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Microstructural and physiological responses to cadmium stress under different nitrogen forms in two contrasting Populus clones

机译:不同氮形式在两个对比杨树中对镉胁迫的微观结构和生理反应

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Although nitrogen (N) influences plant response to cadmium (Cd) stress, little information has been suggested on how N forms affect Cd distribution and tolerance in Populus clones with different sensitivities to N deficiency. In this study, we examined physiological, chemical and microstructural traits involving in Cd accumulation, distribution and tolerance under different N forms (NH4+-N and NO3--N). We found that N limitation-insensitive clone Nanlin 1388 had stronger Cd tolerance than N limitation-sensitive clone Nanlin 895 under both N forms, which is associated with Cd elaborate arrangement in tissues and/or cellular compartments, as well as an enhanced antioxidation capacity. NH4+ supply significantly promoted Cd uptake and accumulation in leaves, especially in Nanlin 895, when compared to NO3- supply. Furthermore, NO3- and NH4+ differently regulated Cd distribution in leaves and roots of Nanlin 1388 and Nanlin 895. NO3- supply promoted Cd distribution in leaf epidermis, especially in the upper epidermis of leaf blades and veins in Nanlin 1388. In contrast, NH4+ induced more Cd distribution in the leaf lower epidermis and vascular tissues for Nanlin 895. These results collectively suggested that Nanlin1388 had stronger Cd tolerance, especially under NO3- supply, which provided new insights to engineer woody plants for phytoremediation.
机译:虽然氮气(n)影响植物对镉(CD)应激的反应,但在N形式如何影响杨树克隆的CD分布和耐受性与N缺乏不同的敏感性的情况下提出了很少的信息。在这项研究中,我们检查了涉及CD累积,分布和耐受的生理学,化学和微观结构性状(NH4 + -N和NO3 - N)。我们发现N个限制不敏感克隆纳米纳米1388在两种形式下具有比N限制敏感的克隆纳米895更强的Cd耐受性,其与组织和/或细胞室中的CD精细布置相关,以及增强的抗氧化能力。 NH4 +电源显着促进了叶片中的CD摄取和积聚,特别是在NaNlin 895中,与No3供应相比。此外,NO3-和NH4 + NH4 +纳米叶片和纳米叶片和根部的不同调节的CD分布和纳米895. NO3-供应促进叶片表皮中的CD分布,尤其是在南林1388的叶片和静脉的上表皮中。相反,NH4 +诱导纳米叶片下表皮和血管组织的更多CD分布和纳林895.这些结果共同提出了Nanlin1388具有更强的CD耐受性,特别是NO3供应,为植物修复的工程师木质植物提供了新的见解。

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