Anatomy of a seed
A bean is an entire plant, folded up and dehydrated, wrapped in a waterproof case with a one-way valve. Nine named structures, and almost all of the mass is in two of them.
Section, with the walls magnified
The same geometry as the model above, sliced along the plane of symmetry. Both callouts are drawn to their real relative scale: the seed coat is roughly 70 ยตm thick, a cotyledon cell about 100 ยตm across.
Two ways out of the ground
The common bean lifts its cotyledons into the light on an arching hypocotyl. The runner bean, pea and fava leave theirs buried and push up a shoot instead. Scrub the slider to run both.
Germination
Day 0 โ dry seedBreaking the strongest bond in the air
Dinitrogen is 78% of the atmosphere and almost inert: the NโกN triple bond takes 941 kJ/mol to break. Industry does it at 450 ยฐC and 200 atmospheres. A bean does it in a root nodule at ambient temperature, and pays in ATP.
Symbiosis, step by step
1 / 6
N2 + 8H+ + 8eโ + 16 ATP
โ 2NH3 + H2 + 16 ADP + 16 Pi
Note the obligatory hydrogen. Nitrogenase cannot reduce N2 without also making H2, so at least 25% of the electron flux is spent on a by-product. Sixteen ATP per molecule of nitrogen is the going rate, and the plant pays it out of photosynthesis โ a nodulated legume spends 4โ16% of its fixed carbon on the bacteria.
Nitrogen fixed per hectare per season
Typical field ranges. The common bean is a famously poor fixer for a legume โ one reason it is usually grown with some fertiliser and why breeding programmes target its symbiotic efficiency.
Where beans sit in the family
Fabaceae is the third-largest family of flowering plants and the only one that reorganised its own higher taxonomy this century โ the 2017 Legume Phylogeny Working Group classification split the old catch-all Caesalpinioideae into four.
Six subfamilies
LPWG 2017Down to the bean
The pod is the whole point
Everything that makes a legume a legume follows from one organ. A pod โ a legume in the strict botanical sense โ is a dry fruit developed from a single carpel that splits along two seams at once. Nothing else in the plant kingdom does that.
Why two seams matters
Dehiscing along both sutures throws seed clear of the parent โ the pod halves twist as they dry and flick the seeds metres away. The single most important thing done to a wild legume during domestication was to break that mechanism, so the crop holds its seed until harvest. Almost every pulse carries a loss-of-function mutation in pod shattering.
Placentation
Seeds attach alternately along one suture, each by a funiculus that leaves the hilum scar. Count the hila along a split pod and you can read off how many ovules were fertilised and how many aborted โ a bean pod typically sets four to six of eight.
The flower it came from
Papilionaceous: a broad standard petal at the back, two wings at the sides, and two lower petals fused into a keel that encloses ten stamens and the ovary. A visiting bee levers the keel down and trips the stigma against its abdomen. Most cultivated beans, though, gave that up and pollinate themselves before the flower even opens.
Not every pod is dry
Tamarind and carob keep theirs fleshy and indehiscent โ sugary pods that pay animals to carry the seed instead of throwing it. Both sit outside Faboideae, and neither is what anyone means by a bean.