植物生长素和细胞分裂素体内注射来佛花花蕾的初步研究

S. Mursidawati, Adhityo Wicaksono
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引用次数: 2

摘要

莱佛士花从花芽到花期的生长分化调控机制目前尚不清楚,特别是是否有植物生长调节剂(PGR)生理通路发挥某种作用。在野外,可供研究的花蕾数量非常有限。在本研究中,我们将6个Rafflesia patma Blume的花蕾分为3个不同的处理:2个花蕾注射生长素(吲哚乙酸,IAA), 2个花蕾注射细胞分裂素(kinetin), 2个花蕾注射无菌蒸馏水作为对照。与对照相比,IAA和激动素处理的芽都增大了,但只有注射IAA的芽在观察5周的2周内出现了苞片的过渡阶段(从以前的苞片阶段变成苞片阶段)。这些结果进一步提出了一个问题,即莱佛士花的发育是否更可能是由于花蕾中的生长素暴露而不是细胞分裂素。未来的研究应包括增加治疗的样本量,加强PGR给药以使其暴露于组织并减少组织损伤,注射其他PGR,如赤霉素(GA)和茉莉酸(JA),以及组织学组织分析以深入研究PGR的作用。
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A PRELIMINARY STUDY OF IN VIVO INJECTION OF AUXIN AND CYTOKININ INTO Rafflesia patma Blume FLOWER BUDS
The controlling mechanisms for the growth and differentiation of Rafflesia from a flower bud into the anthesis stage is currently unknown, particularly if any plant growth regulator (PGR) physiological pathways play some type of roles. In the wild, the number of flower buds available to study are extremely limited. In this study, we grouped six flower buds of Rafflesia patma Blume into three different treatments: two buds injected with auxin (indoleacetic acid, IAA), two buds injected with cytokinin (kinetin), and two buds injected with sterile distilled water as a control. Buds enlarged with both IAA and kinetin treatments compared to the control, but only buds injected with IAA showed a transition stage with the bract revealed (cupule-bract stage from previously cupule stage) within two weeks of five weeks of observation. These results raise further questions whether Rafflesia development is more likely due to auxin exposure when in flower bud as compared to cytokinin. Future studies should include increased sample size for treatments, enhanced PGR administration to allow exposure to the tissue and less tissue damage, injection of other PGRs such as gibberellin (GA) and jasmonic acid (JA), and histological tissue analysis to investigate PGR effects in depth.
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