长中的番茄果实对碳可用性的基因型依赖性反应。
Genotype-dependent response to carbon availability in growing tomato fruit.
机构信息
INRA, UR1115 Plantes et Systèmes de culture Horticoles, F-84000 Avignon, France.
出版信息
Plant Cell Environ. 2010 Jul;33(7):1186-204. doi: 10.1111/j.1365-3040.2010.02139.x. Epub 2010 Mar 1.
Tomato fruit growth and composition depend on both genotype and environment. This paper aims at studying how fruit phenotypic responses to changes in carbon availability can be influenced by genotype, and at identifying genotype-dependent and -independent changes in gene expression underlying variations in fruit growth and composition. We grew a parental line (Solanum lycopersicum) and an introgression line from Solanum chmielewskii harbouring quantitative trait loci for fresh weight and sugar content under two fruit loads (FL). Lowering FL increased fruit cell number and reduced fruit developmental period in both genotypes. In contrast, fruit cell size was increased only in the parental line. Modifications in gene expression were monitored using microarrays and RT-qPCR for a subset of genes. FL changes induced more deployments of regulation systems (transcriptional and post-transcriptional) than massive adjustments of whole primary metabolism. Interactions between genotype and FL occurred on 99 genes mainly linked to hormonal and stress responses, and on gene expression kinetics. Links between gene expression and fruit phenotype were found for aquaporin expression levels and fruit water content, and invertase expression levels and sugar content. In summary, the present data emphasized age- and genotype-dependent responses of tomato fruit to carbon availability, at phenotypic as well as gene expression level.
番茄果实的生长和组成既取决于基因型,也取决于环境。本研究旨在探讨果实对碳供应变化的表型响应如何受基因型影响,以及确定基因型依赖性和独立性的基因表达变化在果实生长和组成的变化中的作用。我们在两种果实负载(FL)下种植了一个亲本系(Solanum lycopersicum)和一个来自 Solanum chmielewskii 的渐渗系,该渐渗系含有与鲜重和含糖量相关的数量性状位点。降低 FL 增加了两个基因型的果实细胞数量并缩短了果实发育周期。相比之下,只有在亲本系中果实细胞大小才会增加。使用微阵列和 RT-qPCR 监测了部分基因的表达变化。FL 变化引起的调控系统(转录和转录后)的变化比整个初级代谢的大规模调整更多。基因型和 FL 之间发生了 99 个基因的相互作用,这些基因主要与激素和应激反应以及基因表达动力学有关。发现了基因表达与果实表型之间的联系,如水通道蛋白表达水平与果实含水量,以及转化酶表达水平与含糖量之间的关系。总之,本研究强调了番茄果实对碳供应的年龄和基因型依赖性反应,无论是在表型还是基因表达水平上都是如此。