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转录组分析揭示了燕麦胚胎在种子老化过程中能量产生和 AsA-GSH 循环的变化。

Transcriptomic analysis reveals the changes of energy production and AsA-GSH cycle in oat embryos during seed ageing.

机构信息

Forage Seed Lab, China Agricultural University, Beijing, 100193, People's Republic of China; Key Laboratory of Pratacultural Science, Beijing Municipality, China Agricultural University, Beijing, 100193, People's Republic of China.

Forage Seed Lab, China Agricultural University, Beijing, 100193, People's Republic of China; Key Laboratory of Pratacultural Science, Beijing Municipality, China Agricultural University, Beijing, 100193, People's Republic of China.

出版信息

Plant Physiol Biochem. 2020 Aug;153:40-52. doi: 10.1016/j.plaphy.2020.03.054. Epub 2020 Apr 5.

Abstract

Deterioration during seed storage generally causes seed vigour declining. However, the mechanism of deterioration occurred still not clear. Seeds and embryos of oat (Avena sativa L.) were selected to analyze the relation of physiological and metabolic reactions with DEGs by using RNA-seq. Oat seed vigour declined during seeds aged 0 day (CK), 16 days (CD16) and 32 days (CD32). The changes of MDA and HO contents, antioxidant enzymes activities of APX, DHAR, MDHAR and GR related with AsA-GSH cycle in embryos illustrated that seed vigour declined to the minimum at CD32. Transcriptomic analysis showed a total of 11335 and 8274 DEGs were identified at CD16 and CD32 compared with CK respectively, of which 4070 were overlapped. When seed vigour declined to the moderate level (CD16), the accumulation of HO caused by the inhibition of complex I in ETC could be alleviated with AsA-GSH cycle. RNA-seq and qRT-PCR results both showed alternative oxidase in alternate respiratory pathway was upregulated which would maintain seed respiration. However, as seed vigour was at the lowest level (CD32), blocked ETC caused by down-regulation of complex III, including Ubiquinol-cytochrome C reductase complex 14kD subunit and Ubiquinol-cytochrome C reductase, UQCRX/QCR9 like, were more seriously and HO scavenging was limited by the inactive AsA-GSH cycle. It could be suggested that the function of AsA-GSH would play a key role for regulating the physiological responses of ETC in embryos during seed ageing. These results would provide an insight into embryo for the transcriptomic information during oat seed ageing.

摘要

种子贮藏过程中的劣变通常会导致种子活力下降。然而,劣变发生的机制尚不清楚。本研究选用燕麦(Avena sativa L.)种子和胚为材料,通过 RNA-seq 分析了生理和代谢反应与差异表达基因(DEGs)的关系。燕麦种子活力在老化 0 天(CK)、16 天(CD16)和 32 天(CD32)的种子中下降。胚中 MDA 和 HO 含量、抗氧化酶 APX、DHAR、MDHAR 和 GR 活性的变化与 AsA-GSH 循环相关,表明 CD32 时种子活力下降到最低水平。转录组分析表明,与 CK 相比,CD16 和 CD32 分别鉴定出 11335 个和 8274 个 DEGs,其中 4070 个是重叠的。当种子活力下降到中等水平(CD16)时,ETC 中复合体 I 抑制引起的 HO 积累可以通过 AsA-GSH 循环得到缓解。RNA-seq 和 qRT-PCR 结果均表明交替呼吸途径中的交替氧化酶被上调,这将维持种子呼吸。然而,当种子活力处于最低水平(CD32)时,ETC 被下调,包括泛醌-细胞色素 C 还原酶复合物 14kD 亚基和泛醌-细胞色素 C 还原酶、UQCRX/QCR9 样,导致的复合 III 受阻更为严重,而由于不活跃的 AsA-GSH 循环,HO 的清除受到限制。这表明在种子老化过程中,AsA-GSH 的功能可能在调节胚 ETC 的生理反应中发挥关键作用。这些结果为研究燕麦种子老化过程中胚的转录组信息提供了深入的见解。

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