Coupe S A, Taylor J E, Isaac P G, Roberts J A
Department of Physiology and Environmental Science, Faculty of Agriculture and Food Sciences, University of Nottingham, Loughborough, Leics, UK.
Plant Mol Biol. 1993 Dec;23(6):1223-32. doi: 10.1007/BF00042355.
Pod development in oilseed rape (Brassica napus) culminates in a process known as dehiscence (shatter) which can result in the loss of seed before the crop is harvested. In order to investigate the biochemical and the genetic basis controlling this process, a cDNA library was constructed from the dehiscence zone of developing pods. This resulted in the isolation of a cDNA clone (SAC51). The mRNA encoded by SAC51 had a transcript size of ca. 700 nucleotides and was found, by northern analysis, to accumulate preferentially in the dehiscence zone of the pod and in no other part of the plant analysed. The predicted polypeptide is rich in the amino acids proline (14.2%) and leucine (14.2%). The sequence of the polypeptide has more than 40% amino acid sequence identity with polypeptides isolated from carrot embryos, maize roots, soybean seeds and young tomato fruit. The function of these proteins is unknown. Genomic Southern analysis suggests that SAC51 is encoded by a single gene or small gene family. The role of the peptide in the development of pods of oilseed rape is discussed.
油菜(甘蓝型油菜)的角果发育最终会经历一个称为开裂(破碎)的过程,这可能导致作物收获前种子损失。为了研究控制这一过程的生化和遗传基础,从发育中角果的开裂区构建了一个cDNA文库。这导致分离出一个cDNA克隆(SAC51)。SAC51编码的mRNA转录本大小约为700个核苷酸,通过Northern分析发现,它优先在角果的开裂区积累,在所分析的植物其他部位均未发现。预测的多肽富含脯氨酸(14.2%)和亮氨酸(14.2%)。该多肽序列与从胡萝卜胚胎、玉米根、大豆种子和番茄幼果中分离出的多肽具有40%以上的氨基酸序列同一性。这些蛋白质的功能尚不清楚。基因组Southern分析表明,SAC51由一个单基因或小基因家族编码。本文讨论了该肽在油菜角果发育中的作用。