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新疆野苹果(塞威氏苹果)挥发性成分的遗传多样性

Genetic diversity of volatile components in Xinjiang Wild Apple (Malus sieversii).

作者信息

Chen Xuesen, Feng Tao, Zhang Yanmin, He Tianming, Feng Jianrong, Zhang Chunyu

机构信息

Biological Laboratory of Pomology, Shandong Agricultural University, Tai'an 271018, China.

出版信息

J Genet Genomics. 2007 Feb;34(2):171-9. doi: 10.1016/S1673-8527(07)60018-6.

Abstract

To evaluate genetic relationships using qualitative and/or quantitative differentiation of volatile components in Xinjiang Wild Apple (Malus sieversii (Lebed.) Roem.) and to acquire basic data for the conservation and utilization of the species, aroma components in ripe fruit of M. sieversii obtained from 30 seedlings at Mohe, Gongliu County, Xinjiang Autonomic Region, China, and in ripe fruit of 4 M. pumila cultivars ('Ralls', 'Delicious', 'Golden Delicious', and 'Fuji') were analyzed using head space-solid phase microextraction and gas chromatography-mass spectrometry. The results indicated that the values of similarity coefficient concerning volatile types between the two species were in accordance with the evolution of M. pumila cultivars (forms), and that M. sieversii seedlings showed considerable genetic variations in these aspects: the total content of volatile components, the classes and contents of each compound classes, the segregation ratio, and content of main components. The results showed significant difference among seedlings and wide genetic diversity within the populations. Comparison of the volatile components in M. sieversii with those in M. pumila cultivars showed that the common compounds whose number were larger than five with the contents over 0.04 mg/L simultaneously between M. sieversii and M. pumila cultivars belonged to esters, alcohols, aldehydes or ketones. This suggests fundamental identity in main volatile components of M. sieversii and M. pumila cultivars. The results above sustained the conclusion "M. sieversii is probably the ancestor of M. pumila". However, there were 48 compounds present in M. pumila that were not detected in M. sieversii, including 6 character impact components (i.e., propyl acetate, (Z)-3-hexenal, 2-methyl-1-butanol acetate, pentyl acetate, 3-furanmethanol, and benzene acetaldehyde). This suggested that in the domestication of M. pumila, introgression of other apple species, except for M. sieversii, by interspecies hybridization was possible. There were 177 compounds in total belonging to 11 classes detected in 30 M. sieversii seedlings, including esters, alcohols, ketones, aldehydes, acids, benzene ramifications, terpenes, heterocycles, hydrocarbon derivates, acetals, and lactones. Among them, acetals and lactones were not detected in M. pumila cultivars, 90 compounds were unique to M. sieversii, and 7 components (1-butanol, ethyl butanoate, 1-hexanol, ethyl hexanoate, 3-octen-1-ol, ethyl octanoate, and damascenone) belonged to character impact odors. Thus, the potential of M. sieversii in "utilization conservation" is enormous as a rare germplasm on genetic improvement of M. pumila cultivars.

摘要

为利用新疆野苹果(Malus sieversii (Lebed.) Roem.)挥发性成分的定性和/或定量差异评估其亲缘关系,并获取该物种保护与利用的基础数据,采用顶空固相微萃取和气相色谱 - 质谱联用技术,分析了采自中国新疆维吾尔自治区巩留县莫合乡30株新疆野苹果实生苗成熟果实以及4个苹果栽培品种(‘红玉’‘美味’‘金冠’和‘富士’)成熟果实中的香气成分。结果表明,两个物种间挥发性成分类型的相似系数值与苹果栽培品种(类型)的演化一致,新疆野苹果实生苗在挥发性成分总含量、各化合物类别的种类和含量、分离比例及主要成分含量等方面表现出较大的遗传变异。结果显示实生苗间差异显著,群体内遗传多样性丰富。新疆野苹果与苹果栽培品种挥发性成分比较表明,新疆野苹果与苹果栽培品种中同时存在数量大于5且含量超过0.04 mg/L的常见化合物属于酯类、醇类、醛类或酮类。这表明新疆野苹果和苹果栽培品种主要挥发性成分基本相同。上述结果支持了“新疆野苹果可能是苹果的祖先”这一结论。然而,苹果中有48种化合物在新疆野苹果中未被检测到,其中包括6种特征性香气成分(即乙酸丙酯、(Z)-3-己烯醛、乙酸2-甲基-1-丁酯、乙酸戊酯、3-呋喃甲醇和苯乙醛)。这表明在苹果的驯化过程中,除新疆野苹果外,可能通过种间杂交渗入了其他苹果物种的基因。在30株新疆野苹果实生苗中共检测到11类177种化合物,包括酯类、醇类、酮类、醛类、酸类、苯衍生物、萜类、杂环类、烃类衍生物、缩醛类和内酯类。其中,缩醛类和内酯类在苹果栽培品种中未被检测到,90种化合物为新疆野苹果所特有,7种成分(1-丁醇、丁酸乙酯、1-己醇、己酸乙酯、3-辛烯-1-醇、辛酸乙酯和大马酮)属于特征性香气。因此,新疆野苹果作为苹果栽培品种遗传改良的珍稀种质资源,在“利用保存”方面潜力巨大。

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