基于SRAP标记的甘薯遗传多样性与起源演化分析
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福建省农业科学院作物研究所/农业部南方薯类科学观测试验站,福建省农业科学院作物研究所/农业部南方薯类科学观测试验站,福建省农业科学院作物研究所/农业部南方薯类科学观测试验站,福建省农业科学院作物研究所/农业部南方薯类科学观测试验站,福建省农业科学院作物研究所/农业部南方薯类科学观测试验站,福建省农业科学院作物研究所/农业部南方薯类科学观测试验站,福建省农业科学院作物研究所/农业部南方薯类科学观测试验站,福建省农业科学院作物研究所/农业部南方薯类科学观测试验站

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福建省科技计划项目——省属公益类科研院所基本科研专项(2015R1026-12);国家现代农业产业技术体系(CARS-10-B14);福建省种业创新与产业化工程——农业良种重大科研育种攻关与产业化工程(fjzycxny2017005)


Analysis of genetic diversity, origin and evolution of Sweetpotato(Ipomoea batatas(L.)Lam.) by SRAP
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Crops Research Institute,Fujian Academy of Agriculture Sciences/Scientific Observing and Experimental Station of Tuber and Root Crops in South China,Ministry of Agriculture,Crops Research Institute,Fujian Academy of Agriculture Sciences/Scientific Observing and Experimental Station of Tuber and Root Crops in South China,Ministry of Agriculture,Crops Research Institute,Fujian Academy of Agriculture Sciences/Scientific Observing and Experimental Station of Tuber and Root Crops in South China,Ministry of Agriculture,Crops Research Institute,Fujian Academy of Agriculture Sciences/Scientific Observing and Experimental Station of Tuber and Root Crops in South China,Ministry of Agriculture,Crops Research Institute,Fujian Academy of Agriculture Sciences/Scientific Observing and Experimental Station of Tuber and Root Crops in South China,Ministry of Agriculture,Crops Research Institute,Fujian Academy of Agriculture Sciences/Scientific Observing and Experimental Station of Tuber and Root Crops in South China,Ministry of Agriculture,Crops Research Institute,Fujian Academy of Agriculture Sciences/Scientific Observing and Experimental Station of Tuber and Root Crops in South China,Ministry of Agriculture,

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    摘要:

    以包含甘薯近缘野生种、地方品种和育成品种的129份种质为供试材料,采用SRAP分子标记对其进行遗传多样性分析,同时用MEGA软件结合DPS软件绘制甘薯及其近缘种进化树。结果表明:1)基于SRAP标记的124份甘薯栽培种平均遗传距离为0.1848,5份野生种平均遗传距离为0.4822,野生种与栽培种之间的遗传距离平均为0.4135。2)当遗传距离为0.31时,可以把近缘野生种和栽培品种完全区分开。124份栽培种可以在遗传距离为0.21处划分为8个类别。3)在基于SRAP标记绘制的进化树上,129份甘薯及其近缘种种质按演化顺序分为3部分,分别为处于进化树最底端的由5个近缘野生种组成的第Ⅰ部分、处于进化树中部的由6个育成品种和1个地方品种组成的第Ⅱ部分,以及进化树上部由117份地方品种和育成品种组成的第Ⅲ部分。4)从进化时间来看,近缘野生种平均进化时间最长,地方品种次之,育成品种最短,与理论预期一致,同时菲律宾引入的品种与我国福建地方品种进化时间一致,验证了甘薯经由菲律宾引入我国福建地区这一传播途径。SRAP标记可以有效的运用于甘薯遗传多样性及其起源与演化分析。

    Abstract:

    The objective of this study is to make the genetic analysis and origin of sweet potato (Ipomoea batatas (L.) Lam.) by using sequence-related amplified polymorphism (SRAP) markers. 129 sweet potato accessions including wild relatives, landraces and cultivars were used. The phylogenetic trees of sweet potato and its wild relatives were constructed by MEGA and DPS softwares, and the genetic distance of sweet potato accession was calculated. The results showed that: (1) the average genetic distance of 124 cultivars and 5 wild relatives was 0.1848 and 0.4822, respectively. (2) The wild relatives were separated from cultivars at the level of L1=0.31, and 124 cultivars were classified into 8 different groups at the level of L2=0.21. (3) 129 sweet potato accessions were placed into 3 groups (I, II and III) on the SRAP constructed phylogenetic tree. Group I included 5 wild relatives, and group II contained 1 landrace and 6 cultivars. There were 117 cultivars and landcaces in the group III. (4) Being consistent with previous publication, the divergence time of the wild relatives was the longest, followed by local accessions, whereas cultivars were the shortest. Moreover, the divergence time of Fujian landraces and the cultivars from Philippines was same, indicating the evolution pathway of sweet potato from The Philippines to Fujian province of China is believable. In conclusion, SRAP is a useful method for deciphering the genetic diversity and origin of sweet potato germplasm.

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刘中华,林志坚,李华伟,等.基于SRAP标记的甘薯遗传多样性与起源演化分析[J].植物遗传资源学报,2018,19(3):468-477.

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  • 收稿日期:2017-10-12
  • 最后修改日期:2018-03-25
  • 录用日期:2017-11-15
  • 在线发布日期: 2018-05-08
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