Development of the Functional Male Sterile Line of Eggplant Utilizing the Cytoplasm of Solanum kurzii by Way of the Amphidiploid

M. Khan, Takashi Arita, Masaki Iwayoshi, Y. Ogura‐Tsujita, S. Isshiki
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引用次数: 1

Abstract

Eggplant (Solanum melongena L.) is an important and popular vegetable crop, especially in Asia (Yamaguchi, 1983). Most commercial cultivars of eggplant are F1 hybrids, as inter-breed hybrids of eggplant develop considerable heterosis, especially in yield (Kakizaki, 1931; Sambandum, 1962). Seed production in eggplant hybrid cultivars is cumbersome, as it requires manual emasculation, pollination, bagging, etc. If it is possible to establish a superior male sterility system in eggplant, it can reduce the labor required to produce F1 hybrid seeds. In our laboratory, we have developed the cytoplasm substitution lines of eggplant by continuous backcrossing between S. kurzii Brace & Prain and eggplant using S. kurzii as cytoplasm donor and eggplant as nucleus one (Khan and Isshiki, 2009). The lines showed the anther indehiscent type (i.e., pollen non-release type) of functional male sterility in the BC1, BC2, and BC3 plants, however, the genetic segregation of anther dehiscent and indehiscent types occurred in each of the generation (Khan and Isshiki, 2009). Cytoplasmic substitution lines of eggplant could be obtained in another method through the amphidiploid. This method restores the fertility of the F1 by chromosome doubling with colchicine consequently the backcrossing is often successful. It is a common practice in Brassica vegetables (Kanada and Kato, 1997). In the present study, therefore, we performed cytoplasmic substitution by the way of amphidiploid because this method might be able to accelerate genetic fixation of the anther indehiscent type. Each of the backcross generations was investigated for the fertility traits and the data were compared with the previous ones (Khan and Isshiki, 2009).
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利用茄细胞质双二倍体培育茄子功能性雄性不育系
茄子(Solanum melongena L.)是一种重要且受欢迎的蔬菜作物,尤其是在亚洲(Yamaguchi,1983)。大多数茄子的商业品种都是F1杂交种,因为茄子的品种间杂交种具有相当大的杂种优势,尤其是在产量方面(Kakizaki,1931;Sambandum,1962)。茄子杂交品种的种子生产很麻烦,因为它需要人工去雄、授粉、套袋等。如果能够在茄子中建立一个优越的雄性不育系统,就可以减少生产F1杂交种子所需的劳动力。在我们的实验室中,我们通过在S.kurzii Brace和Prain与茄子之间的连续回交,以S.kurzi为细胞质供体,茄子为细胞核供体,开发了茄子的细胞质替代系(Khan和Isshiki,2009)。在BC1、BC2和BC3植株中,品系表现出功能雄性不育的花药不裂型(即花粉不释放型),然而,花药开裂型和不裂型的遗传分离发生在每一代中(Khan和Isshiki,2009)。茄子的细胞质替代系可以通过两倍体的另一种方法获得。这种方法通过用秋水仙碱加倍染色体来恢复F1的育性,因此回交通常是成功的。这是芸苔属蔬菜中常见的做法(Kanada和Kato,1997)。因此,在本研究中,我们采用两倍体的方式进行细胞质替代,因为这种方法可能能够加速花药不裂型的遗传固定。对每个回交世代的育性特征进行了调查,并将数据与以前的数据进行了比较(Khan和Isshiki,2009)。
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