CmERF1 acts as a positive regulator of fruits and leaves growth in melon (Cucumis melo L.).

IF 3.9 2区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Plant Molecular Biology Pub Date : 2024-06-06 DOI:10.1007/s11103-024-01468-3
Yufan Sun, Haiming Yang, Tiantian Ren, Jiateng Zhao, Xinmei Lang, Lanchun Nie, Wensheng Zhao
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Abstract

Melon (Cucumis melo L.) is an important horticultural and economic crop. ETHYLENE RESPONSE FACTOR1 (ERF1) plays an important role in regulating plant development, and the resistance to multiple biotic and abiotic stresses. In this study, developmental biology, molecular biology and biochemical assays were performed to explore the biological function of CmERF1 in melon. Abundant transcripts of CmERF1 were found in ovary at green-yellow bud (GYB) and rapid enlargement (ORE) stages. In CmERF1 promoter, the cis-regulatory elements for indoleacetic acid (IAA), methyl jasmonate (MeJA), salicylic acid (SA), abscisic acid (ABA), gibberellic acid (GA), light and low temperature responses were found. CmERF1 could be significantly induced by ethylene, IAA, MeJA, SA, ABA, and respond to continuous light and low temperature stresses in melon. Ectopic expression of CmERF1 increased the length of siliqua and carpopodium, and expanded the size of leaves in Arabidopsis. Knockdown of CmERF1 led to smaller ovary at anthesis, mature fruit and leaves in melon. In CmERF1-RNAi #2 plants, 75 genes were differently expressed compared with control, and the promoter regions of 28 differential expression genes (DEGs) contained the GCC-box (AGCCGCC) or DRE (A/GCCGAC) cis-acting elements of CmERF1. A homolog of cell division cycle protein 48 (CmCDC48) was proved to be the direct target of CmERF1 by the yeast one-hybrid assay and dual-luciferase (LUC) reporter (DLR) system. These results indicated that CmERF1 was able to promote the growth of fruits and leaves, and involved in multiple hormones and environmental signaling pathways in melon.

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CmERF1 是甜瓜(Cucumis melo L.)果实和叶片生长的正向调节因子。
甜瓜(Cucumis melo L.)是一种重要的园艺和经济作物。乙烯反应因子1(ERF1)在调控植物发育、抵抗多种生物和非生物胁迫方面发挥着重要作用。本研究通过发育生物学、分子生物学和生化实验来探讨 CmERF1 在甜瓜中的生物学功能。在绿黄芽(GYB)和快速膨大(ORE)期的子房中发现了大量的CmERF1转录本。在 CmERF1 启动子中,发现了吲哚乙酸(IAA)、茉莉酸甲酯(MeJA)、水杨酸(SA)、脱落酸(ABA)、赤霉素(GA)、光照和低温反应的顺式调控元件。CmERF1可被乙烯、IAA、MeJA、SA、ABA显著诱导,并对连续光照和低温胁迫做出响应。异位表达CmERF1可增加拟南芥的茎秆和茎基长度,扩大叶片大小。敲除 CmERF1 会导致甜瓜花期子房、成熟果实和叶片变小。在CmERF1-RNAi #2植株中,75个基因的表达与对照组不同,28个差异表达基因(DEGs)的启动子区域含有CmERF1的GCC-box(AGCCGCC)或DRE(A/GCCGAC)顺式作用元件。酵母单杂交试验和双荧光素酶(LUC)报告基因(DLR)系统证明细胞分裂周期蛋白48(CmCDC48)的同源物是CmERF1的直接靶标。这些结果表明,CmERF1能够促进甜瓜果实和叶片的生长,并参与多种激素和环境信号通路。
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来源期刊
Plant Molecular Biology
Plant Molecular Biology 生物-生化与分子生物学
自引率
2.00%
发文量
95
审稿时长
1.4 months
期刊介绍: Plant Molecular Biology is an international journal dedicated to rapid publication of original research articles in all areas of plant biology.The Editorial Board welcomes full-length manuscripts that address important biological problems of broad interest, including research in comparative genomics, functional genomics, proteomics, bioinformatics, computational biology, biochemical and regulatory networks, and biotechnology. Because space in the journal is limited, however, preference is given to publication of results that provide significant new insights into biological problems and that advance the understanding of structure, function, mechanisms, or regulation. Authors must ensure that results are of high quality and that manuscripts are written for a broad plant science audience.
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