💥Mains Ready By December. Smash Mains & Smash PYQ Admissions Open

Subject: Marine Ecosystem

  • Fueling the Blue Economy [PIB Backgrounder]

    PIB class: PIB Backgrounder. Unit: PIB feature unit.

    Why in News

    PIB published a thematic Backgrounder titled Fueling the Blue Economy.

    Core facts (static, definitional)

    1. The Blue Economy is the sustainable use of ocean resources for economic growth, livelihoods and jobs, while preserving ocean ecosystem health. It covers fisheries, shipping, ports, coastal tourism, marine minerals and marine renewable energy.
    2. Governing frame: India’s draft Blue Economy policy treats the ocean as the sixth dimension of national growth alongside land based sectors.
    3. Release specific figures: Not verifiable this run and therefore omitted.

    Static Context

    1. The Deep Ocean Mission is India’s flagship ocean programme. It funds deep sea exploration, a manned submersible named Samudrayaan, and survey of sea bed minerals and biodiversity. The nodal body is the Ministry of Earth Sciences.
    2. The Sagarmala Programme drives port led growth. It links port modernisation, coastal shipping and inland waterways under the Ministry of Ports, Shipping and Waterways.
    3. The Pradhan Mantri Matsya Sampada Yojana supports fisheries. It targets higher fish production, aquaculture and fisher incomes.
    4. India holds a large maritime footprint. It has a coastline of about 11,000 kilometres and an Exclusive Economic Zone of about 2 million square kilometres, which anchors the Blue Economy potential.

    Prelims angle

    The definition of the Blue Economy. Deep Ocean Mission and Samudrayaan under the Ministry of Earth Sciences. Sagarmala under the shipping ministry. The Exclusive Economic Zone extending to 200 nautical miles under the United Nations Convention on the Law of the Sea. Blue carbon ecosystems such as mangroves and seagrass.

    Mains angle

    GS3, conservation and economy, and GS1 geography, ocean resources. Balancing marine resource extraction with ocean ecosystem health, and the Blue Economy as a driver of coastal livelihoods.

    Matching Previous Year Question

    “[2026] Consider the following statements with reference to the Sagarmala Programme of the Government of India: I. The Sagarmala Programme seeks to achieve port-led economic growth through cost-effective and sustainable coastal infrastructure. II. The success of the Sagarmala Programme is reflected in significant growth in coastal and inland waterway shipping, along with improved global port rankings. III. Sagarmala 2.0 aims to position India as a global maritime innovation hub aligned with Atmanirbhar Bharat and Viksit Bharat 2047 visions. Which of the following relationships among the above statements is/are correct? 1. Statement II validates the effectiveness of the strategies envisioned in Statement I. 2. Statement III extends the objectives of Statement I by embedding them into a future-oriented innovation framework. 3. Statement I contradicts Statement III by focusing only on traditional infrastructure instead of modern innovation. Select the answer using the code given below: (a) 1 only (b) 1 and 2 (c) 2 and 3 (d) 3 only. Answer: (b)”

    “[2014, GS1, 10 marks] Critically evaluate the various resources of the oceans which can be harnessed to meet the resource crisis in the world.”

  • New Delhi to quantify ocean wealth, climate risks in new accounting push

    New Delhi to quantify ocean wealth, climate risks in new accounting push

    Why in the News

    The Ministry of Statistics and Programme Implementation (MoSPI) has issued a concept paper proposing to put a monetary value on India’s marine fish stocks and record them as a national asset.

    What is the System of Environmental Economic Accounting?

    1. About: SEEA is a United Nations statistical framework that records a country’s natural resources inside the same accounting structure used for its economy.
    2. The core idea: A natural resource is treated as a capital asset, and what is taken from it in a year is treated as a flow of economic benefit from that asset.
    3. Coverage in India: India has compiled environmental accounts since 2018 through the EnviStats India programme, covering assets such as land, water, forests, minerals and pollination.

    What do India’s current fisheries figures capture?

