首页> 外文期刊>Plant Science: An International Journal of Experimental Plant Biology >Production of intergeneric somatic hybrids of chrysanthemum [Dendranthema x grandiflorum (Ramat.) Kitamura] and wormwood (Artemisia sieversiana J. F. Ehrh. ex. Willd) with rust (Puccinia horiana Henning) resistance by electrofusion of protoplasts
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Production of intergeneric somatic hybrids of chrysanthemum [Dendranthema x grandiflorum (Ramat.) Kitamura] and wormwood (Artemisia sieversiana J. F. Ehrh. ex. Willd) with rust (Puccinia horiana Henning) resistance by electrofusion of protoplasts

机译:通过原生质体电融合产生具有抗锈性的菊花[Dendranthema x grandiflorum(Ramat。)Kitamura]和艾草(Artemisia sieversiana J. F. Ehrh。ex。Willd)的属间体细胞杂种。

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We produced intergeneric somatic hybrids between chrysanthemum [Dendranthema x grandiflorum (Ramat.) Kitamura] and wormwood (Artemisia sieversiana J. F. Ehrh. ex. Willd) by electrofusion of mesophyll protoplasts. Chrysanthemum protoplasts were inactivated with iodoacetamide for 15 min at 5 degreesC and electrofused with wormwood protoplasts. The fused cells were Cultured on MS basal medium containing 1 mg/l naphthaleneacetic acid (NAA) and 1 mg/l 6-benzylaminopurine (BAP) to regenerate somatic hybrid chrysanthemum plants. The 3,864 calli that appeared produced 1,342 plantlets, all of which had RFLP bands specific for both chrysanthemum and wormwood. The chromosome numbers of the somatic hybrid plants were 64-72, indicating that chromosomes were eliminated during cell division or plant regeneration. The 1,342 plantlets were grown in pots in a greenhouse, and 23 of the plants flowered. These 23 somatic hybrid plants were examined for rust (Puccinia horiana Henning) resistance and abnormal morphology in comparison with the parent plants. The somatic hybrid plants were more resistant to rust than chrysanthemum. and the disease spots that appeared had diameters of only 1-2 mm, and they have not expanded any more. The characteristics of the flowers such as flower shares and colors of their flowers differed from those of the parent plants, and these somatic hybrid plants were possibly male-sterile. Although the rooting ability of the somatic hybrid plants was poor, the somatic hybrid plants had agronomical treat, demonstrating the efficiency of this technique in transferring agronomically useful genes from cross-incompatible species or genera
机译:我们通过叶肉原生质体的电融合产生了菊花[Dendranthema x grandiflorum(Ramat。)Kitamura]和艾草(Artemisia sieversiana J. F. Ehrh。ex。Willd)之间的属间体细胞杂种。在5℃下用碘乙酰胺灭活菊花原生质体15分钟,并与艾草原生质体电融合。融合的细胞在含有1 mg / l萘乙酸(NAA)和1 mg / l 6-苄基氨基嘌呤(BAP)的MS基础培养基上培养,以再生体细胞杂种菊花植物。出现的3864个愈伤组织产生了1342株小苗,所有小苗都具有针对菊花和艾草的RFLP带。体细胞杂种植物的染色体数为64-72,表明染色体在细胞分裂或植物再生过程中被消除。在温室的盆中种植了1,342株小植株,其中23株开花。与亲本植物相比,检查了这23种体细胞杂种植物的锈病(Puccinia horiana Henning)抗性和异常形态。体细胞杂种植物比菊花更耐锈。出现的病斑直径仅为1-2 mm,并且不再扩大。花的特性,例如花的份额和花的颜色与亲本植物不同,这些体细胞杂种植物可能是雄性不育的。尽管体细胞杂种植物的生根能力很差,但是体细胞杂种植物具有农艺学处理,证明了该技术从交叉不相容物种或属中转移农学有用基因的效率。

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