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首页> 外文期刊>The Plant Cell >Tomato GOLDEN2-LIKE transcription factors reveal molecular gradients that function during fruit development and ripening.
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Tomato GOLDEN2-LIKE transcription factors reveal molecular gradients that function during fruit development and ripening.

机译:番茄GOLDEN2-LIKE转录因子揭示了在果实发育和成熟期间起作用的分子梯度。

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摘要

Fruit ripening is the summation of changes rendering fleshy fruit tissues attractive and palatable to seed dispersing organisms. For example, sugar content is influenced by plastid numbers and photosynthetic activity in unripe fruit and later by starch and sugar catabolism during ripening. Tomato fruit are sinks of photosynthate, yet unripe green fruit contribute significantly to the sugars that ultimately accumulate in the ripe fruit. Plastid numbers and chlorophyll content are influenced by numerous environmental and genetic factors and are positively correlated with photosynthesis and photosynthate accumulation. GOLDEN2-LIKE (GLK) transcription factors regulate plastid and chlorophyll levels. Tomato (Solanum lycopersicum), like most plants, contains two GLKs (i.e., GLK1 and GLK2/UNIFORM). Mutant and transgene analysis demonstrated that these genes encode functionally similar peptides, though differential expression renders GLK1 more important in leaves, while GLK2 is predominant in fruit. A latitudinal gradient of GLK2 expression influences the typical uneven coloration of green and ripe wild-type fruit. Transcriptome profiling revealed a broader fruit gene expression gradient throughout development. The gradient influenced general ripening activities beyond plastid development and was consistent with the easily observed yet poorly studied ripening gradient present in tomato and many fleshy fruits.
机译:果实成熟是变化的总和,使多肉的水果组织对种子散布的生物体具有吸引力和可口性。例如,糖含量受未成熟果实中质体数和光合活性的影响,而后又受成熟过程中淀粉和糖的分解代谢的影响。番茄果实是光合产物的汇,但未成熟的绿色果实对最终积累在成熟果实中的糖分起着重要作用。质体数和叶绿素含量受许多环境和遗传因素影响,并且与光合作用和光合产物的积累呈正相关。 GOLDEN2-LIKE(GLK)转录因子调节质体和叶绿素水平。像大多数植物一样,番茄(Solanum lycopersicum)包含两种GLK(即GLK1和GLK2 / UNIFORM)。突变和转基因分析表明,这些基因编码功能相似的肽,尽管差异表达使GLK1在叶片中更重要,而GLK2在水果中占主导地位。 GLK2表达的纬度梯度会影响绿色和成熟的野生型水果的典型不均匀着色。转录组谱分析揭示了整个发育过程中更广泛的果实基因表达梯度。该梯度影响了质体发育后的一般成熟活性,并且与番茄和许多果肉中存在的易于观察但研究不足的成熟梯度一致。

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