首页> 外文期刊>Biochemical Systematics and Ecology >Differentiation of F1 hybrids P. nigra J. F. Arnold x P. sylvestris L., P. nigra J. F. Arnold x P. densiflora Siebold et Zucc., P. nigra J. F. Arnold x P. thunbergiana Franco and their parental species by needle volatile composition.
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Differentiation of F1 hybrids P. nigra J. F. Arnold x P. sylvestris L., P. nigra J. F. Arnold x P. densiflora Siebold et Zucc., P. nigra J. F. Arnold x P. thunbergiana Franco and their parental species by needle volatile composition.

机译:F1杂种P.nigra J.F.

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The volatile composition of needles from three F1 hard pine hybrids produced by the controlled hybridization and their parental species were researched with gas chromatography (GC) and gas chromatography/mass spectrometry (GC/MS) in order to explore the utility of terpenes in hybrid identification (their differentiation from the parental species) as well as confirmation of hybridity. The analysed hybrids were: 1. Pinus nigra J. F. Arnold x Pinus sylvestris L. (=nisy), 2. P. nigra x Pinus densiflora Siebold et Zucc. (=nide) and 3. P. nigra x Pinus thunbergiana Franco (=nith). A total of 55 compounds were identified. All identified compounds were terpenes, except trans-2-hexenal. Three analysed F1 hybrids showed the same qualitative pattern of the needle volatile composition as their parental species. However, there were quantitative differences in several major terpenes. The volatile composition of the needles from the hybrids nisy were equally similar to both parents, the hybrids nide were more similar to the female parent (P. nigra), whereas the hybrids nith were more similar to the male parent (P. thunbergiana). According to the content of germacrene D, as the specific component of P. nigra (female parent of the three analysed F1 hybrids), all hybrids were intermediary in relation to the parental species. The content of Delta -3-carene (the specific component of P. sylvestris) in the hybrids nisy was also intermediary. The hybrids nide had a higher content of thunbergol (specific component of P. densiflora) than the other analysed hybrids. In view of the content of beta -pinene, the specific component of P. thunbergiana, the hybrids nith were intermediary to the parental species and that content was considerably higher than in the other analysed hybrids. The intermediary quality of F1 hybrids for these specific components in relation to the parental species confirms their hybrid character. The needle volatile composition analysis as well as the previous morphometric analysis confirm the hybrid character of three F1 hybrids, whose female parent is P. nigra, and male parents are P. sylvestris, P. densiflora, i.e. P. thunbergiana.
机译:通过气相色谱(GC)和气相色谱/质谱(GC / MS)研究了通过受控杂交产生的三种F1硬松杂种的针叶及其亲本的挥发性成分,以探索萜烯在杂种鉴定中的用途(它们与亲本物种的区别)以及杂交的确认。所分析的杂种是:1.黑松J.F.Arnold×樟子松(= nisy),2.黑松×黑松Pinus densiflora Siebold等。 (= nide)和3. P. nigra x Pinus thunbergiana Franco(= nith)。总共鉴定出55种化合物。除反式-2-己烯醛外,所有鉴定出的化合物均为萜烯。三种经过分析的F1杂种表现出的针挥发成分的定性模式与其亲本相同。但是,几种主要萜烯之间存在定量差异。杂种nisy的针的挥发性成分与两个亲本均相似,杂种nide与雌性亲本(P. nigra)更相似,而杂种nith与雄性亲本(P. thunbergiana)更相似。根据胚acD的含量,作为黑假单胞菌(三个分析过的F1杂种的雌性亲本)的特定成分,所有杂种相对于亲本物种而言都是中间的。杂种nisy中Delta -3-carene(樟子松的特定成分)的含量也是中间的。杂种nide具有比其他分析杂种更高的丁香酚含量(P. densiflora的特定成分)。考虑到β-pine烯(P. thunbergiana的特定成分)的含量,杂种nith是亲代种的中间产物,其含量比其他分析杂种高得多。 F1杂种相对于亲本物种的这些特定成分的中间质量证实了它们的杂种特性。针状挥发物成分分析和先前的形态计量学分析证实了三个F1杂种的杂种特性,其母本为黑假单胞菌,而雄性母本为樟脑假单胞菌,Densiflora假单胞菌,即黑胸果假单胞菌。

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