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Current AffairsEnvironment

Australia declares strong El Nino in tropical Pacific as risks to agriculture loom

Tuesday, 16 June 20263 min read499 words8

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In this article

ContextBackground & Historical EvolutionKey Points & Facts

Context

On June 16, 2026, the Australian Bureau of Meteorology (BOM) declared that a strong El Nino event is underway in the tropical Pacific Ocean. The BOM stated that atmospheric indicators such as trade winds, pressure, and cloud patterns are aligning with the El Nino phenomenon. Forecasts suggest the event could be strong to very strong, based on the extent of warming in the central tropical Pacific. El Nino is a periodic warming of sea surface temperatures in the central and eastern Pacific. This development is particularly damaging to Australia, one of the world’s largest exporters of wheat, sugar, and beef, as it threatens agricultural production. The article notes that one of the strongest El Nino events occurred in 2015-2016, causing widespread drought and reduced grain and oilseed output.

Background & Historical Evolution

El Nino is part of the El Nino Southern Oscillation (ENSO) cycle, a naturally occurring climate pattern involving changes in sea surface temperatures and atmospheric pressure in the equatorial Pacific Ocean. The cycle has three phases: El Nino (warming), La Nina (cooling), and neutral. The term 'El Nino' was originally used by Peruvian fishermen to describe the warm ocean current that appears around Christmas.

Scientific understanding of ENSO evolved significantly in the 20th century. In the 1920s, Sir Gilbert Walker identified the Southern Oscillation (atmospheric pressure seesaw between the eastern and western Pacific). In the 1960s, Jacob Bjerknes linked the ocean warming to the atmospheric pressure changes, establishing the coupled ocean-atmosphere mechanism. The 1982-83 El Nino was one of the strongest on record up to that time, causing global disruptions and prompting improved monitoring systems.

The 1997-98 El Nino was another extreme event, leading to severe floods in some regions and droughts in others. The 2015-16 event, referenced in the article, was comparable in strength, causing widespread drought in Australia and reduced grain and oilseed output. Australia’s Bureau of Meteorology has been issuing ENSO outlooks since the early 2000s, using a network of buoys (TAO/TRITON array) and satellite observations to monitor ocean temperatures, trade winds, and cloud patterns. The current 2026 El Nino is forecast to be strong to very strong, drawing comparisons to past major events.

Key Points & Facts

  • Australia’s Bureau of Meteorology (BOM) declared an El Nino event underway on June 16, 2026.
  • The event is occurring in the tropical Pacific Ocean, with atmospheric indicators (trade winds, pressure, cloud patterns) aligning with El Nino.
  • Forecasts indicate a strong to very strong El Nino event based on the extent of warming in the central tropical Pacific.
  • El Nino is defined as a periodic warming of sea surface temperatures in the central and eastern Pacific Ocean.
  • The weather pattern is particularly damaging to Australia, impacting its agricultural production.
  • Australia is among the world’s largest exporters of wheat, sugar, and beef.
  • A previous strong El Nino in 2015-2016 caused widespread drought in Australia and led to reduced grain and oilseed output.
  • The BOM is Australia’s national weather agency, responsible for monitoring and forecasting climate phenomena like ENSO.

What can be asked in exam?

  • •Prelims angle: El Nino is a periodic warming of sea surface temperatures in the central and eastern Pacific Ocean.
  • •Prelims angle: The Australia Bureau of Meteorology (BOM) declared a strong El Nino event underway in June 2026.
  • •Prelims angle: El Nino is part of the El Nino Southern Oscillation (ENSO) cycle, which also includes La Nina and neutral phases.
  • •Mains angle: Discuss the impact of El Nino on global agricultural production and food security, with special reference to Australia and India. (GS-I, Geography, 250 words)
  • •Mains angle: Examine the relationship between El Nino and the Indian monsoon. How do ENSO forecasts inform agricultural policy in India? (GS-I, Geography / GS-III, Agriculture, 250 words)

