Cereals, Grains & Baked Goods
The following table ranks 58 of the audited Cereals, Grains & Baked Goods, based on their Nutrient Density (Nutrient Aggregate) and PANY (Potential Annual Nutrient Yield) per hectare.
1. The Grains, Legumes, Rice & Pasta League Table
Strictly sorted by Nutrient Density and PANY merit.
| Rank | Food Item | Nutrient Density | Best For | Vegan Nutritional Superpower |
| 1 | Wheatgerm | ⭐⭐⭐⭐⭐ | Longevity 34 | Peak Vit E & Octacosanol 34 |
| 2 | Red Lentils | ⭐⭐⭐⭐⭐ | Heart Health 36 | Staggering Folate 36 |
| 3 | Chickpeas | ⭐⭐⭐⭐⭐ | Muscle Tone 38 | Manganese & Protein 38 |
| 4 | Green Lentils | ⭐⭐⭐⭐⭐ | Blood Health 37 | Iron & Fibre Density 37 |
| 5 | Wheatgerm Bread | ⭐⭐⭐⭐⭐ | Nerve Health 10 | Thiamin & Vitamin E 10 |
| 6 | Red Lentil Pasta | ⭐⭐⭐⭐⭐ | Heart Health 55 | Folate & Copper 55 |
| 7 | Chickpea Pasta | ⭐⭐⭐⭐⭐ | Tissue Repair 56 | High Protein & Zinc 56 |
| 8 | Quinoa (Grain) | ⭐⭐⭐⭐½ | Metabolic Tone 35 | Complete Amino Profile 35 |
| 9 | Chickpea Bread | ⭐⭐⭐⭐½ | Repair 28 | Folate & Manganese 28 |
| 10 | Seeded Multigrain | ⭐⭐⭐⭐½ | Immune Support 9 | Lignans & Omega-3 9 |
| 11 | Wild Rice | ⭐⭐⭐⭐½ | Cell Protection 48 | Rare Anthocyanins 48 |
| 12 | Wholemeal Bread | ⭐⭐⭐⭐½ | Energy 16 | Selenium & Alkylresorcinols 16 |
| 13 | Wholemeal Rolls | ⭐⭐⭐⭐½ | Satiety 21 | Manganese & Fibre 21 |
| 14 | Wholewheat Pasta | ⭐⭐⭐⭐ | Steady Energy 52 | Selenium & Phosphorus 52 |
| 15 | Wholewheat Couscous | ⭐⭐⭐⭐ | Fast Prep 58 | High Selenium 58 |
| 16 | Quinoa Bread | ⭐⭐⭐⭐ | Digestion 27 | Quercetin & Magnesium 27 |
| 17 | Malted Wheat Bread | ⭐⭐⭐⭐ | Gut Vitality 5 | Beta-Glucans & Niacin 5 |
| 18 | Malted Wheat Rolls | ⭐⭐⭐⭐ | Gut Health 18 | Malted Nutrients 18 |
| 19 | Sourdough Bread | ⭐⭐⭐⭐ | Bioavailability 25 | Low Phytate Minerals 25 |
| 20 | Chapatis | ⭐⭐⭐⭐ | Metabolism 22 | Manganese Density 22 |
| 21 | Red Camargue Rice | ⭐⭐⭐½ | Antioxidants 47 | Red Polyphenols 47 |
| 22 | Brown Basmati Rice | ⭐⭐⭐½ | Electrolytes 41 | Manganese & Magnesium 41 |
| 23 | Brown Long Grain | ⭐⭐⭐½ | Energy 43 | B-Vitamin Density 43 |
| 24 | Puri | ⭐⭐⭐ | Occasional Fuel 31 | Selenium & Vit E 31 |
| 25 | Corn Tortillas | ⭐⭐⭐ | Bone Health 33 | Nixtamalised Calcium 33 |
| 26 | White Bread + Fibre | ⭐⭐⭐ | Bridge Diet 15 | Selenium & Inulin 15 |
| 27 | Brown Bread | ⭐⭐⭐ | Balance 2 | Selenium & Manganese 2 |
| 28 | Soft Brown Rolls | ⭐⭐⭐ | Textural Prep 17 | Blended Nutrient Profile 17 |
| 29 | Wheatgerm (15%) | ⭐⭐⭐ | Nerve Support 10 | Vitamin E Enrichment 10 |
