首页> 外文OA文献 >One-step generation of cytoplasmic male sterility by fusion of mitochondrial-inactivated tomato protoplasts with nuclear-inactivated Solanum protoplasts.
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One-step generation of cytoplasmic male sterility by fusion of mitochondrial-inactivated tomato protoplasts with nuclear-inactivated Solanum protoplasts.

机译:通过线粒体灭活的番茄原生质体与核灭活的茄属原生质体融合,一步一步产生胞质雄性不育。

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摘要

Mesophyll protoplasts of Lycopersicon esculentum were treated with iodoacetamide to inactivate mitochondria, and protoplasts of Solanum acaule and Solanum tuberosum were irradiated with gamma- or x-rays to inactivate nuclei. Mixtures of protoplasts thus modified were treated with Ca2+ and polyethylene glycol to obtain heterologous fusion products. Among the fusion products were some tomato plants that were indistinguishable from the original cultivars with respect to morphology, physiology, and chromosome number (2N = 24) but exhibited various degrees of male sterility (MS): complete lack or malformation of anthers, shrunken pollen, and normal-looking stainable pollen that could not germinate. The MS thus induced in five cultivars of different growth types, including one of subspecies L. esculentum cerasiforme, was inherited maternally over several generations and is, therefore, cytoplasmically determined MS (CMS). Analysis of mitochondrial DNA revealed that the mitochondrial genome of the CMS hybrids does not contain all elements of the mitochondrial DNA of either parent but includes sequences of a recombinational nature not present in either parent. The CMS hybrids, therefore, possess a true hybrid mitochondrial genome. The same procedure applied to fusion of tomato with Solanum lycopersicoides and Nicotiana tabacum cells did not produce CMS phenotypes. The advantages of this method over others for generating MS are as follows: (i) only one step is required; (ii) the nuclear genotype of the cultivar is unaffected; (iii) the prospect that cytoplasmic determination allows generation of 100% CMS progenies. The normal-appearing but nonfunctional pollen of certain CMS types might render them attractive to pollinating bumblebees that thus would facilitate production of hybrid seed.
机译:用碘乙酰胺处理番茄番茄的叶肉原生质体,以灭活线粒体,然后用γ射线或X射线辐照龙葵和马铃薯的原生质体,以灭活细胞核。将如此修饰的原生质体混合物用Ca 2+和聚乙二醇处理以获得异源融合产物。在融合产物中,有一些番茄植物在形态,生理和染色体数(2N = 24)方面与原始品种没有区别,但表现出不同程度的雄性不育(MS):花药完全缺乏或畸形,花粉收缩。以及外观正常但无法发芽的可染花粉。因此,在五个不同生长类型的栽培种中诱导的MS,包括番茄亚种之一,在多个世代中都是母系遗传的,因此是细胞质确定的MS(CMS)。线粒体DNA的分析表明,CMS杂种的线粒体基因组不包含任何一个亲本的线粒体DNA的所有元素,但包含在任何一个亲本中都不存在的重组性质的序列。因此,CMS杂种拥有真正的杂种线粒体基因组。用于番茄与番茄茄属和烟草的融合的相同程序没有产生CMS表型。该方法相对于其他方法产生MS的优点如下:(i)仅需要一个步骤; (ii)品种的核基因型不受影响; (iii)细胞质测定可以产生100%CMS后代的前景。某些CMS类型的正常出现但无功能的花粉可能使它们对授粉的大黄蜂具有吸引力,从而有利于杂交种子的生产。

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