首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Boron Deficiency Effects on Sugar Ionome and Phytohormone Profiles of Vascular and Non-Vascular Leaf Tissues of Common Plantain (Plantago major L.)
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Boron Deficiency Effects on Sugar Ionome and Phytohormone Profiles of Vascular and Non-Vascular Leaf Tissues of Common Plantain (Plantago major L.)

机译:硼缺乏对普通车前草(车前草)的血管和非血管叶片组织的糖离子组和植物激素谱的影响

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摘要

Vascular tissues essentially regulate water, nutrient, photo-assimilate, and phytohormone logistics throughout the plant body. Boron (B) is crucial for the development of the vascular tissue in many dicotyledonous plant taxa and B deficiency particularly affects the integrity of phloem and xylem vessels, and, therefore, functionality of long-distance transport. We hypothesize that changes in the plants’ B nutritional status evoke differential responses of the vasculature and the mesophyll. However, direct analyses of the vasculature in response to B deficiency are lacking, due to the experimental inaccessibility of this tissue. Here, we generated biochemical and physiological understanding of B deficiency response reactions in common plantain (Plantago major L.), from which pure and intact vascular bundles can be extracted. Low soil B concentrations affected quantitative distribution patterns of various phytohormones, sugars and macro-, and micronutrients in a tissue-specific manner. Vascular sucrose levels dropped, and sucrose loading into the phloem was reduced under low B supply. Phytohormones responded selectively to B deprivation. While concentrations of abscisic acid and salicylic acid decreased at low B supply, cytokinins and brassinosteroids increased in the vasculature and the mesophyll, respectively. Our results highlight the biological necessity to analyze nutrient deficiency responses in a tissue- rather organ-specific manner.
机译:血管组织实质上调节了整个植物体内的水,养分,光同化和植物激素的物流。硼(B)对于许多双子叶植物类群的血管组织发育至关重要,B缺乏尤其会影响韧皮部和木质部血管的完整性,因此影响长途运输的功能。我们假设植物B营养状况的变化会引起脉管系统和叶肉的不同反应。然而,由于缺乏这种组织的实验性,因此缺乏对B缺乏反应的脉管系统的直接分析。在这里,我们对普通车前草(车前草)的B缺乏反应作出了生化和生理学理解,可以从中提取纯净和完整的维管束。低的土壤B浓度会以组织特异性的方式影响各种植物激素,糖以及大量和微量营养素的定量分布模式。在低B供应的情况下,血管蔗糖水平下降,并且进入韧皮部的蔗糖负载减少。植物激素对B剥夺有选择性反应。在低B供应下,脱落酸和水杨酸的浓度降低,而在脉管系统和叶肉中,细胞分裂素和油菜素类固醇分别升高。我们的结果突出了以组织而非器官特定方式分析营养缺乏反应的生物学必要性。

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