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首页> 外文期刊>Environmental and experimental botany >Sex-related responses in rhizosphere processes of dioecious Populus cathayana exposed to drought and low phosphorus stress
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Sex-related responses in rhizosphere processes of dioecious Populus cathayana exposed to drought and low phosphorus stress

机译:脱硫杨树明道根茎过程中与干旱低磷胁迫相关的性别相关的反应

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Extensive research has shown that dioecious plants exhibit sexual dimorphism under extreme environments. However, sex-specific differences in responses to drought, phosphorus (P) shortage or their combination are less known. In our study, impacts of drought, P shortage and their combination on the performance of Populus cathayana males and females were investigated. Drought and P deficiency caused a greater negative impact on female growth than on male growth. P application ameliorated the more negative effect of drought on the shoot dry matter accumulation and P concentration in male leaves, while smaller effects were observed in females. The concentration of citrate in the rhizosphere of males was higher under drought combined with P application than under adequate water availability, and the increase was greater in males than in females. Males also showed a higher abundance of main soil microbial groups, including bacteria, actinomycetes, arbuscular mycorrhizal fungi (AMF), and Gram + and Gram- bacteria in the rhizosphere, resulting in a more resistant microhabitat. In contrast, the abundance of bacteria and AMF was less in the rhizosphere of females exposed to stress conditions, while saprophytic fungi increased significantly. P enhanced drought resistance more in stress-resistant males but less in females under relatively severe drought stress. Increased drought resistance by P in males might be associated with greater plasticity in rhizosphere processes when compared with females.
机译:广泛的研究表明,在极端环境下,雌雄植物表现出性二态性。然而,对干旱,磷(P)短缺或其组合的反应的性别特异性差异较少。在我们的研究中,研究了干旱,P短缺及其组合对杨树Cathayana Males和女性的影响的影响。干旱和P缺乏对女性生长产生更大的负面影响而不是男性生长。 P申请改善了干旱对雄性叶片的枝条干​​物质积累和P浓度的负面影响,而在女性中观察到较小的效果。在干旱结合P应用中,雄性根际的柠檬酸盐浓度比在适当的水上可用性下,雄性较大,雄性大于女性。男性还表现出较高丰富的主要土壤微生物组,包括细菌,放线菌,丛枝菌根真菌(AMF)和根际的克和革兰氏细菌,导致了更耐药。相比之下,在暴露于压力条件下的女性的根际细菌和amf的细菌和amf的丰度较小,而果蝇真菌显着增加。 P在相对严重的干旱胁迫下,在抗应力抗胁迫性男性中,在抗胁迫性男性中,在抗胁迫性抗性的抗旱更少。与雌性相比,P由雄性中P的抗旱性可能与根际过程的更大可塑性相关。

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