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Does phosphorus deficiency induce formation of root cortical aerenchyma maintaining growth of Cunninghamia lanceolata?

机译:磷缺乏症是否诱导根皮质灌冻室的形成,维持康宁山玉米莲塔的生长?

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Key messagePhosphorous (P) deficiency induces root cortical aerenchyma (RCA) formation in Chinese fir seedlings with marked genotypic variation, and the adaptive role of RCA is mainly related to root P reduction.AbstractRoot cortical aerenchyma (RCA) formation in response to phosphorus (P) deficiency and its adaptive role are largely unexplored in trees. We hypothesized that RCA formation in response to P deficiency varies with its severity and genotype, and that P-stressed seedlings maintain similar seedling growth to non-stressed seedlings by reducing the P requirements of roots and metabolic cost of soil exploration. Seedlings of two half-sib families (nos. 25 and 36) of Cunninghamia lanceolata (Chinese fir) were grown in pots with three levels of P supply for 3months. Significant differences in RCA formation in 40-45mm root segments from the root tip were observed between families and P supply levels. Severe P deficiency induced more RCA formation in family no. 36 than in family no. 25, whereas moderate P deficiency induced RCA formation in family no. 36 only. Family no. 36 had significantly higher height increment, needle biomass, and P concentration in stems and needles, but lower root biomass and root P concentration, than family 25. A significantly negative relationship was found between RCA and root P concentration, increments in average root diameter, and root surface area, whereas significantly positive correlations were observed between some root morphological traits and biomass and P concentration in the organs of P-stressed seedlings of family 36. In conclusion, severe P deficiency induces formation of RCA in Chinese fir seedlings with marked genotypic variation, and the adaptive role of RCA formation during P deficiency is mainly related to the reduction of root P concentration.
机译:关键的脑脊(p)缺乏诱导具有标记基因型变异的中国冷杉幼苗中的根皮质灌冻室(RCA)形成,RCA的适应性作用主要与根部P RESEST.ABSTRACTROTOOT皮质灌输症(RCA)形成响应于磷(P. )缺乏及其自适应作用在很大程度上在树上大大未探索。我们假设RCA形成响应于P缺乏症的严重程度和基因型而变化,并且通过降低土壤的P要求和土壤勘探的代谢成本,将P胁迫幼苗保持相似的幼苗生长。苏宁米亚兰克拉塔(中国冷杉)的两个半SIB家族(第25和36号)的幼苗在3个月的3个含量的PO供应中生长在盆中。在家庭和P供应水平之间观察到来自根尖的40-45mm根段中RCA形成的显着差异。严重的P缺乏症在家庭中诱导更多RCA形成。 36比家庭没有。 25,而中度P缺乏症诱导家庭中的RCA形成。只有36。家庭没有。 36在茎和针中具有显着高的高度增量,针生物质和P浓度,但低于家庭25的根生物量和根部P浓度。RCA和根部P浓度之间发现显着负相关,平均根直径增量,和根表面积,虽然在家庭36的胁迫幼苗的某些根系形态特性和生物量和P浓度之间观察到显着阳性相关性36.总之,严重的P缺乏症诱导CIL幼苗中RCA的形成,标记基因型在P缺陷期间RCA形成的变异和Adapiveive作用主要与根部P浓度的降低有关。

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