    1. Global standing: India is the world’s second largest fish producing country and accounts for 8 percent of global production.
    2. The inland and marine split: Total fish production in FY25 was 19.77 million metric tonnes, 77 percent of it from inland sources and 23 percent from the marine sector.
    3. Marine output has expanded: Marine fish production reached 46.15 lakh tonnes in 2024-25, against 34.43 lakh tonnes in 2013-14.
    4. Contribution to the economy: The sector contributed an estimated Rs 1.76 lakh crore in 2023-24, or 1.09 percent of national gross value added.
    5. Export volume and value: Marine product exports in FY25 were 1.7 million metric tonnes valued at Rs 62,408.45 crore, growing 3.11 percent a year in volume.
    6. Reach of the export basket: More than 350 varieties, including frozen fish, squid, cuttlefish and dried items, reach 130 international markets.

    Why do those figures not answer the sustainability question?

    1. Output says nothing about the stock: Aggregate production records how much was landed, not whether commercially important stocks can sustain similar production in future.
    2. Species and regions vanish into the total: A national tonnage figure hides the changing value of individual species and the condition of regional fish stocks.
    3. Fishing pressure leaves no trace: The long term effect of fishing pressure and environmental change does not register in an annual catch series.
    4. No blue economy series exists: India has no regular, comprehensive blue economy GDP series comparable with the series available for agriculture or manufacturing.
    5. Known potential carries a known risk: NITI Aayog puts the exclusive economic zone’s resource potential at about 7.16 million metric tonnes and warns that some deep sea resources are vulnerable to overexploitation.

    How far has this been attempted elsewhere?

    1. Only a handful of countries: The Organisation for Economic Cooperation and Development (OECD) notes that only a handful of countries currently compile monetary asset accounts for aquatic resources.
    2. The group India would join: Australia, the Netherlands, Norway, Canada, the United Kingdom, France, the United States and New Zealand are attempting to bring blue natural capital into national accounts.
    3. The contrast with land based assets: Valuation methods for forests and minerals are mature, and the aquatic equivalent remains at an experimental and pilot stage.
    4. The international guidance is dated: The SEEA-Fisheries conceptual guidance is outdated, so India is building on an incomplete standard rather than a settled one.

    How would a marine fish asset account be built?

    1. Define the accounting units: The first step selects the commercially, economically or ecologically important marine species the account will cover.
    2. Classify each stock: Species wise landing data for the preceding ten years serves as the initial proxy, and current landings are compared with historical peaks to mark a stock as regenerating, stable or depleting.
    3. Estimate the asset life: Each resource is assigned an asset life, which is the bridge between the fisheries science on the stock and its economic treatment.
    4. Calculate the resource rent: Resource rent is the income attributable to the natural resource after deducting labour, operating expenses, depreciation and a normal return on fishing vessels and other capital.
    5. Discount the future rents: Expected future resource rents are projected over the estimated asset life and discounted at a proposed 2 percent real rate to give a present value.
    6. The output: The result is a marine fish asset account, a statistical record carrying both the physical condition of a stock and its estimated economic value.

    What is riding on the outcome?

    1. Livelihoods: Fishing supports nearly 30 million livelihoods and is a cornerstone of the blue economy.
    2. Geography: India’s coastline runs about 11,100 km and carries rich marine biodiversity.
    3. The stated target: Available numbers put the blue economy at about 4 percent of GDP against a target of a $100 billion blue economy by 2030.
    4. Budget support: The latest Union Budget earmarked a record Rs 2,761.8 crore in total annual support, with the Pradhan Mantri Matsya Sampada Yojana (PMMSY) carrying Rs 2,500 crore in 2026-27.
    5. Competing claims on sea space: Fisheries compete with ports, tourism, offshore energy and coastal development for marine space. Integrated accounts give those trade offs one economic and environmental database.
    6. Investment decisions: A valuation would indicate whether to put money into additional fishing capacity, stock restoration or deep sea fisheries. It would also allow the economic cost of climate induced changes in marine resources to be estimated.

