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植物矿质营养与抗病性:可持续作物保护的重要联系

Plant mineral nutrition and disease resistance: A significant linkage for sustainable crop protection.

作者信息

Tripathi Ruchi, Tewari Rashmi, Singh K P, Keswani Chetan, Minkina Tatiana, Srivastava Anoop Kumar, De Corato Ugo, Sansinenea Estibaliz

机构信息

Department of Plant Pathology, College of Agriculture, G. B. Pant University of Agriculture and Technology, Pantnagar, India.

Academy of Biology and Biotechnology, Southern Federal University, Rostov-on-Don, Russia.

出版信息

Front Plant Sci. 2022 Oct 20;13:883970. doi: 10.3389/fpls.2022.883970. eCollection 2022.

Abstract

Complete and balanced nutrition has always been the first line of plant defense due to the direct involvement of mineral elements in plant protection. Mineral elements affect plant health directly by modulating the activity of redox enzymes or improving the plant vigor indirectly by altering root exudates, and changing microflora population dynamics, rhizosphere soil nutrient content, pH fluctuation, lignin deposition, and phytoalexin biosynthesis. Nitrogen (N) is one of the most important macronutrients having a significant impact on the host-pathogen axis. N negatively affects the plant's physical defense along with the production of antimicrobial compounds, but it significantly alleviates defense-related enzyme levels that can eventually assist in systemic resistance. Potassium (K) is an essential plant nutrient, when it is present in adequate concentration, it can certainly increase the plant's polyphenolic concentrations, which play a critical role in the defense mechanism. Although no distinguished role of phosphorus (P) is observed in plant disease resistance, a high P content may increase the plant's susceptibility toward the invader. Manganese (Mn) is one of the most important micronutrients, which have a vital effect on photosynthesis, lignin biosynthesis, and other plant metabolic functions. Zinc (Zn) is a part of enzymes that are involved in auxin synthesis, infectivity, phytotoxin, and mycotoxin production in pathogenic microorganisms. Similarly, many other nutrients also have variable effects on enhancing or decreasing the host susceptibility toward disease onset and progression, thereby making integrative plant nutrition an indispensable component of sustainable agriculture. However, there are still many factors influencing the triple interaction of host-pathogen-mineral elements, which are not yet unraveled. Thereby, the present review has summarized the recent progress regarding the use of macro- and micronutrients in sustainable agriculture and their role in plant disease resistance.

摘要

由于矿质元素直接参与植物保护,完整且均衡的营养一直是植物防御的第一道防线。矿质元素通过调节氧化还原酶的活性直接影响植物健康,或通过改变根系分泌物、改变微生物群落动态、根际土壤养分含量、pH波动、木质素沉积和植保素生物合成来间接提高植物活力。氮(N)是最重要的大量元素之一,对宿主-病原体轴有重大影响。氮会对植物的物理防御以及抗菌化合物的产生产生负面影响,但它能显著缓解与防御相关的酶水平,最终有助于系统抗性。钾(K)是植物必需的营养元素,当它以适当浓度存在时,肯定能增加植物的多酚浓度,而多酚在防御机制中起关键作用。尽管在植物抗病性方面未观察到磷(P)有显著作用,但高磷含量可能会增加植物对入侵者的易感性。锰(Mn)是最重要的微量元素之一,对光合作用、木质素生物合成和其他植物代谢功能有重要影响。锌(Zn)是参与生长素合成、致病性微生物的感染性、植物毒素和霉菌毒素产生的酶的组成部分。同样,许多其他营养元素对增强或降低宿主对疾病发生和发展的易感性也有不同影响,从而使植物综合营养成为可持续农业不可或缺的组成部分。然而,仍有许多影响宿主-病原体-矿质元素三重相互作用的因素尚未被揭示。因此,本综述总结了在可持续农业中使用大量和微量营养元素的最新进展及其在植物抗病性中的作用。

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