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蕾期后满天星(Eustoma grandiflorum)花朵成功的浸花转化。

Successful floral-dipping transformation of post-anthesis lisianthus (Eustoma grandiflorum) flowers.

机构信息

Department of Ornamental Plants and Agricultural Biotechnology, Agricultural Research Organization, The Volcani Center, 68 HaMaccabim Road, PO Box 15159, Rishon LeZion, Israel.

Department of Life Sciences, Ben Gurion University of the Negev, PO Box 653, Beersheva, Israel.

出版信息

Plant J. 2018 Nov;96(4):869-879. doi: 10.1111/tpj.14076. Epub 2018 Oct 8.

Abstract

The adaptation of the Agrobacterium-mediated floral-dipping technique is limited, to date, to a small number of plants. In this paper, we present the efficient transformation of one of the leading plants in the cut flower industry, lisianthus (Eustoma grandiflorum). This method is approximately 18 months shorter than the known tissue culture-based transformation. The Excalibur Pink cultivar and two additional breeding lines, X-1042 and X-2541, were transformed using three different marker genes (benzyl alcohol acetyltransferase (BEAT) originating from Clarkia breweri, the feedback-insensitive bacterial gene AroG*, and the empty pART27 vector expressing a kanamycin-resistance cassette (nptII)). Genomic transformation was successful in all tested cases with transformation efficiency ranked from 0.2 to 2.9%, which is well in the range of results from Arabidopsis studies. Unlike Arabidopsis, in which floral-dipping transformation was efficient only at a pre-anthesis stage before ovary sealing, lisianthus flowers were transformed when dipping occurred 4 days pre-anthesis or 3-5 days post-anthesis with 1.5 and 3.7% efficiencies, respectively. Post-anthesis transformation occurred when the flower ovaries were sealed. Flower dipping of Excalibur Pink flowers with fluorescent Agrobacterium containing a GFP marker gene demonstrated Agrobacterium entrance into the sealed flower ovary through the open stigma and style tube. In this study, we demonstrated floral-dipping transformation of a commercial plant, lisianthus Excalibur Pink, occurring after sealing of the ovaries, probably via the stigma and wide open style tunnel.

摘要

农杆菌介导的浸花法的适应性目前仅限于少数几种植物。在本文中,我们展示了一种在切花行业中占主导地位的植物——满天星(Eustoma grandiflorum)的高效转化。这种方法比已知的组织培养转化方法大约缩短了 18 个月。我们使用三种不同的标记基因(来自 Clarkia breweri 的苯甲醇乙酰转移酶(BEAT)、反馈不敏感的细菌基因 AroG*和表达卡那霉素抗性盒(nptII)的空 pART27 载体)对 Excalibur Pink 品种和另外两个育种系 X-1042 和 X-2541 进行了转化。在所有测试的情况下,基因组转化都获得了成功,转化率从 0.2%到 2.9%不等,这与拟南芥研究的结果非常吻合。与仅在子房密封前的花蕾期进行有效的农杆菌浸花转化的拟南芥不同,满天星花朵在浸花时可以在花蕾前 4 天或花蕾后 3-5 天进行转化,效率分别为 1.5%和 3.7%。子房密封后可以进行花蕾后转化。含有 GFP 标记基因的荧光农杆菌浸花 Excalibur Pink 花表明,农杆菌通过开放的柱头和花柱管进入密封的花子房。在这项研究中,我们证明了商业植物满天星 Excalibur Pink 的浸花转化发生在子房密封之后,可能通过柱头和宽阔的花柱管。

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