| 30 | Plain Bagels | ⭐⭐⭐ | Rapid Prep | Thiamin & Selenium |
| 31 | Naan Bread | ⭐⭐⭐ | Simple Carb 6 | Selenium Density 6 |
| 32 | Peshwari Naan | ⭐⭐⭐ | High Calorie 7 | Nut-based Fats 7 |
| 33 | White Pitta Bread | ⭐⭐⭐ | Easy Digestion 8 | Low-Fat Energy 8 |
| 34 | Ciabatta | ⭐⭐⭐ | Satiety 3 | Retrograded Starch 3 |
| 35 | Fruited Malt Bread | ⭐⭐⭐ | Sweet Repair 4 | Iron & B1 4 |
| 36 | Danish White Bread | ⭐⭐⭐ | Light Energy 11 | High Selenium 11 |
| 37 | Farmhouse White | ⭐⭐⭐ | Classic Prep 12 | Selenium Load 12 |
| 38 | French Baguette | ⭐⭐⭐ | Low Fat 13 | Selenium & Manganese 13 |
| 39 | Crusty White Rolls | ⭐⭐⭐ | Texture 19 | High Temperature B1 19 |
| 40 | Muffins (English) | ⭐⭐⭐ | Griddle Energy 30 | Selenium & Phosphorus 30 |
| 41 | Currant Buns | ⭐⭐½ | Occasional Treat 29 | Fruit Polyphenols 29 |
| 42 | Sliced White Bread | ⭐⭐½ | Ubiquity 14 | Enriched Selenium 14 |
| 43 | Soft White Rolls | ⭐⭐½ | Soft Textures 20 | Refined Starch Fuel 20 |
| 44 | Soft Wheat Tortilla | ⭐⭐½ | Flexibility 32 | Sodium & Selenium 32 |
| 45 | Durum Wheat Pasta | ⭐⭐½ | Muscle Prep 51 | Selenium & Copper 51 |
| 46 | White Lasagne | ⭐⭐½ | Pasta Build 53 | Refined Starch 53 |
| 47 | Couscous (White) | ⭐⭐½ | Speed 57 | Pure Selenium Boost 57 |
| 48 | White Basmati Rice | ⭐⭐½ | Gentle Digestion 40 | Quick Energy 40 |
| 49 | Long Grain White | ⭐⭐½ | High Volume 42 | Trace Minerals 42 |
| 50 | Easy-Cook Rice | ⭐⭐½ | Satiety 44 | Gelatinised Starch 44 |
| 51 | Jasmine Rice | ⭐⭐ | Fragrance 46 | Low Sodium Energy 46 |
| 52 | Arborio Rice | ⭐⭐ | Creamy Texture 45 | High Amylopectin 45 |
| 53 | Gluten-Free Bread | ⭐⭐ | Medical Safety 26 | Alternative Starches 26 |
| 54 | Gluten-Free Pasta | ⭐⭐ | Safe Prep 54 | Corn/Rice Synergy 54 |
| 55 | Crumpets | ⭐⭐ | Porous Energy 24 | Selenium & Sodium 24 |
| 56 | Croissants (Vegan) | ⭐ | High Energy 23 | Plant-Oil Lipids 23 |
| 57 | Pudding Rice | ⭐ | Rapid Energy 49 | Immediate Glucose 49 |
| 58 | White Flour | ⭐ | Bulk Build | Trace Endosperm Nutrients |
Global Unity & Rewilding Suitability
The Unity Score measures how effectively a food can be produced using open-source, decentralised technology (like 8-storey aeroponic vertical farms). High scores indicate crops that can be grown in urban centres, removing the environmental cost of shipping and allowing for the rewilding of traditional farmland.
2. Global Unity & Rewilding Suitability Table
Sorted by suitability for decentralised growth and land-clearing speed.