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OPSC PYQ 1 (2022) — Science

Genetic engineering, a revolutionary branch of biotechnology, continues to evolve rapidly, transforming the way we approach medicine, agriculture and various scientific endeavours. Recent developments in this field highlight both the immense potential and ethical considerations that come with the power to manipulate DNA. In the medical realm, gene editing technologies like CRISPR-Cas9 have gained prominence. These tools offer unprecedented precision in modifying genes, holding promise for treating genetic disorders. In a groundbreaking clinical trial, researchers successfully used gene editing to treat sickle cell anaemia. The patient’s own modified cells were reintroduced into their body, resulting in reduced symptoms and an improved quality of life. In agriculture, genetic engineering is driving advancements in crop production and food security. The development of Genetically Modified (GM) crops has enabled plants to resist pests, withstand harsh climates and improve nutritional content. For instance, GM rice has been biofortified to contain higher levels of essential vitamins, potentially combating malnutrition in regions where rice is a staple food. However, these advancements also raise ethical concerns. The potential for creating “designer babies” through gene editing has sparked debates about the boundaries of genetic manipulation. The question of whether it’s ethical to alter human DNA to enhance physical or cognitive traits continues to challenge bioethicists, policymakers and society at large. Data indicates the exponential growth of genetic engineering research. In the past decade, the number of scientific publications related to CRISPR technology has multiplied significantly. In 2010, there were approximately 150 CRISPR-related publications; by 2020, that number had soared to over 9,000. This surge demonstrates the profound impact of genetic engineering on the scientific community. As we navigate this brave new world of genetic engineering, striking a balance between innovation and ethical considerations remains paramount. The potential to cure genetic diseases, enhance food security and make leaps in scientific understanding is immense. However, careful consideration and collaboration are necessary to ensure that the benefits are realized while addressing the ethical complexities that accompany these technological breakthroughs.

Which gene editing technology has gained prominence recently?

  1. It is used for creating GM crops
  2. It is a tool for gene editing
  3. It enhances physical traits
  4. It is used in biofortification

Answer: A. It is used for creating GM crops

OPSC PYQ 2 (2022) — English Comprehension

EMBEZZLE

In the following question, choose the word which best expresses the meaning of the given word: EMBEZZLE

  1. Misappropriate
  2. Balance
  3. Remunerate
  4. Clear

Answer: A. Misappropriate

OPSC PYQ 3 (2023) — Reasoning

How many pairs of letters are there in the word 'CASTRAPHONE' which have as many letters between them in the word as in the alphabet?

  1. 3
  2. 4
  3. 5
  4. 6

Answer: D. 6

Free sample · Question 1 of 3

Science · 2022

Direction / Passage

Genetic engineering, a revolutionary branch of biotechnology, continues to evolve rapidly, transforming the way we approach medicine, agriculture and various scientific endeavours. Recent developments in this field highlight both the immense potential and ethical considerations that come with the power to manipulate DNA. In the medical realm, gene editing technologies like CRISPR-Cas9 have gained prominence. These tools offer unprecedented precision in modifying genes, holding promise for treating genetic disorders. In a groundbreaking clinical trial, researchers successfully used gene editing to treat sickle cell anaemia. The patient’s own modified cells were reintroduced into their body, resulting in reduced symptoms and an improved quality of life. In agriculture, genetic engineering is driving advancements in crop production and food security. The development of Genetically Modified (GM) crops has enabled plants to resist pests, withstand harsh climates and improve nutritional content. For instance, GM rice has been biofortified to contain higher levels of essential vitamins, potentially combating malnutrition in regions where rice is a staple food. However, these advancements also raise ethical concerns. The potential for creating “designer babies” through gene editing has sparked debates about the boundaries of genetic manipulation. The question of whether it’s ethical to alter human DNA to enhance physical or cognitive traits continues to challenge bioethicists, policymakers and society at large. Data indicates the exponential growth of genetic engineering research. In the past decade, the number of scientific publications related to CRISPR technology has multiplied significantly. In 2010, there were approximately 150 CRISPR-related publications; by 2020, that number had soared to over 9,000. This surge demonstrates the profound impact of genetic engineering on the scientific community. As we navigate this brave new world of genetic engineering, striking a balance between innovation and ethical considerations remains paramount. The potential to cure genetic diseases, enhance food security and make leaps in scientific understanding is immense. However, careful consideration and collaboration are necessary to ensure that the benefits are realized while addressing the ethical complexities that accompany these technological breakthroughs.

Which gene editing technology has gained prominence recently?

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