Effects of nitrogen fertilization on crops and their associated insect communities: a global food security perspective

Khondoker Md. Zulfiker Rahman
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引用次数: 1

Abstract

Nitrogen (N) fertilization reduces worldwide food insecurity by boosting crop yield and stability. N is one of the most essential macromolecules required for the growth and reproduction of plants. It occurs in diverse chemical forms and circulates in natural and agricultural ecosystems. It is a constituent of chlorophyll, hence is required for the photosynthesis of plants. Plants receive N through their roots in the form of ammonia or nitrate. Nutritional quality and defense of plants that have a direct impact on herbivorous insects are altered by N fertilization and herbivorous insects can differentiate between plants that receive different applications of N fertilizer. Increasing N fertilization has a variable impact on plant species composition, plant growth, plant biomass, and yields. Plant tissue N and protein contents are also affected by nitrogen fertilization. Moreover, nitrogen fertilization affects many aspects of insects such as population dynamics, larval count, larval weight, feeding choice, and oviposition preference. Furthermore, predatory insect abundance, parasitization performance, and development of parasitoids on host insects are negatively affected by N fertilization. Other important effects of N fertilization are the hemolymph protein profile of herbivores, emission of VOCs, phytohormone biosynthesis, and direct and indirect defense of plants. The aim of this literature research is to demonstrate the effects of variable doses of N fertilization on the crop-herbivore-natural enemy tri-trophic systems. The information gathered in this review might help researchers understand the impact of optimal and excessive N fertilization on crop production and food security. Asian Australas. J. Food Saf. Secur. 2022, 6 (2), 48-56
氮肥对作物及其相关昆虫群落的影响:全球粮食安全视角
氮肥通过提高作物产量和稳定性来减少全球粮食不安全。氮是植物生长繁殖所必需的最重要的大分子之一。它以多种化学形式存在,并在自然和农业生态系统中循环。它是叶绿素的组成部分,因此是植物光合作用所必需的。植物通过根部以氨或硝酸盐的形式吸收氮。施氮会改变植物的营养品质和防御能力,对食草昆虫有直接影响,食草昆虫可以区分不同施氮量的植物。增加施氮量对植物种类组成、生长、生物量和产量有不同的影响。施氮对植物组织氮和蛋白质含量也有影响。此外,氮肥对昆虫种群动态、幼虫数量、体重、取食选择和产卵偏好等方面都有影响。此外,施氮对捕食性昆虫的丰度、寄生性能和寄生蜂对寄主昆虫的发育均有负向影响。氮肥的其他重要影响包括食草动物的血淋巴蛋白谱、挥发性有机化合物的排放、植物激素的生物合成以及植物的直接和间接防御。本文献研究的目的是论证不同施氮量对作物-草食-天敌三营养系统的影响。本综述收集的信息可能有助于研究人员了解最佳和过量施氮对作物生产和粮食安全的影响。亚洲Australas。J.食品安全。安全,2022,6 (2),48-56
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