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氮肥对中药材生态系统土壤及三营养级相互作用的影响与机制

[Effects and mechanisms of nitrogen fertilizers on soil and tritrophic interactions in Chinese medicinal plants ecosystem].

作者信息

Ge Yang, Wan Xiu-Fu, Wang Sheng, Kang Chuan-Zhi, Zhang Wen-Jin, Lyu Chao-Geng, Sun Jia-Hui, Guo Lan-Ping

机构信息

State Key Laboratory Breeding Base of Dao-di Herbs, National Resource Center for Chinese Materia Medica, China Academy of Chinese Medical Sciences Beijing 100700, China.

出版信息

Zhongguo Zhong Yao Za Zhi. 2021 Apr;46(8):1893-1900. doi: 10.19540/j.cnki.cjcmm.20210123.104.

Abstract

Nitrogen is one of the most frequently used fertilizers in growth of Chinese medicinal plants(CMP). As in many other ecosystems, CMP ecosystem is also composed of plant-herbivore-natural enemy(tritrophic) interactions. Nitrogen fertilizer influences the growth and reproduction of CMP, and it is also able to heavily shape the ecosystem functions of CMP ecosystem through bottom-up forces. Understanding the specific effects of nitrogen fertilizer towards each trophic level will be beneficial to improve the resistance of CMP to herbivore and enhance the control efficiency of nature enemies to herbivore, and eventually, maximize the yield and quality of CMP. Most papers published on nitrogen use in plants focused mainly on the impact of nitrogen fertilization on CMP yield and quality. Influences of nitrogen application on CMP ecosystem get little attention at present. Therefore, this review summed up the potential effects of nitrogen fertilization on CMP ecosystem from perspectives of soil and tritrophic interactions. First of all, nitrogen fertilizer might decrease soil microbial biomass and altered the community structures of soil bacteria, fungi and protozoa. Negative effects of nitrogen fertilizer were found on biodiversity of soil bacteria and protozoa. Different fungi species respond differently to nitrogen fertili-zers. Nitrogen deposition can also decrease the soil pH. Decreases in soil microbial diversity and soil acidification can cause negative effects on CMP growth. In addition, nitrogen fertilizer could regulate the pest resistance of CMP including constitutive and inducible resistance. Both positive and negative effects of nitrogen application were found on pest resistance of CMP. Moreover, the development and predation of natural enemies were influenced by nitrogen deposition. Nitrogen influences natural enemies in many ways including plant volatiles, plant nutrient and structure and the supplementary food quality. Nectar and honeydew of plants and preys serve as important food source for natural enemies especially in early season when preys are still not available. Finally, the interactions between herbivores and their natural enemies were also shaped by nitrogen fertilizer in many aspects like increasing the nutritional content of prey and changing control efficiency of natural enemies. Some herbivores have evolved a strategy to sequester secondary metabolites which they absorbed from plant during their feeding. Studies showed that sequestration efficiency of secondary metabolites in prey could also be regulated by nitrogen. Parasitic, emergence, reproduction rate and longevity of parasites were found positively correlated with nitrogen deposition. Hopefully this study will shed light on practicable and economical application of nitrogen in cultivation of CMP.

摘要

氮是中药材生长过程中最常用的肥料之一。与许多其他生态系统一样,中药材生态系统也由植物-食草动物-天敌(三营养级)相互作用组成。氮肥会影响中药材的生长和繁殖,并且还能够通过自下而上的作用力极大地塑造中药材生态系统的生态系统功能。了解氮肥对每个营养级的具体影响将有助于提高中药材对食草动物的抗性,并增强天敌控制食草动物的效率,最终使中药材的产量和质量最大化。大多数关于植物氮素利用的已发表论文主要关注氮肥对中药材产量和质量的影响。目前,氮肥对中药材生态系统的影响很少受到关注。因此,本综述从土壤和三营养级相互作用的角度总结了氮肥对中药材生态系统的潜在影响。首先,氮肥可能会降低土壤微生物生物量,并改变土壤细菌、真菌和原生动物的群落结构。氮肥对土壤细菌和原生动物的生物多样性有负面影响。不同的真菌物种对氮肥的反应不同。氮沉降还会降低土壤pH值。土壤微生物多样性的降低和土壤酸化会对中药材生长产生负面影响。此外,氮肥可以调节中药材的抗虫性,包括组成型抗性和诱导型抗性。氮肥对中药材抗虫性的影响既有正面的也有负面的。此外,氮沉降会影响天敌的发育和捕食。氮以多种方式影响天敌,包括植物挥发物、植物养分和结构以及补充食物质量。植物的花蜜和蜜露以及猎物是天敌的重要食物来源,尤其是在早期猎物仍然稀缺的时候。最后,氮肥还在许多方面塑造了食草动物与其天敌之间的相互作用,例如增加猎物的营养成分和改变天敌的控制效率。一些食草动物已经进化出一种策略,来储存它们在进食过程中从植物中吸收的次生代谢物。研究表明,猎物中次生代谢物的储存效率也可以由氮来调节。寄生虫的寄生、羽化、繁殖率和寿命与氮沉降呈正相关。希望本研究能为氮肥在中药材种植中的实际经济应用提供启示。

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