首页> 外文期刊>In Vitro Cellular and Development Biology. Plant: Journal of the Tissue Culture Association >Peroxidate isoenzymes as markers for the rooting ability of easy-to-root and difficult-to-root Grevillea species and cultivars of Protea osbtusifolia (proteaceae)
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Peroxidate isoenzymes as markers for the rooting ability of easy-to-root and difficult-to-root Grevillea species and cultivars of Protea osbtusifolia (proteaceae)

机译:过氧化物同工酶作为易根和难根Grevillea物种和Protea osbtusifolia(proteaceae)品种生根能力的标志

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摘要

One easy-to-root and one difficult-to-root species of the ornamental plant Grevillea were investigated for rooting potential in relation to peroxidase activity. In vitro-grown shoot segments of both species started to root 30d after transplanting to rooting medium containing indole-3-butyric acid (IBA), however, fewer roots were found on fewer segments of the difficult-to-root species G. petrophioides compared to the easy-to-root species G. rondeau. Total peroxidase (POX) activity was measured during the rooting process. G. petrophioides showed higher total POX activity at the time point of adventitious root formation than G. rondeau. Isoelectric focusing electrophoresis showed that G. rondeau contained more acidic isoforms than G. petrophioides, but the basic isofoms were more prominent in the difficult-to-root species, especially at the time point of lateral rot emergence. In addition, the ability of different hormones to induce POX activity in upper and lower stem segments of both species was tested. Indole-3-acetic acid (IAA), IBA and α-naphthaleneacetic acid induced POX activity in the upper stem segments of G. rondeau, whereas the same hormones led to the induction of POX activity in the lower stem segments of G. petrophioides. Similar to the results obtained with Grevillea, th difficult-to-root variety of Protea showed higher POX activity, especially in the middle stem part and the leaves. Feeding of radiolabeled IAA to the Grevillea stem segments resulted in the synthesis of three different compounds in both species. After 1h incubation no differences were found in the uptake of IAA and the appearance of other labeled compounds. However, after 2 and 4h incubation IAA uptake was faster in the easy-to-root species and IAA was also metabolized to a higher extent in G. rondeau. Three metabolites were found, tentatively identified as IAA-aspartate, IBA, and an IBA conjugate.
机译:研究了观赏植物Grevillea的一种容易生根和一种难以生根的物种与过氧化物酶活性相关的生根潜力。移植到含有吲哚-3-丁酸(IBA)的生根培养基后,这两个物种的体外生长芽节段开始生根30天,但是,与难生根的物种G. petphiphioides相比,在较少的节段上发现了较少的根易生根的罗非鱼。在生根过程中测量总过氧化物酶(POX)活性。在不定根形成的时间点,类石。比总龙胆具有更高的总POX活性。等电聚焦电泳表明,罗氏沼虾的酸性同工型比石雀兽多,但基本的等位基因在难以生根的物种中更为突出,特别是在侧腐出现时。此外,还测试了不同激素在两个物种的上,下茎节中诱导POX活性的能力。吲哚-3-乙酸(IAA),IBA和α-萘乙酸可诱导朗多菌上部茎节中的POX活性,而相同的激素则可导致石脑子下部茎节中POX活性的诱导。与使用Grevillea获得的结果相似,难以根系的Protea表现出较高的POX活性,尤其是在中茎部分和叶片中。将放射性标记的IAA喂入Grevillea茎节导致两种物种合成了三种不同的化合物。孵育1小时后,IAA的吸收和其他标记化合物的外观均未发现差异。然而,在2和4h的温育后,易于根系的物种吸收IAA的速度更快,而且G. rondeau中IAA的代谢程度也更高。发现了三种代谢物,初步鉴定为IAA天冬氨酸,IBA和IBA共轭物。

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