Faculté des Sciences Agronomiques de l'Etat, Unité de Biologie Moléculaire et Physiologie animale, 5030 Gembloux Belgium.
Plant Physiol. 1991 Jun;96(2):479-84. doi: 10.1104/pp.96.2.479.
The micropropagation of apple (Malus domestica [L.] Borkh) cultivars is usually achieved by axillary bud stimulation and requires an exogenous cytokinin supply. Two cDNA libraries were constructed from mRNA isolated from plantlets grown in vitro on medium with or without benzyladenine. One cDNA clone (pSD3), corresponding to transcripts more abundant in plantlets grown on medium containing cytokinin than on medium lacking the hormone, was isolated. It corresponds to a mRNA of about 1,800 nucleotides which codes for a proline-rich protein with a predicted mass of 31,000 daltons. Its accumulation is restricted to roots and stems of in vivo grown apple plantlets and to stems of microcuttings cultivated on medium without cytokinin. Furthermore, it accumulates to comparable levels in leaves and stems when plantlets are grown on medium containing benzyladenine. A second cDNA clone (pSD4), corresponding to transcripts down-regulated in the presence of cytokinin in the culture medium, was also characterized. Its corresponding mRNA is about 700 nucleotides in length and encodes a protein highly homologous to the precursor of the 10-kilodalton polypeptide of the photosystem II from spinach. This mRNA accumulates specifically in leaves of apple plantlets and is more abundant in leaves of plantlets grown in the absence of cytokinin compared with plantlets grown in the presence of benzyladenine.
苹果(Malus domestica [L.] Borkh)品种的微繁殖通常通过腋芽刺激来实现,需要外源细胞分裂素供应。从在含有或不含有苄基腺嘌呤的培养基上体外生长的幼苗中分离的 mRNA 构建了两个 cDNA 文库。分离出一个 cDNA 克隆(pSD3),它对应于在含有细胞分裂素的培养基上生长的幼苗中比在缺乏激素的培养基上生长的幼苗中更丰富的转录物。它对应于约 1800 个核苷酸的 mRNA,编码富含脯氨酸的蛋白质,预测分子量为 31000 道尔顿。它的积累仅限于体内生长的苹果幼苗的根和茎,以及在不含细胞分裂素的培养基上培养的微扦插的茎。此外,当幼苗在含有苄基腺嘌呤的培养基上生长时,它在叶片和茎中积累到相当的水平。还对第二个 cDNA 克隆(pSD4)进行了表征,该克隆对应于培养基中存在细胞分裂素时下调的转录物。其对应的 mRNA 长约 700 个核苷酸,编码与菠菜光系统 II 10 千道尔顿多肽前体高度同源的蛋白质。这种 mRNA 特异性地在苹果幼苗的叶片中积累,并且在没有细胞分裂素的情况下生长的幼苗中的叶片中比在有苄基腺嘌呤的情况下生长的幼苗中的叶片中更丰富。