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首页> 外文期刊>Journal of Plant Physiology >Phosphorus deficiency affects the allocation of below-ground resources to combined cluster roots and nodules in Lupinus albus
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Phosphorus deficiency affects the allocation of below-ground resources to combined cluster roots and nodules in Lupinus albus

机译:磷缺乏影响地下羽扇豆对地下星团根和根瘤的分配

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摘要

Lupins can rely on both cluster roots and nodules for P acquisition and biological nitrogen fixation (BNF), respectively. The resource allocation (C, N and P) between cluster roots and nodules has been largely understudied during P-deficient conditions. The aim of this investigation was therefore to determine the changes in resource allocation between these organs during fluctuations in P supply. Lupinus albus was cultivated in sand culture for 3 weeks, with either sufficient (2 mM high) or limiting (0.1 mM low) P supply. Although variation on P supply had no effect on the total biomass, there were significant differences in specialised below-ground organ allocation to cluster roots and nodule formation. Cluster root formation and the associated C-costs increased during low P supply, but at sufficient P-supply the construction and growth respiration costs of cluster roots declined along with their growth. In contrast to the cluster root decline at high P supply, there was an increase in nodule growth allocation and corresponding C-costs. However, this was not associated with an increase in BNF. Since cluster roots were able to increase P acquisition under low P conditions, this below-ground investment may also have benefited the P nutrition of nodules. These findings provide evidence that when lupins acquire N via BNF in their nodules, there may be a trade-off in resource allocation between cluster roots and nodules
机译:羽扇豆可分别依靠簇根和根瘤获取磷和生物固氮(BNF)。在磷缺乏的情况下,对簇根和根瘤之间的资源分配(C,N和P)进行了很大的研究。因此,本研究的目的是确定在磷供应波动期间这些器官之间的资源分配变化。将羽扇豆在沙土中培养3周,供应充足的磷(高2 mM)或有限的磷(低0.1 mM)。尽管磷供应的变化对总生物量没有影响,但是在专门的地下器官分配到簇根和根瘤形成方面存在显着差异。在磷供应不足的情况下,簇根的形成和相关的碳成本增加,但在磷供应充足的情况下,簇根的构建和生长呼吸成本随其生长而下降。与高磷供应下的簇根下降相反,根瘤生长分配和相应的碳成本增加。但是,这与BNF的增加无关。由于簇根能够在低磷条件下增加磷的吸收,因此这种地下投资也可能有益于结核的磷营养。这些发现提供了证据,表明羽扇豆通过其结节中的BNF获取N时,簇根和结节之间的资源分配可能会有所取舍。

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