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Effect of sucrose application, minerals, and irradiance on the in vitro growth of Cistus incanus seedlings and plantlets

机译:蔗糖的施用,矿物质和辐照度对印度长毛蕊seedling幼苗和小苗体外生长的影响

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To study the effect of sucrose on the sink-source relationship in in vitro-grown plants, Cistus incanus seedlings and plantlets were grown horizontally in a two-compartment Petri dish (split dish), with the root system in one compartment and the shoot in the other. Shoots and roots were exposed to different sucrose concentrations (0–30 g dm−3), two irradiance levels (25 and 160 µmol m−2s−1) and the presence or absence of a minimum medium containing minerals and vitamins (M medium). Root and shoot biomass of the seedlings was enhanced by an increase in irradiance when the growth medium was not supplemented with sucrose indicating the role of photosynthesis in biomass production. When sucrose was added to either organ growth was enhanced as well. In the presence of sucrose in the root compartment, sucrose applied to the shoot compartment enhanced growth of both organs under low irradiance, while under high irradiance, sucrose had no further additive effect. In the absence of sucrose in the root compartment, the enhancement of root biomass by sucrose added to the shoot compartment was lower under high irradiance than under low irradiance. The response of Cistus plantlets to sucrose and irradiance differed from that of seedlings, probably reflecting a greater susceptibility of the plantlets to sucrose feedback inhibition on photosynthesis and biomass accumulation. The decrease in root and shoot growth when M medium was added to the shoot compartment and the relatively better growth of these organs when the roots were supplied with minerals and the shoot with sucrose, indicate that growth of the two organs in our experimental set-up was regulated by opposing fluxes of C and nutrients. Additional key words sink-source relationship - two-compartment Petri dish Acknowledgment: The author greatly appreciates the technical assistance of Ms. S. Wenkart.
机译:为了研究蔗糖对体外生长植物的库源关系的影响,在两室陪替氏培养皿(分裂培养皿)中水平种植Cistus incanus幼苗和小植株,将根系放在一个隔间中,将枝条放在盆中。另一个。芽和根暴露于不同的蔗糖浓度(0–30 g dm -3 ),两个辐照度水平(25和160 µmol m -2 s -1 ),以及是否存在包含矿物质和维生素的最低培养基(M培养基)。当生长培养基中不添加蔗糖时,辐照度的增加会增强幼苗的根和茎生物量,表明光合作用在生物量生产中的作用。当将蔗糖添加到任一个中时,器官生长也被增强。在根室中存在蔗糖的情况下,向芽室施用蔗糖可在低辐照度下增强两个器官的生长,而在高辐照度下,蔗糖没有进一步的累加作用。在根室中不存在蔗糖的情况下,在高辐照度下添加到芽室中的蔗糖对根系生物量的增强低于在低辐照度下。水仙(Cistus)幼苗对蔗糖和辐照度的反应与幼苗的反应不同,这可能反映了幼苗对蔗糖对光合作用和生物量积累的反馈抑制作用的敏感性更高。当将M培养基添加到芽室中时,根和芽的生长减少,并且当根部提供矿物质和蔗糖时,这些器官的生长相对较好,这表明在我们的实验设置中两个器官的生长由相反的碳和养分流量调节。额外的关键词汇源关系-两室陪替氏培养皿致谢:作者非常感谢S. Wenkart女士的技术协助。

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    《Biologia Plantarum》 |2009年第3期|p.415-421|共7页
  • 作者

    D. Mills;

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