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Integrative analysis of the late maturation programme and desiccation tolerance mechanisms in intermediate coffee seeds

机译:中度咖啡种子后期成熟程序和脱水耐性机制的综合分析

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摘要

The ‘intermediate seed’ category was defined in the early 1990s using coffee (Coffea arabica) as a model. In contrast to orthodox seeds, intermediate seeds cannot survive complete drying, which is a major constraint for seed storage and has implications for both biodiversity conservation and agricultural purposes. However, intermediate seeds are considerably more tolerant to drying than recalcitrant seeds, which are highly sensitive to desiccation. To gain insight into the mechanisms governing such differences, changes in desiccation tolerance (DT), hormone contents, and the transcriptome were analysed in developing coffee seeds. Acquisition of DT coincided with a dramatic transcriptional switch characterised by the repression of primary metabolism, photosynthesis, and respiration, and the up-regulation of genes coding for late-embryogenesis abundant (LEA) proteins, heat-shock proteins (HSPs), and antioxidant enzymes. Analysis of the heat-stable proteome in mature coffee seeds confirmed the accumulation of LEA proteins identified at the transcript level. Transcriptome analysis also suggested a major role for ABA and for the transcription factors CaHSFA9, CaDREB2G, CaANAC029, CaPLATZ, and CaDOG-like in DT acquisition. The ability of CaHSFA9 and CaDREB2G to trigger HSP gene transcription was validated by Agrobacterium-mediated transformation of coffee somatic embryos.
机译:“中间种子”类别是在1990年代初以咖啡(阿拉伯咖啡)为模型定义的。与传统种子相反,中间种子无法完全干燥,这是种子储存的主要限制,对生物多样性保护和农业目的均具有影响。但是,中间种子比干燥干燥高度敏感的顽calc种子耐受干燥。为了深入了解控制这种差异的机制,在开发咖啡种子时分析了脱水耐受性(DT),激素含量和转录组的变化。 DT的获得与一个戏剧性的转录转换相吻合,其特征在于抑制初级代谢,光合作用和呼吸作用,以及编码晚期胚发生丰富(LEA)蛋白,热休克蛋白(HSPs)和抗氧化剂的基因上调酶。对成熟咖啡种子中热稳定蛋白质组的分析证实了在转录水平上鉴定出的LEA蛋白的积累。转录组分析还表明ABA和DT采集中转录因子CaHSFA9,CaDREB2G,CaANAC029,CaPLATZ和CaDOG样的主要作用。 CaHSFA9和CaDREB2G触发HSP基因转录的能力已通过农杆菌介导的咖啡体细胞胚转化得到验证。

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