| Rank | Food Item Group | Unity Score | Rewilding Impact | Why? |
| 1 | Red/Green Lentils | ⭐⭐⭐⭐⭐ | Absolute | Nitrogen-fixing; dwarf varieties excel in vertical rows. |
| 2 | Chickpeas | ⭐⭐⭐⭐⭐ | Absolute | Soil-improving; high protein yield per cubic metre. |
| 3 | Lentil/Chickpea Pasta | ⭐⭐⭐⭐⭐ | Absolute | High-value vertical output; nitrogen-fixing priority. |
| 4 | Wheatgerm | ⭐⭐⭐⭐⭐ | Extreme | Maximum nutrition extracted from minimal mill-stream. |
| 5 | Corn Tortillas | ⭐⭐⭐⭐½ | Extreme | C4 Efficiency; high vertical turnover and yield. |
| 6 | Quinoa (Grain/Bread) | ⭐⭐⭐⭐½ | High | 365-day cycles; UV-B induction possible in closed loops. |
| 7 | Wholemeal Bread/Rolls | ⭐⭐⭐⭐ | High | 100% grain use; slashes industrial processing waste. |
| 8 | Sourdough Bread | ⭐⭐⭐⭐ | High | Minimal additives; relies on local wild fermentation. |
| 9 | Seeded Multigrain | ⭐⭐⭐⭐ | High | Multi-crop stacking; sunflower/flax integrate into vertical walls. |
| 10 | Wheatgerm Bread | ⭐⭐⭐⭐ | High | Upcycles nutrient-dense mill fractions into daily staples. |
| 11 | White Bread + Fibre | ⭐⭐⭐½ | Very High | Simple doughs; adds value to refined streams via fibre. |
| 12 | Pitta / Naan / Puri | ⭐⭐⭐½ | Very High | Rapid, high-heat “flash” baking; energy-efficient throughput. |
| 13 | Standard White Bread | ⭐⭐⭐ | Moderate | Relies on high-extraction milling; low nutrient content per hectare. |
| 14 | Basmati / Long Grain Rice | ⭐⭐⭐ | Moderate | Subterranean irrigation possible but water-heavy. |
| 15 | Pasta (Durum/White) | ⭐⭐⭐ | Moderate | Requires high-pressure extrusion and drying energy. |
| 16 | Wild Rice | ⭐⭐½ | Moderate | Requires aquatic habitat mimicry; specialised bio-tanks. |
| 17 | Gluten-Free Bread | ⭐⭐ | Low | Complex starch/gum supply chain; high water-usage crops. |
| 18 | Croissants (Vegan) | ⭐ | Low | Global ‘lipid debt’ (Shea/Coconut); multi-stage processing. |
Lipid Debt (lipid is another word for fat): The Global North is living beyond its own ecological means. Western nations do not have the land or climate to produce enough saturated fat cheaply, so they outsource the environmental burden (water usage, soil depletion and land use change) to tropical regions. The “debt” is the environmental damage left behind in the Global South so that cheap croissants can exist on supermarket shelves thousands of miles away.
Summary Insight
- Nitrogen-Fixing Legends: Lentils and Chickpeas (and their pasta/bread derivatives) are the highest priority for vertical farms. They fix their own nitrogen, reducing the need for synthetic fertilisers that cause “eutrophying emissions” in traditional agriculture.
- The 100% Grain Rule: Wholemeal products provide ~30% more nutrition per hectare than white versions. Moving to whole-grain vertical production allows for immediate land return to nature.
- Starch Debt: ‘Starch Debt’ is an environmental term that describes the heavy ecological toll—specifically water, land, and energy—incurred by producing resource-heavy carbohydrates like rice and engineered gluten-free foods. It means that to satisfy our global demand for these specific starches, society must continuously drain vital resources from local ecosystems, leaving behind an environmental deficit that makes it incredibly difficult to return that land to nature. Rice varieties and Gluten-Free engineered breads have the highest “Freshwater Withdrawals” (up to 1200L per protein portion), making them secondary priorities for rewilding efforts compared to dry-land grains and legumes.
Cereals, Grains & Baked Goods
Texture & Phytochemical Composition
Technical metrics for land-use velocity. Sorted by PANY (Potential Annual Nutrient Yield), representing the total nutrient efficiency of the food system over a 365-day cycle.
3. Texture & Phytochemical Composition Cheat Sheet
| Food Item | Functional Texture | Primary Phytochemicals | Trad. Land Use | PANY | |
| Chickpeas | Firm/Meaty | Saponins & Phenolics | ⭐⭐ (Nitrogen-fixing) | 92 | |
| Red Lentils | Soft/Puree | Flavan-3-ols | ⭐⭐ (Nitrogen-fixing) | 90 | |
| Wheatgerm | Oily/Granular | Octacosanol & Vit E | ⭐⭐⭐ (Mill-stream) | 88 | |
| Wholemeal Bread | Fibrous/Nutty | Ferulic Acid | ⭐⭐⭐ (Extensive) | 86 | |
| Seeded Bread | Crunchy/Oily | SDG Lignans | ⭐⭐⭐ (Mixed) | 85 | |
| Wheatgerm Bread | Soft/Nutty | Octacosanol | ⭐⭐⭐ (Enriched) | 84 | |
| Malted Bread | Chewy/Sweet | Beta-Glucans | ⭐⭐⭐ (Processed) | 82 | |
| Corn Tortillas | Soft/Flexible | Zeaxanthin | ⭐⭐ (C4 Efficiency) | 82 | |
| Quinoa Bread | Earthy/Dense | Quercetin | ⭐⭐⭐ (Alpine) | 81 | |
| Red Camargue Rice | Chewy/Nutty | Proanthocyanidins | ⭐⭐⭐⭐ (Irrigated) | 78 | |
| Sourdough Bread | Tangy/Chewy | Pre-digested Phenolics | ⭐⭐⭐ (Extensive) | 76 | |
| Plain White Bread | Spongy/Soft | Trace Lignans | ⭐⭐⭐⭐ (High Extraction) | 74 | |
| Durum Pasta | Al dente/Firm | Carotenoids | ⭐⭐⭐⭐ (Extensive) | 72 | |
| White Basmati | Fluffy/Light | 2-Acetyl-1-pyrroline | ⭐⭐⭐⭐⭐ (Irrigated) | 62 | |
| Gluten-Free Bread | Crumbly/Damp | Trace Phenolics | ⭐⭐⭐⭐⭐ (Engineered) | 42 |
Rewilding Insight
- Legume-Based Systems are the PANY Kings. By utilising nitrogen-fixation in 8-storey aeroponic stacks, they provide the highest nutrient density with zero soil depletion, allowing vast swathes of horizontal land to be returned to native forests.