    Challenges to valuing marine fish stocks

    1. The asset is living and mobile: A fish stock changes in size and location continuously, which makes it harder to value at a point in time than a forest or a mineral deposit. Eg. Oil sardine landings along the Kerala coast collapsed through the 2010s and then partially recovered, moving the stock’s value within a single decade.
      The Fix: Anchor the account to periodic scientific biomass surveys by the Central Marine Fisheries Research Institute rather than to landing data alone.
    2. Landings measure effort as much as abundance: What boats bring ashore reflects fleet capacity, fuel prices and market demand alongside the size of the stock. Eg. Landings can rise as vessels mechanise and trips lengthen even as the underlying stock thins.
      The Fix: Report effort adjusted catch per unit effort alongside raw landings, so a rise in output is separated from a rise in fishing pressure.
    3. The discount rate decides the answer: A present value calculation is highly sensitive to the rate chosen, so the 2 percent assumption fixes how much weight future stocks carry. Eg. A higher rate values a stock mainly by what it yields in the next few years and makes long term depletion look cheap.
      The Fix: Publish the account across a range of discount rates so the valuation’s dependence on that single assumption is visible to the user.
    4. An account does not restrain a catch: Recording depletion changes no rule about who may fish, since marine fishing within territorial waters is regulated by coastal States under their own legislation. Eg. Monsoon fishing bans and mesh size rules are notified State by State along the coastline.
      The Fix: Require stock classifications from the account to feed directly into the fisheries management plans and catch limits of coastal States.

    Conclusion

    Valuing a fish stock changes what the national accounts can show, not what the fishing fleet is allowed to take. The account will report depletion only as accurately as the biological data underneath it, and that data is the weakest part of the exercise. The test is whether the numbers reach harvesting rules and coastal livelihood decisions rather than stopping at a statistical publication.

    Back2Basics: Exclusive Economic Zone

    1. Legal basis: The exclusive economic zone is established by the United Nations Convention on the Law of the Sea, 1982.
    2. Extent: It reaches up to 200 nautical miles from the baseline from which the territorial sea is measured.
    3. Rights it confers: The coastal State holds sovereign rights to explore, exploit, conserve and manage the living and non living resources of the zone.
    4. India’s zone: India’s exclusive economic zone covers over 2 million square km, which is larger than its land area.

    [2026] At the United Nations Ocean Conference (UNOC) held in June, 2025 in France, the Food and Agricultural Organization (FAO) of the United Nations demonstrated its leading voice on marine and ocean issues, especially on sustainable fisheries and aquaculture for resilient livelihood and ‘Blue Transformation’. Which of the following combinations about the ‘Four Betters’ proposed by FAO for ‘Blue Transformation’ is correct?

    (a) Better production, better nutrition, better environment and better ocean

    (b) Better production, better nutrition, better environment and better life

    (c) Better coral reefs, better nutrition, better environment and better life

    (d) Better estuaries, better nutrition, better environment and better mangrove vegetation

  • Consider the following animals

    Consider the following animals:
    (1). Sea cow
    (2). Sea horse
    (3). Sea lion
    Which of the above is/are mammal/mammals?

  • Consider the following statements

    Consider the following statements :

    1.Most of the world’s coral reefs are in tropical waters.
    2.More than one-third of the world’s coral reefs are located in the territories of Australia, Indonesia and Philippines.
    3.Coral reefs host far more number of animal phyla than those hosted by tropical rainforests.
    Which of the statements given above is/are correct ?

  • The power of mangroves over seawalls

    Why in the News?

    Cyclone Dana highlighted how Odisha’s mangroves protected coastal communities, strengthening the case for nature-based coastal defence over seawalls. This has renewed attention on India’s continued preference for spending ₹2,641 crore on hard infrastructure despite evidence that mangroves and other coastal ecosystems provide long-term, cost-effective protection to nearly 250 million coastal residents.

    Why Are India’s Coastal Regions Becoming Increasingly Vulnerable to Climate Change?

    1. Rising sea levels: The Arabian Sea and Bay of Bengal are experiencing accelerating sea-level rise, threatening low-lying coastal districts, deltas, and island territories.
    2. Intensifying cyclones: Climate change is increasing both the frequency and intensity of cyclones along India’s coast, the eastern seaboard (Odisha, Andhra Pradesh, West Bengal) is particularly exposed.
    3. Saline intrusion: Saltwater intrusion into freshwater aquifers and agricultural land is degrading livelihoods. This directly affects food security and drinking water in coastal communities.
    4. Storm surges: Storm surges linked to cyclonic events are intensifying. These cause disproportionate damage to ecologically fragile coastal landscapes and displacing communities.
    5. Compound risk: These interacting hazards do not operate independently. They multiply threats along India’s coastline, making the fragile coastal landscape both physically and economically vulnerable.
    6. Large Population Exposure: Nearly 250 million people living along India’s coastline face direct impacts of climate-related coastal risks.
    7. Extensive Coastline: India’s 11,000-km coastline increases exposure to multiple climate hazards simultaneously.

