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西兰花(Brassica oleracea L. var. italica)是一种重要的蔬菜作物,其下胚轴、子叶、叶片和叶柄外植体中的高频器官发生。

High frequency organogenesis in hypocotyl, cotyledon, leaf and petiole explants of broccoli (Brassica oleracea L. var. italica), an important vegetable crop.

作者信息

Kumar Pankaj, Srivastava D K

机构信息

Department of Biotechnology, Dr. Y S Parmar University of Horticulture and Forestry, Nauni, Solan, 173230 Himachal Pradesh India.

出版信息

Physiol Mol Biol Plants. 2015 Apr;21(2):279-85. doi: 10.1007/s12298-015-0282-6. Epub 2015 Mar 18.

Abstract

Broccoli (Brassica oleracea L. var. italica) is an important, nutritionally rich vegetable crop, but severely affected by environmental stresses, pests and diseases which cause massive yield and quality losses. Genetic manipulation is becoming an important method for broccoli improvement. In the present study, a reproducible and highly efficient protocol for obtaining organogenesis from hypocotyl, cotyledon, leaf and petiole explants of broccoli (Brassica oleracea L. var. italica cv. Solan green head) has been developed. Hypocotyl and cotyledon explants were used from 10 to 12 days old aseptically grown seedlings whereas leaf and petiole explants were excised from 18 to 20 days old green house grown seedlings and surface sterilized. These explants were cultured on shoot induction medium containing different concentration and combination of BAP and NAA. High efficiency shoot regeneration has been achieved in hypocotyl (83.33 %), cotyledon (90.11 %), leaf (62.96 %) and petiole (91.10 %) explants on MS medium supplemented with 3.5 mg/l BAP + 0.019 mg/l NAA 2.5 mg/l BAP + 0.5 mg/l NAA, 4.0 mg/l BAP + 0.5 mg/l NAA and 4.5 mg/l BAP + 0.019 mg/l NAA respectively. Petiole explants showed maximum shoot regeneration response as compared to other explants. MS medium supplemented with 0.10 mg/l NAA was found best for root regeneration (100 %) from in vitro developed shoots. The regenerated complete plantlets were transferred to the pots containing cocopeat and successfully acclimatized. This optimized regeneration protocol can be efficiently used for genetic transformation in broccoli. This is the first comparative report on multiple shoot induction using four different types of explants viz. hypocotyl, cotyledon, leaf and petiole.

摘要

西兰花(Brassica oleracea L. var. italica)是一种重要的、营养丰富的蔬菜作物,但受到环境胁迫、病虫害的严重影响,导致产量和品质大幅损失。基因操作正成为改良西兰花的重要方法。在本研究中,已开发出一种可重复且高效的方案,用于从西兰花(Brassica oleracea L. var. italica cv. Solan green head)的下胚轴、子叶、叶片和叶柄外植体获得器官发生。下胚轴和子叶外植体取自无菌培养10至12天的幼苗,而叶片和叶柄外植体则从温室培养18至20天的幼苗上切取并进行表面消毒。这些外植体在含有不同浓度和组合的BAP和NAA的芽诱导培养基上培养。在添加3.5 mg/l BAP + 0.019 mg/l NAA、2.5 mg/l BAP + 0.5 mg/l NAA、4.0 mg/l BAP + 0.5 mg/l NAA和4.5 mg/l BAP + 0.019 mg/l NAA的MS培养基上,下胚轴(83.33%)、子叶(90.11%)、叶片(62.96%)和叶柄(91.10%)外植体均实现了高效芽再生。与其他外植体相比,叶柄外植体的芽再生反应最为显著。发现添加0.10 mg/l NAA的MS培养基最适合离体发育芽的生根(100%)。再生的完整植株被转移到装有椰糠的花盆中,并成功驯化。这种优化的再生方案可有效用于西兰花的遗传转化。这是关于使用四种不同类型外植体(即下胚轴、子叶、叶片和叶柄)进行多芽诱导的第一份比较报告。

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