...
首页> 外文期刊>Tree Physiology >Silver birch (Betula pendula) plants with aux and rol genes show consistent changes in morphology, xylem structure and chemistry
【24h】

Silver birch (Betula pendula) plants with aux and rol genes show consistent changes in morphology, xylem structure and chemistry

机译:具有aux和rol基因的白桦(Betula pendula)植物在形态,木质部结构和化学性质方面显示出一致的变化

获取原文
获取原文并翻译 | 示例
           

摘要

The effects of Agrobacterium pRiA4 rol and aux genes, controlled by their endogenous promoters, on tree growth and wood anatomy and chemistry were studied in 5-and 7-year-old silver birch (Betula pendula Roth) plants. Southern hybridization confirmed the following rol and aux gene combinations: control plants (no genes transferred); plants with rolC and rolD genes; plants with rolA, rolB, rolC and rolD genes; and plants with rolA, rolB, rolC, rolD, aux1 and aux2 genes. Transgene mRNA was most abundant in phloem/cambium samples and in the developing xylem, whereas no expression was detected in leaves. Plants with rolC and rolD genes or with all the rol genes were significantly shorter and had smaller leaves and a more bushy growth habit than control plants or plants with both aux and rol genes. Morphological observations and wood chemistry analyses revealed that plants with rol genes produced less xylem and broke bud later than control plants or plants with both aux and rol genes. Tension wood was detected in both control and transgenic plants irrespective of their gene combination, probably as a result of greenhouse cultivation. Xylem fibers were shorter in transgenic plants than in control plants, and plants with all the rol genes were characterized by shorter vessels compared with the control plants and a smaller proportional area of vessels compared with the other groups. In addition, silver birch plants with all the rol genes had approximately a 3.3% lower concentration of total acid soluble carbohydrates than control plants. We conclude that the rolC and rolD genes induced the typical "rol-phenotype," and that this was emphasized by concomitant expression of the rolA and rolB genes and alleviated by the presence of aux1 and aux2 genes. We observed consistent phenotypic effects of rol and aux genes on the morphology, anatomy and cell wall chemistry of the plants.
机译:在5岁和7岁的白桦(Betula pendula Roth)植物中研究了农杆菌pRiA4 rol和aux基因(受其内源启动子控制)对树木生长以及木材解剖和化学的影响。 Southern杂交证实了以下rol和aux基因组合:对照植物(无基因转移);具有rolC和rolD基因的植物;具有rolA,rolB,rolC和rolD基因的植物;以及具有rolA,rolB,rolC,rolD,aux1和aux2基因的植物。转基因mRNA在韧皮部/形成层样品和正在发展的木质部中含量最高,而在叶片中未检测到表达。与对照植物或同时具有aux和rol基因的植物相比,具有rolC和rolD基因或具有所有rol基因的植物明显更短,叶片更小,并且丛生的生长习性更强。形态学观察和木材化学分析表明,与对照植物或同时具有aux和rol基因的植物相比,具有rol基因的植物产生较少的木质部并且断芽较晚。无论是对照植物还是转基因植物,无论其基因组合如何,都可能检测到张力木材,这可能是温室栽培的结果。转基因植物中的木质部纤维比对照植物短,并且具有所有rol基因的植物的特征在于与对照植物相比更短的容器和与其他组相比更小的容器的比例区域。另外,具有所有rol基因的白桦植物的总酸可溶性碳水化合物的浓度比对照植物低约3.3%。我们得出的结论是rolC和rolD基因诱导了典型的“ rol-表型”,而rolA和rolB基因的同时表达强调了这一点,而aux1和aux2基因的存在减轻了这一点。我们观察到rol和aux基因对植物的形态,解剖学和细胞壁化学的一致表型效应。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号