Acclimatization of the Growth of Brassica Juncea to Temperature Stress: Future of IoT Technology in Sustainable Agriculture

Immanuel Zion Ramdinthara, T. S. Kumar, P. Bala, A. Gowri
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Abstract

Agriculture and global warming are correlated with each other, particularly, it may affect nutrient cycles, microbial activities, and physiological activities of the crops. Agricultural development plays a crucial role in the growth of the economy of developing countries. The agriculture sector is a major source of employment in most of the developing countries. Over the year, there were changes and productivity loss due to the abiotic stresses and imbalance of nutrients of the plants. A continuous increase in temperature may affect the yields of crops up to 17%. Each plant has different characteristics in growth and some plants are susceptible to high temperature, some are quite the opposite. A Brassica Juncea L. belongs to a mustard family Brassicaceae or Cruciferae that are susceptible to high temperature. So, in this work, an attempt has been made for Brassica Juncea L. to grow and yield under temperature stress by controlling the temperature with the use of the Internet of Things (IoT). The experiment has been conducted where Brassica Juncea neither production nor consumption. IoT sensors are used to monitor the temperature and humidity in two different scenarios. This paper analyses the factors that affect the growth of Brassica Juncea and provide a solution to increase productivity.
芥菜生长对温度胁迫的适应:物联网技术在可持续农业中的未来
农业与全球变暖是相互关联的,特别是会影响作物的养分循环、微生物活动和生理活动。农业发展对发展中国家的经济增长起着至关重要的作用。农业部门是大多数发展中国家的主要就业来源。多年来,由于植物的非生物胁迫和养分的不平衡,发生了变化和生产力损失。温度的持续升高对农作物产量的影响可达17%。每种植物的生长特点不同,有些植物易受高温影响,有些则完全相反。芥菜属芥菜科或十字花科,对高温敏感。为此,本研究尝试利用物联网(IoT)控制温度,使芥菜(Brassica Juncea L.)在温度胁迫下生长和产量。实验在芥菜既不生产也不消费的地方进行。物联网传感器用于监测两种不同场景下的温度和湿度。本文分析了影响芥菜生长的因素,提出了提高芥菜产量的对策。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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