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首页> 外文期刊>The Journal of Horticultural Science & Biotechnology >Differential expression of CmPP16 homologues in pumpkin (Curcurbita maxima), winter squash (C. moschata) and their interspecific hybrid.
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Differential expression of CmPP16 homologues in pumpkin (Curcurbita maxima), winter squash (C. moschata) and their interspecific hybrid.

机译:CmPP16同源物在南瓜(西葫芦),西葫芦(C. moschata)及其种间杂种中的差异表达。

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Grafting is used in vegetable production as an alternative to highly toxic, broad-spectrum soil disinfectants such as methyl bromide and to avoid soil-borne biotic and abiotic stresses. However, deterioration in valuable qualitative characters of the scion occurs in specific graft combinations, such as melon to pumpkin, which makes this environmental-friendly approach less desirable. Understanding the reasons for rootstock-scion incompatibility, and the role of the rootstock, could help to alleviate this problem. We therefore examined the level of expression of CmPP16, a pumpkin (Cucurbita maxima) phloem protein that mediates RNA transport from the rootstock into scion tissue, in different pumpkin and squash (C. moschata) varieties and in a pumpkin x squash interspecific hybrid. All are currently in use as rootstocks in grafted melon, watermelon and cucumber production. Our data revealed that two different genetic loci, CmPP16-1 and CmPP16-2, which encode CmPP16 proteins, are expressed in pumpkin and squash, but not in melon. Pumpkin stems accumulated much higher levels of CmPP16 transcripts than squash or interspecific hybrid stems, while in roots CmPP16-expression was higher in squash. The pumpkin cultivar with the highest levels of expression of CmPP16 was the worst rootstock for melon, suggesting a role for CmPP16 in determining scion quality. Our results, if confirmed in additional varieties and species, may provide an effective way to screen for suitable rootstocks in grafted vegetable production..
机译:嫁接用于蔬菜生产,以替代剧毒,广谱的土壤消毒剂(如甲基溴),并避免土壤传播的生物和非生物胁迫。然而,接穗的有价值的定性特征的劣化在特定的嫁接组合中发生,例如瓜到南瓜,这使得这种环境友好的方法不太可取。了解砧木与接穗不兼容的原因以及砧木的作用,可以帮助减轻这一问题。因此,我们在不同的南瓜和南瓜种间和南瓜x南瓜种间杂种中检查了CmPP16的表达水平,CmPP16是一种南瓜(韧皮部)韧皮部蛋白,介导从根茎到接穗组织的RNA转运。目前,所有这些都用作嫁接瓜,西瓜和黄瓜生产中的砧木。我们的数据显示,两个不同的遗传基因位点CmPP16-1和CmPP16-2(它们编码CmPP16蛋白)在南瓜和南瓜中表达,而在瓜类中却不表达。南瓜茎中积累的CmPP16转录水平比南瓜或种间杂种茎高得多,而在根中,CmPP16的表达在南瓜中更高。 CmPP16表达水平最高的南瓜品种是甜瓜最坏的砧木,表明CmPP16在确定接穗质量方面具有重要作用。如果在其他品种和物种中得到证实,我们的结果可能会提供一种有效的方法来筛选嫁接蔬菜生产中合适的砧木。

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