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番石榴百香果的栽培起源和 Decaloba 和 Passiflora 亚属种间的基因组关系。

Origin of the cultivated passion fruit Passiflora edulis f. flavicarpa and genomic relationships among species of the subgenera Decaloba and Passiflora.

机构信息

Laboratório de Melhoramento de Plantas, Departamento de Ciências Biológicas, Universidade Estadual de Santa Cruz (UESC), Ilhéus, BA, Brasil.

出版信息

Plant Biol (Stuttg). 2020 May;22(3):533-540. doi: 10.1111/plb.13100. Epub 2020 Mar 16.

Abstract

Passiflora edulis f. flavicarpa is the most economically important species in the genus Passiflora. However, the origin of this yellow form of passion fruit remains unclear, being suggested as a hybrid (P. edulis f. edulis × P. ligularis) or wild mutant. Here, the origin and genomic relationships of P. edulis f. flavicarpa with some related species in the genus Passiflora (subgenera Decaloba and Passiflora) were investigated using genomic in situ hybridization (GISH). Genomic DNA of 18 species was used as probe, which was hybridized onto chromosomes of P. edulis f. flavicarpa. Of all genomic DNA probes tested, none allowed us to identify a specific chromosome set in P. edulis f. flavicarpa. Conversely, probes from the subgenus Passiflora, P. edulis f. edulis, P. alata, P. cincinnata, P. coccinea, P. nitida and P. vitifolia, produced intense and uniform hybridizations on all chromosomes of P. edulis f. flavicarpa. Moreover, probes from P. ligularis, P. foetida and P. sublanceolata produced more intense hybridizations in the terminal region of four chromosomes, corresponding to the DNAr 45S locus, and also dispersed, less intense, hybridization across all chromosomes. Probes from the subgenus Decaloba, P. biflora, P. capsularis, P. cervii, P. coriacea, P. micropetala, P. morifolia, P. rubra and P. suberosa, produced hybridizations restricted to the DNAr 45S sites. The hybrid origin of P. edulis f. flavicarpa could not be supported based on the GISH results, and it is suggested that this species is conspecific with P. edulis f. edulis, because the probe with DNA of this form hybridized strongly throughout the target genome. The other putative parent species, P. ligularis, showed only a distant relationship with the target genome. The results also suggest that species of the subgenus Passiflora share many repetitive sequences and that the relationship between subgenera Decaloba and Passiflora is very distant.

摘要

软荚猕猴桃是猕猴桃属中经济价值最高的物种。然而,这种黄色百香果的起源尚不清楚,有人认为它是一种杂种(毛花猕猴桃×扁担藤)或野生突变体。本研究采用基因组原位杂交(GISH)技术,研究了软荚猕猴桃及其在猕猴桃属(五数莲亚属和猕猴桃亚属)中的一些近缘种的起源和基因组关系。用 18 个种的基因组 DNA 作为探针,与软荚猕猴桃的染色体进行杂交。在所测试的所有基因组 DNA 探针中,没有一种能够鉴定出软荚猕猴桃的特定染色体组。相反,来自猕猴桃亚属的探针,如软荚猕猴桃、毛花猕猴桃、五叶猕猴桃、黄海棠、金佛手、美丽猕猴桃和紫果猕猴桃,在软荚猕猴桃的所有染色体上都产生了强烈而均匀的杂交信号。此外,来自扁担藤、异味猕猴桃和少毛猕猴桃的探针在对应于 45S rDNA 位点的四个染色体的末端区域产生了更强的杂交信号,同时在所有染色体上也产生了分散的、较弱的杂交信号。来自五数莲亚属的探针,如二叶猕猴桃、长柄猕猴桃、瘤果猕猴桃、地果、厚皮猕猴桃、细毛猕猴桃、对萼猕猴桃、红茎猕猴桃和菝葜叶猕猴桃,只在 45S rDNA 位点产生杂交信号。基于 GISH 结果,不能支持软荚猕猴桃的杂种起源,并且表明该物种与软荚猕猴桃同属,因为该形式的 DNA 探针在整个目标基因组中强烈杂交。另一个假定的亲本种,扁担藤,与目标基因组只有较远的关系。结果还表明,猕猴桃亚属的种共享许多重复序列,并且五数莲亚属和猕猴桃亚属之间的关系非常遥远。

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