首页> 外文期刊>Agroforestry Systems >Synseed conception for short-term storage, germplasm exchange and potentialities of regeneration genetically stable plantlets of desert date tree (Balanites aegyptiaca Del.)
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Synseed conception for short-term storage, germplasm exchange and potentialities of regeneration genetically stable plantlets of desert date tree (Balanites aegyptiaca Del.)

机译:用于沙漠枣树(Balanites aegyptiaca Del。)的短期贮藏,种质交换和再生遗传稳定苗的潜力的合成概念。

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Synthetic seed has become a proficient tool that facilitates conservation as well as mass propagation of elite plant species by encapsulating somatic embryo or meristem tissue. Inclusion of meristematic tissues instead of somatic embryos hastens widespread utilization of this technology in recent years. Synseeds offer short term conservation of germplasms, provide readily available tissue source for easy mass propagation where each synseeds can virtually act as zygotic seeds giving rise to plantlets. This is the first report on synseed production following the confirmation of the genetic homogeneity in regenerated plantlets of Balanites aegyptiaca Del. (L.) using ISSR marker system. In this study, nodal segments, excised from in vitro proliferated shoot cultures developed from mother plant, were encapsulated in calcium alginate beads and the finest gel complexation was achieved using 3 % sodium alginate and 100 mM CaCl2 center dot 2H(2)O. Maximum percent response (80 %) for conversion of encapsulated nodal segments into plantlets was obtained on Murashige and Skoog (MS) medium containing 12.5 mu M benzyladenine and 1.0 mu M alpha-naphthalene acetic acid. Encapsulated nodal segments could be stored at low temperature (4 A degrees C) up to 4 weeks with a survival frequency of 82 %. The regenerated shoots were rooted on half strength MS medium augmented with 1.0 mu M indole-3-butyric acid. Well-developed plantlets regenerated from encapsulated nodal segments were acclimatized successfully with 90 % survival frequency. Fingerprinting profiles of the regenerated plantlets derived from synseeds and the donor plant were generated using a total of 20 ISSR primers, of which 14 primers produced distinct, reproducible amplified products. A total of 158 scorable bands were obtained from the complete amalgamation of primers and plantlets and 98.7 % bands were monomorphic across the plantlets which indicate that this micropropagated line derived from synseed is genetically stable and demonstrates the reliability of our protocol for short term conservation, germplasm exchange and distribution of identical plants.
机译:合成种子已成为一种有效的工具,通过封装体细胞胚或分生组织来促进优良植物物种的保存和大量繁殖。近年来,包括分生组织而不是体细胞胚促进了该技术的广泛应用。 Synseeds提供了种质的短期保存,提供了易于获得的组织来源,易于大规模繁殖,其中每个Synseeds实际上都可以充当合子种子,从而产生小植株。这是有关使用ISSR标记系统确认Balanites aegyptiaca Del。(L.)再生小植株的遗传同质性后有关合成生产的第一份报告。在这项研究中,从母体植物体外增殖的芽培养物中切下的节段被封装在藻酸钙珠粒中,并使用3%藻酸钠和100 mM CaCl2中心点2H(2)O实现了最佳的凝胶络合。在包含12.5μM苄基腺嘌呤和1.0μMα-萘乙酸的Murashige和Skoog(MS)培养基上获得了将包封的节段片段转化为小植株的最大响应百分比(80%)。封装的节段可以在低温(4 A摄氏度)下最多保存4周,存活频率为82%。再生的芽生根于半强度MS培养基中,该培养基用1.0μM吲哚-3-丁酸增强。从包囊的节段再生的发达的小植株成功地适应了90%的存活频率。总共使用20种ISSR引物,生成了来自seneses和供体植物的再生小植株的指纹图谱,其中14种引物产生了独特的,可再现的扩增产物。从引物和幼苗的完全融合中获得了总共158条可评分带,并且98.7%的条带在整个幼苗上是单态的,这表明这种从合成的微繁殖系是遗传稳定的,证明了我们用于短期保存,种质的方案的可靠性交换和分配相同的植物。

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