首页> 美国卫生研究院文献>International Journal of Molecular Sciences >RNA-Seq Provides New Insights into the Molecular Events Involved in Ball-Skin versus Bladder Effect on Fruit Cracking in Litchi
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RNA-Seq Provides New Insights into the Molecular Events Involved in Ball-Skin versus Bladder Effect on Fruit Cracking in Litchi

机译:RNA-SEQ为荔枝果实裂缝中涉及的球形与膀胱效应中涉及的分子事件提供新的见解

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摘要

Fruit cracking is a disorder of fruit development in response to internal or external cues, which causes a loss in the economic value of fruit. Therefore, exploring the mechanism underlying fruit cracking is of great significance to increase the economic yield of fruit trees. However, the molecular mechanism underlying fruit cracking is still poorly understood. Litchi, as an important tropical and subtropical fruit crop, contributes significantly to the gross agricultural product in Southeast Asia. One important agricultural concern in the litchi industry is that some famous varieties with high economic value such as ‘Nuomici’ are susceptible to fruit cracking. Here, the cracking-susceptible cultivar ‘Nuomici’ and cracking-resistant cultivar ‘Huaizhi’ were selected, and the samples including pericarp and aril during fruit development and cracking were collected for RNA-Seq analysis. Based on weighted gene co-expression network analysis (WGCNA) and the “ball-skin versus bladder effect” theory (fruit cracking occurs upon the aril expanding pressure exceeds the pericarp strength), it was found that seven co-expression modules genes (1733 candidate genes) were closely associated with fruit cracking in ‘Nuomici’. Importantly, we propose that the low expression level of genes related to plant hormones (Auxin, Gibberellins, Ethylene), transcription factors, calcium transport and signaling, and lipid synthesis might decrease the mechanical strength of pericarp in ‘Nuomici’, while high expression level of genes associated with plant hormones (Auxin and abscisic acid), transcription factors, starch/sucrose metabolism, and sugar/water transport might increase the aril expanding pressure, thereby resulting in fruit cracking in ‘Nuomici’. In conclusion, our results provide comprehensive molecular events involved in the “ball-skin versus bladder effect” on fruit cracking in litchi.
机译:果实裂缝是一种果实开发障碍,以应对内部或外部线索,这导致果实经济价值损失。因此,探索水果裂缝的机制具有重要意义,可以提高果树的经济产量。然而,果实裂缝的分子机制仍然很差。作为一个重要的热带和亚热带水果作物,荔枝促成了东南亚的农产品总产。荔枝产业中的一个重要农业问题是,一些具有高经济价值的着名品种,如“Nuomici”易受果实裂缝的影响。在此,选择了易感易感品种的品种和抗裂品种“华丽”,并收集了在果实发育和裂缝中的果皮和AriN的样品进行RNA-SEQ分析。基于加权基因的共同表达网络分析(WGCNA)和“球形与膀胱效应”理论(果实裂缝在膨胀压力上发生果皮强度),发现七种共同表达模块基因(1733候选基因)与'Nuomici'中的果实裂缝密切相关。重要的是,我们提出与植物激素(植物素,赤素蛋白,乙烯),转录因子,钙转运和信号传导相关的基因的低表达水平可能会降低“Nuomici”中Pericarp的机械强度,而高表达水平与植物激素(植物素和脱钙酸)相关的基因,转录因子,淀粉/蔗糖代谢和糖/水运输可能会增加展开的膨胀压力,从而导致'Nuomici'的水果裂缝。总之,我们的结果为荔枝果实裂缝提供了综合分子事件,涉及“球形与膀胱效应”。

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