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乙烯和 1-甲基环丙烯在抑制洋葱芽生长过程中差异调控基因表达。

Ethylene and 1-methylcyclopropene differentially regulate gene expression during onion sprout suppression.

机构信息

Plant Science Laboratory, Cranfield University, Bedfordshire MK43 0AL, United Kingdom.

出版信息

Plant Physiol. 2011 Jul;156(3):1639-52. doi: 10.1104/pp.111.174979. Epub 2011 May 18.

Abstract

Onion (Allium cepa) is regarded as a nonclimacteric vegetable. In onions, however, ethylene can suppress sprouting while the ethylene-binding inhibitor 1-methylcyclopropene (1-MCP) can also suppress sprout growth; yet, it is unknown how ethylene and 1-MCP elicit the same response. In this study, onions were treated with 10 μL L(-1) ethylene or 1 μL L(-1) 1-MCP individually or in combination for 24 h at 20°C before or after curing (6 weeks) at 20°C or 28°C and then stored at 1°C. Following curing, a subset of these same onions was stored separately under continuous air or ethylene (10 μL L(-1)) at 1°C. Onions treated with ethylene and 1-MCP in combination after curing for 24 h had reduced sprout growth as compared with the control 25 weeks after harvest. Sprout growth following storage beyond 25 weeks was only reduced through continuous ethylene treatment. This observation was supported by a higher proportion of down-regulated genes characterized as being involved in photosynthesis, measured using a newly developed onion microarray. Physiological and biochemical data suggested that ethylene was being perceived in the presence of 1-MCP, since sprout growth was reduced in onions treated with 1-MCP and ethylene applied in combination but not when applied individually. A cluster of probes representing transcripts up-regulated by 1-MCP alone but down-regulated by ethylene alone or in the presence of 1-MCP support this suggestion. Ethylene and 1-MCP both down-regulated a probe tentatively annotated as an ethylene receptor as well as ethylene-insensitive 3, suggesting that both treatments down-regulate the perception and signaling events of ethylene.

摘要

洋葱(Allium cepa)被认为是非跃变型蔬菜。然而,在洋葱中,乙烯可以抑制发芽,而乙烯结合抑制剂 1-甲基环丙烯(1-MCP)也可以抑制芽的生长;但是,尚不清楚乙烯和 1-MCP 如何产生相同的反应。在这项研究中,洋葱在 20°C 下用 10 μL L(-1)乙烯或 1 μL L(-1)1-MCP 单独或组合处理 24 小时,然后在 20°C 或 28°C 下进行后熟(6 周),然后在 1°C 下储存。后熟后,这些洋葱的一部分在 1°C 下单独在空气中或乙烯(10 μL L(-1)) 下连续储存。与对照相比,后熟 24 小时后用乙烯和 1-MCP 组合处理的洋葱的芽生长减少了 25 周后收获。在 25 周后储存超过 25 周后,仅通过连续乙烯处理才能减少芽的生长。这一观察结果得到了新开发的洋葱微阵列测量的特征在于参与光合作用的下调基因比例较高的支持。生理生化数据表明,1-MCP 存在时乙烯被感知到,因为用 1-MCP 和乙烯组合处理的洋葱的芽生长减少,但单独应用时则没有。一组单独用 1-MCP 上调但单独用乙烯或 1-MCP 下调的探针代表转录物,支持了这一建议。乙烯和 1-MCP 都下调了一个探针,该探针暂定注释为乙烯受体,以及乙烯不敏感 3,表明两种处理都下调了乙烯的感知和信号事件。

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