Bioners LogoBioners

Penyelidikan & Pengetahuan Lapangan

BiONERS Pengetahuan

Pandangan berasaskan sains di sebalik pertanian lebih selamat — Pertanian Metabolik untuk durian dan konsep AICC yang menerangkan bagaimana ketidakseimbangan nitrogen membuka ruang kepada perosak dan penyakit.

UPM Research · IDS 2026

Metabolic Agriculture Research

An introduction for durian (Durio zibethinus L.) — optimizing plant metabolism for high productivity, healthy crops, and reduced pest pressure.

Eric Sim Yih Farn · Mohd Firdaus Ismail · Steven Chan Tuck Soon · Universiti Putra Malaysia · Faculty of Agriculture

Metabolic Agriculture shifts the focus from input maximization to metabolic optimization — productivity, fruit quality, and tree resilience without escalating chemical pressure.

Why Metabolic Agriculture?

  • Rising fertilizer and pesticide costs squeeze farm profitability
  • Inefficient nutrient use and disrupted nutrient cycles
  • Pest, disease, and resistance pressure (canker, Phytophthora, root rot, borers)
  • Declining soil health — loss of organic matter and microbial life
  • Climate variability and abiotic stress affecting fruit set
  • Low nutrient-use efficiency (NUE) through leaching and fixation
  • Environmental degradation from runoff, acidification, and pollution

Durian: a high-value, high-input crop

  • Long juvenile phase and irregular flowering
  • High energy and mineral demand during flowering and fruit filling
  • Sensitive to nutrient imbalance and soil health decline
  • Premium quality depends on tree metabolism — not just input levels

The metabolic framework

A continuous cycle supporting durian success — built on healthy soil, roots, and tree physiology.

  • CaptureEfficient photosynthesis — CO₂ + light + H₂O → sugars + O₂
  • ConvertEnergy (ATP) and metabolic activation — sugars → ATP
  • BuildCell division and structure — calcium powers division and strong cell walls
  • ProtectStrengthen defenses — strong cells and antioxidant enzymes reduce oxidative stress
  • ReproduceReproductive growth — flowering, fruit set, and quality yield

Key principles in durian

  • Carbon & oxygen captureMaximize leaf health and canopy structure; ensure root respiration
  • Energy efficiencyAdequate carbohydrates for ATP; reduce stress to limit energy wastage
  • Calcium-centred cellular healthEssential for cell division, wall strength, and membrane stability
  • Nutrient balance & metabolismFocus on C:N and A:N ratios; use non-ionized minerals (CaCO₃, S°, ZnO) and beneficial microbes
  • Natural resilienceBalanced metabolism enhances antioxidant defense and stress tolerance

Expected outcomes

  • Higher yield and fruit quality
  • Lower input cost and disease incidence
  • Improved tree health and longevity
  • Greater sustainability and profit potential

Research focus areas

  • Optimizing C:N and A:N ratios
  • Role of non-ionized minerals (NIMs) such as CaCO₃, S°, ZnO
  • Calcium nutrition and transport
  • Oxygen availability and root health
  • Energy metabolism and the sugar–ATP relationship
  • Metabolic efficiency, stress tolerance, and disease resistance
  • Field validation across soils and climates

BiONERS Knowledge

AICC Concept in Durian

Ammonium-Induced Cellular Collapse — why nitrogen imbalance weakens trees and invites pests and disease.

BiONERS Solutions & Services (M) Sdn Bhd · Safer Agriculture for Mankind

It's not just the fungus — it's the condition. Pathogens and pests are opportunists. The real problem often starts in the soil and plant physiology.

What is AICC?

A condition where excessive ammonium (NH₄⁺) and ammonia (NH₃) accumulation disrupts cellular balance, weakening the durian tree and making it highly susceptible to canker and pests.

How AICC happens

  • 1Excess ammonium fertilization or accumulation in soil
  • 2Lack of oxygen slows nitrification
  • 3NH₄⁺ builds up in the rhizosphere
  • 4Roots take up NH₄⁺ faster than the plant can assimilate
  • 5Carbon (energy) becomes limiting
  • 6Ion imbalance, pH changes, and toxicity occur
  • 7Membrane integrity weakens
  • 8Oxidative stress increases
  • 9Cellular collapse and tissue damage — pests and pathogens invade

Environmental triggers

  • High temp & dry conditionsSoil dries, NH₄⁺ concentrates, pH rises, and NH₄ converts to NH₃ gas
  • NH₃ burst (volatilization)Sudden ammonia release damages leaves, burns roots, and harms soil biology
  • Lack of oxygenIn poorly aerated soil, nitrification stops, roots suffocate, and ATP drops

Aerobic vs anaerobic soil

  • Aerobic (healthy)Organic N → ammonium → nitrite → nitrate → plant uptake — strong roots and healthy trees
  • Anaerobic (unhealthy)Ammonium accumulates, converts to ammonia gas, or is lost via denitrification — root stress and cell damage

Pest & disease vulnerability

  • CankerNH₄⁺ stress weakens bark cells → dieback and trunk canker
  • Durian psyllidThrives on soft, nitrogen-rich flush → discolored leaves, reduced growth
  • Scale insectsLush, juicy tissues from high NH₄⁺ → sooty mold and yield loss
  • Green hoppersPrefer high-N soft tissues → yellow leaves and stunted growth
  • BorersReduced resin/phenolics (tree defenses) → tunneling and tree decline

Prevention checklist

  • Use nitrate-dominant nitrogen sources
  • Avoid excessive ammonium fertilizers
  • Improve soil aeration and drainage
  • Maintain soil pH between 5.5 and 6.5
  • Increase organic matter and microbial activity
  • Provide sufficient K, Ca, Mg, and trace elements
  • Use biochar and beneficial microbes
  • Mulch to maintain moisture

Pokok sihat = pokok yang semula jadi tahan lasak.

Bercakap dengan BiONERS tentang menerapkan Pertanian Metabolik dan pencegahan AICC di ladang anda.

Tanya di WhatsApp