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乙烯通过 MdERF1B-MdCIbHLH1 调控模块增强苹果的耐冷性。

Ethylene increases the cold tolerance of apple via the MdERF1B-MdCIbHLH1 regulatory module.

机构信息

State Key Laboratory of Crop Biology, Shandong Agricultural University, Tai'an, Shandong, China.

College of Horticulture Sciences, Shandong Agricultural University, Tai'an, Shandong, China.

出版信息

Plant J. 2021 Apr;106(2):379-393. doi: 10.1111/tpj.15170. Epub 2021 Mar 16.

Abstract

Cold stress has always been a major abiotic factor affecting the yield and quality of temperate fruit crops. Ethylene plays a critical regulatory role in the cold stress response, but the underlying molecular mechanisms remain elusive. Here, we revealed that ethylene positively modulates apple responses to cold stress. Treatment with 1-aminocyclopropane-1-carboxylate (an ethylene precursor) and aminoethoxyvinylglycine (an ethylene biosynthesis inhibitor) respectively increased and decreased the cold tolerance of apple seedlings. Consistent with the positive effects of ethylene on cold stress responses, a low-temperature treatment rapidly induced ethylene release and the expression of MdERF1B, which encodes an ethylene signaling activator, in apple seedlings. Overexpression of MdERF1B significantly increased the cold tolerance of apple plant materials (seedlings and calli) and Arabidopsis thaliana seedlings. A quantitative real-time PCR analysis indicated that MdERF1B upregulates the expression of the cold-responsive gene MdCBF1 in apple seedlings. Moreover, MdCIbHLH1, which functions upstream of CBF-dependent pathways, enhanced the binding of MdERF1B to target gene promoters as well as the consequent transcriptional activation. The stability of MdERF1B-MdCIbHLH1 was affected by cold stress and ethylene. Furthermore, MdERF1B interacted with the promoters of two genes critical for ethylene biosynthesis, MdACO1 and MdERF3. The resulting upregulated expression of these genes promoted ethylene production. However, the downregulated MdCIbHLH1 expression in MdERF1B-overexpressing apple calli significantly inhibited ethylene production. These findings imply that MdERF1B-MdCIbHLH1 is a potential regulatory module that integrates the cold and ethylene signaling pathways in apple.

摘要

冷胁迫一直是影响温带水果作物产量和品质的主要非生物因素。乙烯在冷胁迫响应中发挥着关键的调控作用,但潜在的分子机制仍不清楚。在这里,我们揭示了乙烯正向调控苹果对冷胁迫的响应。用 1-氨基环丙烷-1-羧酸(乙烯前体)和氨基氧乙烯基甘氨酸(乙烯生物合成抑制剂)处理分别提高和降低了苹果幼苗的耐寒性。与乙烯对冷胁迫响应的正向作用一致,低温处理迅速诱导乙烯释放和 MdERF1B(编码乙烯信号激活剂)的表达,在苹果幼苗中。MdERF1B 的过表达显著提高了苹果植物材料(幼苗和愈伤组织)和拟南芥幼苗的耐寒性。定量实时 PCR 分析表明,MdERF1B 上调了苹果幼苗中冷响应基因 MdCBF1 的表达。此外,作为 CBF 依赖途径上游的 MdCIbHLH1 增强了 MdERF1B 与靶基因启动子的结合以及随后的转录激活。MdERF1B-MdCIbHLH1 的稳定性受冷胁迫和乙烯的影响。此外,MdERF1B 与两个对乙烯生物合成至关重要的基因的启动子相互作用,MdACO1 和 MdERF3。这些基因的表达上调促进了乙烯的产生。然而,在 MdERF1B 过表达的苹果愈伤组织中下调的 MdCIbHLH1 表达显著抑制了乙烯的产生。这些发现表明,MdERF1B-MdCIbHLH1 是一个潜在的调控模块,整合了苹果中冷胁迫和乙烯信号通路。

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