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首页> 外文期刊>BMC Plant Biology >Differences in morphological and physiological features of citrus seedlings are related to Mg transport from the parent to branch organs
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Differences in morphological and physiological features of citrus seedlings are related to Mg transport from the parent to branch organs

机译:柑橘幼苗的形态学和生理特征的差异与来自父母到分支机构的Mg运输有关

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In this study, we aimed to test the hypothesis that magnesium (Mg) remobilization in citrus plants is regulated by Mg supply and contributes to differences in the growth of the parent and branch organs. Citrus seedlings were grown in sand under Mg deficient (0?mmol Mg2 L?1, -Mg) and Mg sufficient (2?mmol Mg2 L?1,? ?Mg) conditions. The effects on biomass, Mg uptake and transport, gas exchange and chlorophyll fluorescence, as well as related morphological and physiological parameters were evaluated in different organs. Mg deficiency significantly decreased plant biomass, with a decrease in total plant biomass of 39.6%, and a greater than twofold decrease in the branch organs compared with that of the parent organs. Reduced photosynthesis capacity was caused by a decreased in pigment levels and photosynthetic electron transport chain disruption, thus affecting non-structural carbohydrate accumulation and plant growth. However, the adaptive responses of branch leaves to Mg deficiency were greater than those in parent leaves. Mg deficiency inhibited plant Mg uptake but enhanced Mg remobilization from parent to branch organs, thus changing related growth variables and physiological parameters, including protein synthesis and antioxidant enzyme activity. Moreover, in the principal components analysis, these variations were highly clustered in both the upper and lower parent leaves, but highly separated in branch leaves under the different Mg conditions. Mg deficiency inhibits the growth of the parent and branch organs of citrus plants, with high Mg mobility contributing to differences in physiological metabolism. These findings suggest that Mg management should be optimized for sustainable citrus production.
机译:在这项研究中,我们旨在测试柑橘植物中镁(Mg)重新化的假设由Mg供给调节,有助于父母和分支器官的生长差异。在Mg缺陷(0≤mmolmg21→1,-mg)和mg,柑橘幼苗在砂中生长在砂岩下(0≤mmolmg21= 1,-mg)和mg足以(2?mmol mg2l≤1,? mg)条件。在不同器官中评估了对生物质,Mg吸收和运输,气体交换和叶绿素荧光的影响,以及相关的形态学和生理学参数。 Mg缺乏症植物生物质显着降低,总植物生物质的减少39.6%,与母体器官的植物生物质的减少大于双重减少。光合作用容量降低是由颜料水平和光合电子传输链中断的降低引起的,从而影响了非结构性碳水化合物积累和植物生长。然而,分支叶对mg缺乏的自适应反应大于父母叶中的分支。 Mg缺乏症抑制植物Mg吸收,但增强了Mg从亲本中重新化的分支器官,从而改变了相关的生长变量和生理参数,包括蛋白质合成和抗氧化酶活性。此外,在主成分分析中,这些变化在上父母和下母叶中高度聚集,但在不同MG条件下的分支叶中高度分离。 MG缺乏抑制柑橘植物的父母和分支器官的生长,具有高Mg流动性,有助于生理代谢的差异。这些研究结果表明,应优化MG管理,可用于可持续柑橘生产。

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