    Why Are Mangroves, Seagrasses and Coral Reefs Considered Natural Coastal Defences?

    1. Coral Reefs: The First Line of Defense
      1. Natural Breakwaters: Coral reefs sit furthest out in the ocean and absorb up to 97% of incoming wave energy before it can reach the shore.
      2. Friction and Depth: The jagged, complex structures of coral skeletons create immense bottom friction, forcing waves to break early and lose their destructive power
    2. Seagrass Meadows(The Middle Buffer): Reduce coastal erosion, trap sediments and support marine biodiversity.
      1. Erosion Control: Located in the shallow waters between reefs and the shore, seagrasses act as underwater carpets that anchor the seabed with their roots.
      2. Sediment Trapping: Their long blades slow down water currents, forcing suspended sand and organic particles to drop to the seafloor, which actively builds up the underwater terrain.
    3. Mangroves: The Intertidal Shield
      1. Storm Surge Mitigation: Mangrove forests act as the final, dense barrier against extreme weather, capable of reducing storm surge heights by up to 66%. 
      2. Energy Dissipation: Their massive networks of tangled prop roots and thick trunks create a dense obstacle course that rapidly saps the remaining power of waves and incoming floods.

    How Does Ecosystem-based Adaptation (EbA) Strengthen Climate Resilience?

    EbA uses biodiversity and ecosystem services to help people adapt to climate change. This reduces climate impacts while sustaining ecosystems that support fisheries, agriculture, and tourism.

    1. Climate Risk Reduction: Uses biodiversity and ecosystem services to help people adapt to climate change.
    2. Livelihood Protection: Supports fisheries, agriculture and tourism-dependent communities.
    3. Long-Term Sustainability: Maintains ecosystem functions while reducing climate vulnerabilities.
    4. Cost Effectiveness: Avoids repeated expenditure on expensive hard infrastructure maintenance.
    5. Disaster Risk Reduction: Reduces losses from cyclones, flooding and coastal erosion.
    6. Nature-based Solutions: Integrates conservation and restoration into adaptation planning.

    What Evidence Demonstrates the Effectiveness of Ecosystem-based Adaptation?

    Bhitarkanika Mangroves During Cyclone Dana

    1. Cyclone Protection: Mangroves in Odisha’s Bhitarkanika quietly protected communities from cyclone impacts.
    2. Natural Buffer: Reduced climate impacts while strengthening ecosystem health and livelihoods.

    Global Evidence

    1. Protection Capacity: A healthy hectare of coastal habitat protects more people per hectare than almost any other natural asset.

    Sundarbans Example

    1. Mangrove Restoration: Around 18,000 women restored 4,600 hectares of mangroves.
    2. Cyclone Mitigation: Restoration reduced impacts of Cyclones Amphan and Yaas.
    3. Livelihood Benefits: Strengthened local economic opportunities and social outcomes.

    Kerala Example

    1. Seawall Consequences: Armouring and erosion-control measures protected specific sites.
    2. Adjacent Damage: Accelerated erosion in neighbouring areas, illustrating unintended consequences of hard infrastructure.

    Why Does India Continue to Prefer Seawalls and Embankments?

    Seawalls are massive, heavy-duty structures built directly parallel to the shoreline where the sea meets the land. They are designed as a last line of defence to protect high-value coastal areas, like cities and roads, from intense wave action. Embankments are raised earthen ridges or mounds constructed along rivers, lakes, or low-lying coastlines. They focus on holding back water from flat, expansive areas rather than fighting heavy, crashing ocean waves.