- Whole-Grain Vertical Production (Wholemeal/Wheatgerm) increases annual efficiency by ~30% compared to refined white breads by eliminating the waste of the bran and germ streams.
- Engineered/Refined Foods (Gluten-Free/White Flour) remain “Nutritional Borrowers.” Their reliance on global supply chains for starches and intensive refining makes them the last priority for decentralised urban growth.
Sources & Endnotes – please see the References & Bibliography section for full details of all sources:
1 Throughout this audit, each food’s nutrient content has been compared to the Reference Daily Intakes (RDIs) of different nutrients, essential fats and amino acids for 21-24 year old females. These were based on data from the World Health Organisation (WHO), the USDA Dietary Guidelines, and the UK Scientific Advisory Committee on Nutrition (SACN). For full details, visit: https://naturalhuman.co.uk/reference-intakes/. These values were selected solely as a standardised, fixed benchmark to calculate and compare the exact percentage of nutrients provided by different foods per portion. Using a single baseline like this allows for an objective, side-by-side comparison of individual foods’ nutritional profiles; however, these targets are not universally applicable & must not be considered to be a recommendation.
2 Google AI – Calculated portion sizes based on 20g protein target.
3 USDA FoodData Central – Analytical profiles for Grains/Legumes/Breads.
4 McCance and Widdowson’s The Composition of Foods – UK Quadram Institute data.
5 MyFoodData – Amino acid and fatty acid profiling benchmarks.
6 Poore, J., & Nemecek, T. (2018). Reducing food’s environmental impacts. Science.
7 Water Footprint Network – Freshwater withdrawal benchmarks.
8 CarbonCloud – Climate footprints for baked, boiled, and fried goods.
9 BAKERpedia – Technical processing (Lamination, Nixtamalisation, Fermentation).
10 Harvard T.H. Chan School of Public Health – Nutritional bioavailability research.
11 British Nutrition Foundation – Fibre fractions (Resistant Starch, Arabinoxylan).
12 Monash University – FODMAP sensitivity thresholds for grains.
13 ScienceDirect – Phytochemical concentrations in cereal endosperm vs. bran.
14 Coeliac UK – Gluten-free standards and wheat allergen guidelines.
15 The Vegan Society – Vegan suitability and hidden ingredient checks.
16 PMC – Prebiotic potential of whole-grain polysaccharides.
17 MDPI – Antioxidant capacity of pigmented rice and pseudocereals.
18 Royal Horticultural Society (RHS) – Home-growing and urban farming feasibility.
19 FAO – Global crop yields and rewilding benchmarks.
20 Arrell Food Institute – Metabolic benefits of traditional food processing.
21 Journal of Cereal Science – Alkylresorcinols as whole-grain biomarkers.
22 BBC Good Food – Traditional recipes and home-baking feasibility.
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The content in this webpage is intended for general information and educational purposes only. It is not medical advice, nutritional advice, technical guidance, or professional instruction. Any decisions relating to diet, health, agriculture, engineering, or environmental planning should be made with the support of qualified experts such as registered dietitians, doctors, agronomists, engineers or environmental specialists. Always consult an appropriate professional before making changes to your diet, health routine, or food production methods. This webpage was co‑created by K. Stephenson and Google AI, drawing on the ethical principles, design goals, and sustainability values associated with the Natural Human philosophy. The text was generated collaboratively, with Google AI contributing data-gathering, analytical structure and explanatory detail and K. Stephenson defining the layout, content and focus, and refining and editing the content to ensure clarity, accuracy, and alignment with the wider vision of a food system that nourishes us deeply while minimising avoidable harm. Consequently, the final framing, interpretations, ethical perspectives, and value‑driven conclusions arise from the Natural Human viewpoint and from editorial decisions made by K Stephenson. The contents of this webpage will, therefore, not necessarily reflect the beliefs, policies, or official positions of Google AI, Google, or any associated organisations. This webpage and its contents are the intellectual property of its architect and editor, K Stephenson.
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