甜瓜
生物
脯氨酸
糖
植物
耐寒性
园艺
拟南芥
基因
转基因
生物化学
突变体
氨基酸
作者
Wendi Liu,Yong-Po Lv,Lifu Zhang,Yan Jiang,Shuyu Liu,Zhenling Wang,Xiaofeng Zhang,Mingliang He
出处
期刊:Plant Biology
[Wiley]
日期:2024-07-19
卷期号:26 (6): 1033-1046
被引量:2
摘要
Abstract The current simple and crude facilities make melon production more susceptible to cold stress during off‐season cultivation in China. The ABA signalling pathway is an important target for breeding cold‐tolerant melon. Cold‐tolerant No. 330 and cold‐sensitive No. 410 oriental melon genotypes were used to analyse the relationship between ABA and cold tolerance. 12 CmPYLs , ABA receptors, were identified from the melon genome database according to sequence alignment and phylogenetic analysis. Gene function of CmPYL6 in cold tolerance was analysed using VIGS in No. 330 and overexpression in Arabidopsis WT. A total of 12 CmPYL members contain the representative domain and conserved sites. Under cold treatment, No.330 seedlings had lower electrolyte leakage and MDA content, higher ABA content and CmPYL6 expression than seedlings of No. 410. Exogenous application of ABA upregulated expression of CmPYL6 and enhanced cold tolerance of both genotypes, while inhibiting ABA accumulation reduced expression of CmPYL6 and cold tolerance of both genotypes. CmPYL6 ‐silenced No. 330 seedlings had reduced cold tolerance, increased electrolyte leakage and MDA content as well as limited proline and soluble sugar content, while CmPYL6 overexpressed transgenic Arabidopsis plants had enhanced cold tolerance, with limited electrolyte leakage and MDA content, as well as increased proline and soluble sugar content. The CmPYL6 gene is probably an important ABA receptor in regulating cold tolerance of oriental melon. Our study provides a direction for improving breeding of cold tolerance of oriental melon.
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