    1. Engineering Bias: Adaptation planning strongly favours hard infrastructure such as seawalls, groynes, embankments and tetrapods.
    2. Political Visibility: Seawalls and embankments provide visible and immediate outputs, making them attractive for governments.
    3. Institutional Preference: Existing planning, procurement and budgeting systems are designed around construction-based projects.
    4. Administrative Familiarity: Engineers and local authorities are more experienced with hard infrastructure than ecosystem restoration.
    5. Perceived Certainty: Seawalls provide tangible and measurable protection, whereas ecosystem benefits are often viewed as less predictable.

    What does India’s coastal adaptation spending pattern reveal about institutional bias toward hard infrastructure?

    1. Hard protection dominance: Coastal States spent ₹2,641 crore on hard protection measures over the last decade. This reflects a stark preference for engineered measures such as seawalls, groynes, embankments, and tetrapods.
    2. National Coastal Mission decline: Budget fell from ₹195 crore in 2022-23 to just ₹50 crore in 2024-25.
    3. PSL and visibility bias: Fragile institutional mandates, weak monitoring, and a preference for visible infrastructure often leave ecosystem-based interventions buried within broader sectoral programmes rather than recognised as adaptation in their own right.
    4. Reporting gap: Adaptation benefits of coastal ecosystems are rarely assessed or recorded separately, making India’s coastal EbA portfolio appear much weaker than it is.

    What Prevents Ecosystem-based Adaptation from Becoming Mainstream Policy?

    1. Fragmented Terminology: EbA overlaps with Nature-based Solutions (NbS), Coastal Adaptation (EbCA), Ecosystem-based Disaster Risk Reduction (Eco-DRR) and related concepts.
    2. Classification Challenges: Similar interventions are recorded under conservation, restoration or management categories instead of adaptation.
    3. Weak Monitoring: Limited mechanisms exist to measure adaptation outcomes.
    4. Institutional Fragmentation: EbA interventions remain dispersed across multiple schemes and sectors.
    5. Inadequate Recognition: Policymakers often fail to identify adaptation benefits generated by ecosystem restoration.
    6. Limited Financing: Absence of dedicated adaptation financing restricts scale and replication.

    Why Does Classification of Ecosystem-based Adaptation Matter?

    1. Policy Recognition: Enables clear identification of adaptation actions.
    2. Monitoring Frameworks: Facilitates tracking and evaluation of adaptation outcomes.
    3. Financing Access: Strengthens eligibility for climate adaptation funding.
    4. Evidence Generation: Supports measurement of climate resilience benefits.
    5. Policy Integration: Ensures ecosystem restoration becomes part of mainstream adaptation planning.

    How Does the Mangrove Initiative for Shoreline Habitats and Tangible Incomes (MISHTI) Reflect the Potential of EbA?

    MISHTI is a dedicated central government scheme in India aimed at reviving and expanding the country’s mangrove cover while generating sustainable livelihoods for coastal communities. Announced during the Union Budget 2023-24 and officially launched on World Environment Day (5 June 2023), it serves as a core part of India’s strategy to build a nature-based “bio-shield” against climate change.

    1. Programme Objective: Targets restoration of 540 sq km of mangroves across nine States.
    2. Climate Resilience: Enhances natural protection against coastal hazards.
    3. Livelihood Support: Generates economic opportunities linked to ecosystem restoration.
    4. Current Limitation: Primarily framed as a restoration programme rather than a climate adaptation initiative.

    What Policy Reforms Are Needed to Mainstream Ecosystem-based Adaptation?

    1. Policy Integration: Embeds EbA within coastal planning and adaptation frameworks.
    2. Dedicated Financing: Expands budgetary support for ecosystem-based interventions.
    3. Outcome Monitoring: Develops indicators for adaptation benefits.
    4. Institutional Coordination: Harmonises fragmented schemes and programmes.
    5. Climate Accounting: Recognises ecosystem restoration as an adaptation investment.
    6. Natural Capital Approach: Treats ecosystems as strategic climate-resilience assets.

    Conclusion

    The choice before India is not merely between two adaptation techniques but between two development pathways. While seawalls offer localised and short-term protection, mangroves and other coastal ecosystems provide durable climate resilience, biodiversity conservation and livelihood security. Mainstreaming Ecosystem-based Adaptation will be critical for protecting India’s 250 million coastal residents in an era of accelerating climate change.

