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黄河三角洲地区[具体植物名称缺失]根系生长特征及抗氧化系统对短期氮磷添加的响应

Root growth characteristics and antioxidant system of in response to the short-term nitrogen and phosphorus addition in the Yellow River Delta.

作者信息

Ma Jinzhao, Xin Xin, Cao Yu, Zhao Liying, Zhang Zehao, Zhang Dongjie, Fu Zhanyong, Sun Jingkuan

机构信息

Shandong Key Laboratory of Eco-Environmental Science for the Yellow River Delta, Shandong University of Aeronautics, Binzhou, China.

出版信息

Front Plant Sci. 2024 Jun 6;15:1410036. doi: 10.3389/fpls.2024.1410036. eCollection 2024.

Abstract

Human activities have increased nitrogen (N) and phosphorus (P) inputs to the Yellow River Delta and the supply level of N and P affects plant growth as well as ecosystem structure and function directly. However, the root growth, stoichiometry, and antioxidant system of plants in response to N and P additions, especially for herbaceous halophyte in the Yellow River Delta (YRD), remain unknown. A field experiment with N addition (0, 5, 15, and 45 g N m yr, respectively) as the main plot, and P addition (0 and 1 g N m yr, respectively) as the subplot, was carried out with a split-plot design to investigate the effects on the root morphology, stoichiometry, and antioxidant system of . The results showed that N addition significantly increased the above-ground and root biomass as well as shoot-root ratio of , which had a significant interaction with P addition. The highest biomass was found in the treatment with 45 g N m yr combined with P addition. N addition significantly increased TN content and decreased C:N ratio of root, while P addition significantly increased TP content and decreased C:P ratio. The main root length (MRL), total root length (TRL), specific root length (SRL), and root tissue density (RTD) of root were significantly affected by N addition and P addition, as well as their interaction. The treatments with or without P addition at the 45 g N m yr of N addition significantly increased the superoxide dismutase (SOD), peroxidase (POD), catalase (CAT) activities and soluble protein content of roots, decreased malondialdehyde (MDA) content. And there was a significant interaction between the N and P addition on SOD activity. Therefore, N and P additions could improve the growth of by altering the root morphology, increasing the root nutrient content, and stimulating antioxidant system.

摘要

人类活动增加了黄河三角洲的氮(N)和磷(P)输入,而N和P的供应水平直接影响植物生长以及生态系统结构和功能。然而,植物根系生长、化学计量特征和抗氧化系统对N和P添加的响应,特别是黄河三角洲(YRD)的草本盐生植物,仍然未知。以N添加(分别为0、5、15和45 g N m⁻² yr⁻¹)为主区,P添加(分别为0和1 g P m⁻² yr⁻¹)为副区,采用裂区设计进行田间试验,以研究对[植物名称未给出]根系形态、化学计量特征和抗氧化系统的影响。结果表明,N添加显著增加了[植物名称未给出]的地上部和根系生物量以及茎根比,且与P添加存在显著交互作用。在45 g N m⁻² yr⁻¹结合P添加的处理中发现生物量最高。N添加显著增加了根系总氮含量并降低了C:N比,而P添加显著增加了总磷含量并降低了C:P比。[植物名称未给出]的主根长度(MRL)、总根长度(TRL)、比根长度(SRL)和根组织密度(RTD)显著受N添加、P添加及其交互作用的影响。在45 g N m⁻² yr⁻¹的N添加处理中,添加或不添加P均显著增加了根系超氧化物歧化酶(SOD)、过氧化物酶(POD)、过氧化氢酶(CAT)活性和可溶性蛋白含量,降低了丙二醛(MDA)含量。并且N和P添加对SOD活性存在显著交互作用。因此,N和P添加可通过改变根系形态、增加根系养分含量和刺激抗氧化系统来促进[植物名称未给出]的生长。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7efa/11191639/d50791cd95cf/fpls-15-1410036-g001.jpg

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