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AcMYB68 和 AcERF74/75 的受限制表达增强猕猴桃的耐水淹能力。

Restricted responses of AcMYB68 and AcERF74/75 enhanced waterlogging tolerance in kiwifruit.

机构信息

College of Agriculture and Biotechnology, Zhejiang University, Hangzhou, Zhejiang, 310058, P.R. China.

Institute of Horticulture, Zhejiang Academy of Agricultural Sciences, Hangzhou, 310021, P.R. China.

出版信息

Plant J. 2024 Jul;119(2):1059-1072. doi: 10.1111/tpj.16816. Epub 2024 May 18.

Abstract

Most of kiwifruit cultivars (e.g. Actinidia chinensis cv. Donghong, "DH") were sensitive to waterlogging, thus, waterlogging resistant rootstocks (e.g. Actinidia valvata Dunn, "Dunn") were widely used for kiwifruit industry. Those different species provided ideal materials to understand the waterlogging responses in kiwifruit. Compared to the weaken growth and root activities in "DH", "Dunn" maintained the relative high root activities under the prolonged waterlogging. Based on comparative analysis, transcript levels of pyruvate decarboxylase (PDCs) and alcohol dehydrogenase (ADHs) showed significantly difference between these two species. Both PDCs and ADHs had been significantly increased by waterlogging in "DH", while they were only limitedly triggered by 2 days stress and subsided during the prolonged waterlogging in "Dunn". Thus, 19 differentially expressed transcript factors (DETFs) had been isolated using weighted gene co-expression network analysis combined with transcriptomics and transcript levels of PDCs and ADHs in waterlogged "DH". Among these DETFs, dual luciferase and electrophoretic mobility shift assays indicated AcMYB68 could bind to and trigger the activity of AcPDC2 promoter. The stable over-expression of AcMYB68 significantly up-regulated the transcript levels of PDCs but inhibited the plant growth, especially the roots. Moreover, the enzyme activities of PDC in 35S::AcMYB68 were significantly enhanced during the waterlogging response than that in wild type plants. Most interestingly, comparative analysis indicated that the expression patterns of AcMYB68 and the previously characterized AcERF74/75 (the direct regulator on ADHs) either showed no responses (AcMYB68 and AcERF74) or very limited response (AcERF75) in "Dunn". Taken together, the restricted responses of AcMYB68 and AcERF74/75 in "Dunn" endow its waterlogging tolerance.

摘要

大多数猕猴桃品种(例如,中华猕猴桃 cv. 东红,“DH”)对水淹敏感,因此,耐水淹的砧木(例如,软枣猕猴桃 Dunn,“Dunn”)被广泛用于猕猴桃产业。这些不同的物种为理解猕猴桃的水淹响应提供了理想的材料。与“DH”中生长和根系活力减弱相比,“Dunn”在长时间水淹下仍保持相对较高的根系活力。基于比较分析,丙酮酸脱羧酶(PDCs)和醇脱氢酶(ADHs)的转录水平在这两个物种之间存在显著差异。PDCs 和 ADHs 在“DH”中均因水淹而显著增加,而在“Dunn”中仅受 2 天胁迫的有限触发,并在长时间水淹中下降。因此,使用加权基因共表达网络分析结合转录组学和水淹“DH”中 PDCs 和 ADHs 的转录水平,从“DH”中分离出 19 个差异表达的转录因子(DETF)。在这些 DETFs 中,双荧光素酶和电泳迁移率变动分析表明,AcMYB68 可以结合并触发 AcPDC2 启动子的活性。AcMYB68 的稳定过表达显著上调了 PDCs 的转录水平,但抑制了植物的生长,特别是根系。此外,在水淹响应中,35S::AcMYB68 中的 PDC 酶活性明显高于野生型植物。最有趣的是,比较分析表明,AcMYB68 和先前表征的 AcERF74/75(ADHs 的直接调节剂)的表达模式在“Dunn”中要么没有响应(AcMYB68 和 AcERF74),要么响应非常有限(AcERF75)。综上所述,“Dunn”中 AcMYB68 和 AcERF74/75 的受限响应赋予其耐水淹性。

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