    Value Addition

    Nature-based Solutions (NbS)

    Definition: Nature-based Solutions (NbS) is an umbrella concept defined by the International Union for Conservation of Nature (IUCN) as actions to protect, sustainably manage, and restore natural or modified ecosystems. These actions address societal challenges, such as climate change, food security, water security, human health, and disaster risk, while simultaneously providing human well-being and biodiversity benefits.

    1. India’s NDC 2022 references NbS for carbon sequestration through forests.

    Ecosystem-based Adaptation (EbA)

    Definition: Use of biodiversity and ecosystem services to help people adapt to adverse impacts of climate change.

    Key Features

    1. Ecosystem conservation
    2. Ecosystem restoration
    3. Climate risk reduction
    4. Community participation
    5. Livelihood enhancement
    6. Disaster resilience

    Ecosystem-based Coastal Adaptation (EbCA)

    EbCA is a subset of Ecosystem-based Adaptation (EbA). It focuses specifically on helping coastal communities adapt to the long-term, gradual changes brought by climate change.

    1. The Core Strategy: It uses coastal biodiversity and ecosystem services to help human societies adapt to climate pressures.
    2. Primary Targets: Sea-level rise, coastal erosion, saltwater intrusion into agricultural land, and changing ocean temperatures.
    3. Example: Dynamically planting salt-tolerant mangrove species along an eroding coastline. As sea levels rise, the mangroves naturally trap sediment, raising the land.

    Ecosystem-based Disaster Risk Reduction (Eco-DRR)

    Eco-DRR focuses on using ecosystems to reduce the immediate impact, frequency, and severity of sudden natural disasters.

    1. The Core Strategy: It manages and restores ecosystems to act as physical shock absorbers against extreme physical hazards.
    2. Primary Targets: Sudden disasters like cyclones, tsunamis, massive storm surges, and flash floods.
    3. Example: Protecting an offshore coral reef. When a cyclone strikes, the reef acts as a natural breakwater, absorbing up to 97% of the wave energy before it crashes into coastal towns, directly reducing casualties and property destruction.

    Ecological Bio-Shields:

    1. A bio-shield is a dense strip of vegetation planted along a coast to act as a barrier against natural hazards. 
    2. Casuarina trees, mangroves, and coastal palms are frequently used together to create multi-tiered, living walls that trap flying debris and slow down incoming water.If

    Integrated Coastal Zone Management (ICZM): 

    1. India’s ICZM project (World Bank-assisted) aimed to address coastal erosion, pollution, and habitat loss through integrated planning. 
    2. EbA mainstreaming is its natural evolution.

    PYQ Relevance

    [UPSC 2022] Explain the causes and effects of coastal erosion in India. What are the available coastal management techniques for combating the hazard?

    Linkage: The PYQ examines coastal vulnerability and compares different coastal protection approaches, including structural and ecosystem-based measures. The article extends the PYQ by assessing whether ecosystem-based solutions such as mangroves can provide more sustainable and cost-effective coastal protection than conventional seawalls and embankments.

  • The largest coral reef in the world is found near the coast of which one of the following countries

    The largest coral reef in the world is found near the coast of which one of the following countries?

  • The marine animal called dugong which is vulnerable to extinction is a/an

    The marine animal called dugong which is vulnerable to extinction is a/an:

  • In the context of ecosystem productivity, marine upwelling zones are important as they increase marine productivity by bringing the

    In the context of ecosystem productivity, marine upwelling zones are important as they increase marine productivity by bringing the:

  • The 2004 Tsunami made people realize that mangroves can serve as a reliable safety hedge against coastal calamities. How do mangroves function as a safety hedge

    The 2004 Tsunami made people realize that mangroves can serve as a reliable safety hedge against coastal calamities. How do mangroves function as a safety hedge?

  • What would happen if phytoplankton of an ocean is completely destroyed for some reason

    What would happen if phytoplankton of an ocean is completely destroyed for some reason?
    1. The ocean as a carbon sink would be adversely affected.
    2. The food chains in the ocean would be adversely affected.
    3. The density of ocean water would drastically decrease.
    Select the correct answer using the code given below: