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Spatial and temporal transcriptome changes occurring during flower opening and senescence of the ephemeral hibiscus flower Hibiscus rosa-sinensis

机译:罗莎木芙蓉花短暂开放和衰老过程中的时空转录组变化

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摘要

Flowers are complex systems whose vegetative and sexual structures initiate and die in a synchronous manner. The rapidity of this process varies widely in flowers, with some lasting for months while others such as Hibiscus rosa-sinensis survive for only a day. The genetic regulation underlying these differences is unclear. To identify key genes and pathways that coordinate floral organ senescence of ephemeral flowers, we identified transcripts in H. rosa-sinensis floral organs by 454 sequencing. During development, 2053 transcripts increased and 2135 decreased significantly in abundance. The senescence of the flower was associated with increased abundance of many hydrolytic genes, including aspartic and cysteine proteases, vacuolar processing enzymes, and nucleases. Pathway analysis suggested that transcripts altering significantly in abundance were enriched in functions related to cell wall-, aquaporin-, light/circadian clock-, autophagy-, and calcium-related genes. Finding enrichment in light/circadian clock-related genes fits well with the observation that hibiscus floral development is highly synchronized with light and the hypothesis that ageing/senescence of the flower is orchestrated by a molecular clock. Further study of these genes will provide novel insight into how the molecular clock is able to regulate the timing of programmed cell death in tissues.
机译:花是复杂的系统,其营养和有性结构以同步方式启动和死亡。此过程的速度在花中有很大不同,有些花可持续数月,而其他花(如芙蓉红花)只能存活一天。这些差异的遗传调控尚不清楚。为了鉴定协调短暂花的花器官衰老的关键基因和途径,我们通过454测序鉴定了罗莎中华花器官中的转录本。在开发过程中,丰度显着增加2053个转录本,而2135个显着下降。花的衰老与许多水解基因(包括天冬氨酸和半胱氨酸蛋白酶,液泡加工酶和核酸酶)的丰度增加相关。通路分析表明,转录物的丰度发生了显着变化,丰富了与细胞壁,水通道蛋白,光/昼夜节律,自噬和钙相关基因有关的功能。发现光/昼夜生物钟相关基因的富集与芙蓉花的发育与光高度同步以及花的衰老/衰老由分子钟协调的假设非常吻合。对这些基因的进一步研究将为分子时钟如何调节组织中程序性细胞死亡的时机提供新颖的见解。

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