The defense mechanism of plant

R. Raj, K. Lata, V. Raj, Mukul Kumar
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Abstract

According to the state of food security and nutrition, Hunger has increased in many countries in which the economy has slowed down, mostly in middle-income countries. If nothing changes, the immense challenge of achieving the Zero Hunger Target by 2030. The causes of food scarcity might include factors such as unavailability of food due to less production of particular crops/vegetables (due to attack of pests/microbes), it becomes harder to fulfill the basic needs of life especially for poor. Therefore, we need to primarily focus on understanding the interaction between plants and microbes at the molecular level and underlying mechanisms of plant disease and which will help out to solve the global needs of food and resources. Plants have a natural defense mechanism/immune system to react to infections which subdivides into two parts. The first part identifies and reacts to molecules common to different classes of microbes, including non-pathogen. The function of the second part is to react to pathogens virulence factors, either directly or by affecting the host targets. We can also see the intricacies or reciprocation between plants and pathogen attackers. A vast and deep comprehension of plant defense mechanisms will defiantly solve the issue, like food scarcity.
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植物的防御机制
根据粮食安全和营养状况,在许多经济放缓的国家,饥饿人数有所增加,其中大多数是中等收入国家。如果没有任何改变,到2030年实现零饥饿目标将面临巨大挑战。粮食短缺的原因可能包括一些因素,如由于某些作物/蔬菜的产量减少(由于害虫/微生物的攻击)而无法获得粮食,特别是对穷人来说,满足基本生活需要变得更加困难。因此,我们需要重点从分子水平上了解植物与微生物的相互作用和植物病害的潜在机制,这将有助于解决全球粮食和资源的需求。植物有一种天然的防御机制/免疫系统来应对感染,它分为两部分。第一部分识别并对不同种类的微生物(包括非病原体)共同的分子作出反应。第二部分的功能是直接或通过影响宿主靶标对病原体的毒力因子作出反应。我们还可以看到植物和病原体攻击者之间的错综复杂或相互作用。对植物防御机制的广泛而深入的理解将解决像食物短缺这样的问题。
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