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Combining Ability of Callus Induction and Plant Regeneration in Sorghum Anther Culture

机译:高粱花药培养中愈伤组织诱导和植株再生的结合能力

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Fifteen F1 hybrids derived from a six-parent diallel mating set (without reciprocal) of sorghum genotypes were used to investigate the combining ability for callus induction and plant regeneration. Anthers at a young stage were collected from the parents and hybrids, which were grown in a greenhouse, and cultured on a modified Murashige and Skoog medium containing 1.0 mg L-1 IAA, 2.5 mg L-1 2, 4-D and 2.0 mg L-1 kinetin. Calli of 2 to 5 mm in diameter were transferred to a regeneration medium containing 2.5 mg L-1 kinetin and 3.0 mg L-1 IAA for plant regeneration. The general combining ability (GCA) accounted for a larger proportion than the specific combining ability (SCA) for callus induction (179.83, mean square for GCA vs. 31.75, mean square for SCA) and for plant regeneration (1225.73, for GCA vs. 410.37, for SCA). Some parents and hybrids showed high callus induction ability accompanied with high green-plant regeneration ability. Thus, improvement of the rate of green-plant regeneration in anther culture through crossing and selection may be possible.
机译:15个F1杂种衍生自高粱基因型的六亲本二烯对偶交配组(无倒数),用于研究愈伤组织诱导和植物再生的结合能力。从亲本和杂种中收集年轻时期的花药,将其在温室中生长,并在含有1.0 mg L-1 IAA,2.5 mg L-1 2、2、4-D和2.0 mg的改良Murashige和Skoog培养基上进行培养L-1激动素。将直径为2至5mm的愈伤组织转移至含有2.5mg L-1激动素和3.0mg L-1IAA的再生培养基中以进行植物再生。对于愈伤组织的诱导(179.83,GCA的均方与31.75,SCA的均方),对于植物再生(GCA vs.1225.73),一般结合能力(GCA)占比特定结合能力(SCA)更大的比例。 410.37,适用于SCA)。一些亲本和杂种表现出高的愈伤组织诱导能力和高的绿植再生能力。因此,可以通过杂交和选择来提高花药培养中绿色植物再生的速率。

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