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Dichotomization of mycorrhizal and NPA-treated short roots in Pinus sylvestris

机译:樟子松菌根和NPA处理的短根的二分法

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摘要

Conifers like Scots pine (Pinus sylvestris) have a complicated root system consisting of morphologically and anatomically different root types, of which the short roots have a very limited ability to elongate. Short roots have an important role in nature since they are able to establish ectomycorrhizal symbiosis, in which the growth of fungal mycelium between the epidermal cells and in the intercellular space between cortical cells leads to formation of dichotomous short roots, which may, through further splitting of the meristem, form coralloid root structures. Dichotomous short roots have been suggested to result from changes in either auxin or ethylene concentrations due to the fungal growth inside the root. NPA, the inhibitor of polar auxin transport, enhances the dichotomization of P. sylvestris short root tips similarly to the fungal growth in the root, thus confirming that auxin plays a role in short root morphogenesis. Ethylene is also known to have an important role in the regulation of root morphogenesis. In future the research dealing with the root system and ectomycorrhiza development in P. sylvestris must take into account that both auxin and ethylene are involved and that there is no contradiction in obtaining the same phenotype with both hormones. The expression analysis of PIN proteins, auxin efflux carriers, could give valuable information about the role of auxin transport in regulating the root growth and morphogenesis of coniferous root system and mycorrhiza.
机译:针叶树如苏格兰松(Pinus sylvestris)具有复杂的根系,该根系在形态和解剖学上都不同,其短根的伸长能力非常有限。短根在自然界中起着重要作用,因为它们能够建立外生菌根共生,其中表皮细胞之间以及皮层细胞之间的细胞间空间中的真菌菌丝体的生长会导致二叉短根的形成,这可能通过进一步分裂分生组织,形成珊瑚根结构。有人提出,由于根内部的真菌生长,生长素或乙烯浓度的变化会导致二叉状短根。 NPA是极性植物生长素运输的抑制剂,类似于根部真菌的生长,可增强樟子松短根尖的二分法,因此证实了生长素在短根形态发生中起作用。乙烯在调节根的形态发生中也起着重要的作用。将来,有关樟子松根系和根外生菌根发育的研究必须考虑到生长素和乙烯都参与,并且在用两种激素获得相同表型时没有矛盾。 PIN蛋白(生长素外排载体)的表达分析可以提供有关生长素转运在调节针叶根系和菌根的根系生长和形态发生中的作用的有价值的信息。

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