Perl-Treves R, Kahana A, Rosenman N, Xiang Y, Silberstein L
Department of Life Science, Bar-Ilan University, Ramat-Gan, Israel.
Plant Cell Physiol. 1998 Jul;39(7):701-10. doi: 10.1093/oxfordjournals.pcp.a029424.
Members of the MADS-box gene family control reproductive development in higher plants. In cucumber, floral development exhibits several interesting features related to a genetically determined sex-expression mechanism, that affects the differentiation of male and female flowers. In this study, three cDNA homologues of the homeotic gene AGAMOUS have been cloned from early-stage floral buds of Cucumis sativus and fully sequenced. Their expression was studied by Northern analysis using two contrasting sex genotypes, an androecious line and a gynoecious one. The three genes are expressed at low levels at earlier bud stages, the levels rising as the bud matures. Two of the clones, CAG1 and CAG3, are expressed in the third and fourth whorl of mature flowers, while CAG2 is restricted to the carpel; none is expressed in leaves. The transcript levels do not appear to be modulated by gibberellin or ethephon, two treatments that alter sex expression in cucumber. While MADS-box genes probably play an essential role in cucumber floral development, as they do in other plants, our findings may imply that the pathway leading to reproductive organ arrest in cucumber unisexual buds acts independently of MADS-box gene expression.
MADS-box基因家族的成员控制着高等植物的生殖发育。在黄瓜中,花的发育表现出一些与基因决定的性别表达机制相关的有趣特征,这种机制影响着雄花和雌花的分化。在本研究中,从黄瓜早期花芽中克隆了同源异型基因AGAMOUS的三个cDNA同源物,并进行了全序列测定。使用两种不同的性别基因型(雄花系和雌花系)通过Northern分析研究了它们的表达。这三个基因在早期芽阶段表达水平较低,随着芽的成熟表达水平升高。其中两个克隆CAG1和CAG3在成熟花的第三和第四轮中表达,而CAG2仅在心皮中表达;在叶片中均不表达。转录水平似乎不受赤霉素或乙烯利的调节,这两种处理会改变黄瓜的性别表达。虽然MADS-box基因可能像在其他植物中一样在黄瓜花的发育中起重要作用,但我们的发现可能意味着导致黄瓜单性花芽中生殖器官停滞的途径独立于MADS-box基因表达起作用。