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Regeneration in vitro of economically important crop plants in the Nordic countries

机译:北欧国家重要经济作物的离体再生

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Economically important crop plants comprise agronomic, horticultural and silvicultural species, of which there are numerous examples in the Nordic countries. This review only considers some species representative of the Brassicaceae, Chenopodiaceae, Poaceae and Pinaceae. By regeneration in vitro is meant the reproducible regenesis of plants from their component parts, rather than mass micropropagation which for most crop plants is as yet either irrelevant or unpractical. As regards agronomic crops, the state of application of cell and tissue culture techniques has progressed farthest with oilseed rape (Brassica napus): with allowance made for genotypic effects, regeneration from protoplasts and anther-cultured microspores has almost become routine. Again, allowing for genotypic differences, haploidization of sugar beet (Beta vulgaris) via ovule culture and regeneration of plants with the aid of disarmed, shooty-mutant plasmids of Agrobacterium tumefaciens, often without intervening tumorigenesis, has been shown to be possible. Regeneration in vitro of both Picea abies and Pinus sylvestris can be accomplished, but only when embryonic or seedling tissues are used. The problem of rejuvenation of mature tissues to allow rooting of the adventitious buds that are inducible, within limits, is still unsolved. As elsewhere, lack of understanding or control of factors such as genotype, physiological history and pretreatment of donor plants, and optimal physical (light) and chemical (medium) conditions, still hampers optimization of techniques in the Nordic countries.
机译:具有重要经济意义的农作物包括农艺,园艺和造林物种,北欧国家有很多例子。这篇评论仅考虑了代表十字花科,藜​​科,禾本科和松科的一些物种。体外再生是指植物从其组成部分可再生的再生,而不是对于大多数农作物而言无关紧要的或不切实际的大规模微繁殖。关于农作物,细胞和组织培养技术的应用状况已在油菜(甘蓝型油菜)上取得了最远的进展:考虑到基因型效应,原生质体和花药培养的小孢子再生几乎已成为常规。再次,考虑到基因型的差异,已经证明通过胚珠培养使甜菜单倍体化(Beta vulgaris),并借助农杆菌的解除武装,多芽突变的质粒再生植物,通常无需干预肿瘤发生,就可以实现。云杉和樟子松均可在体外再生,但仅在使用胚胎或幼苗组织时才可再生。仍未解决使成熟组织恢复活力以允许可诱导的不定芽在一定范围内生根的问题。与其他地方一样,由于缺乏对基因型,生理史和供体植物预处理等因素的了解或控制,以及最佳的物理(光照)和化学(中等)条件,仍然阻碍了北欧国家对技术的优化。

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