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Tomato fruit photosynthesis is seemingly unimportant in primary metabolism and ripening but plays a considerable role in seed development

机译:番茄果实光合作用在初级代谢和成熟过程中似乎不重要,但在种子发育中起着相当大的作用

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摘要

Fruit of tomato (Solanum lycopersicum), like those from many species, have been characterized to undergo a shift from partially photosynthetic to truly heterotrophic metabolism. While there is plentiful evidence for functional photosynthesis in young tomato fruit, the rates of carbon assimilation rarely exceed those of carbon dioxide release, raising the question of its role in this tissue. Here, we describe the generation and characterization of lines exhibiting a fruit-specific reduction in the expression of glutamate 1-semialdehyde aminotransferase (GSA). Despite the fact that these plants contained less GSA protein and lowered chlorophyll levels and photosynthetic activity, they were characterized by few other differences. Indeed, they displayed almost no differences in fruit size, weight, or ripening capacity and furthermore displayed few alterations in other primary or intermediary metabolites. Although GSA antisense lines were characterized by significant alterations in the expression of genes associated with photosynthesis, as well as with cell wall and amino acid metabolism, these changes were not manifested at the phenotypic level. One striking feature of the antisense plants was their seed phenotype: the transformants displayed a reduced seed set and altered morphology and metabolism at early stages of fruit development, although these differences did not affect the final seed number or fecundity. Taken together, these results suggest that fruit photosynthesis is, at least under ambient conditions, not necessary for fruit energy metabolism or development but is essential for properly timed seed development and therefore may confer an advantage under conditions of stress.
机译:番茄(Solanum lycopersicum)的果实,就像许多物种的果实一样,其特征是经历了从部分光合作用向真正的异养代谢的转变。尽管有大量证据表明年轻番茄果实具有功能性的光合作用,但碳同化的速率很少超过二氧化碳的释放速率,这提出了其在这种组织中的作用问题。在这里,我们描述了在谷氨酸1-半醛氨基转移酶(GSA)的表达中表现出果实特异性降低的品系的产生和特征。尽管这些植物含有较少的GSA蛋白,并降低了叶绿素水平和光合活性,但它们的特征是几乎没有其他差异。实际上,它们在果实大小,重量或成熟能力上几乎没有差异,而且在其他主要或中间代谢产物中几乎没有改变。尽管GSA反义品系的特征是与光合作用以及细胞壁和氨基酸代谢相关的基因表达发生了显着变化,但这些变化在表型水平上并未表现出来。反义植物的一个显着特征是它们的种子表型:尽管这些差异并不影响最终的种子数量或繁殖力,但在果实发育的早期,它们的种子集减少,形态和代谢发生改变。综上所述,这些结果表明,至少在环境条件下,果实的光合作用对于果实能量的代谢或发育不是必需的,但是对于适当定时的种子发育是必不可少的,因此可以在胁迫条件下发挥优势。

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