Showing posts with label pH. Show all posts
Showing posts with label pH. Show all posts

Sunday, September 2, 2012

Soil Nutrition: When, How and What to Feed the Soil?

This is a big topic and something that a lot of gardeners either think that they don't have to know or are just plain scared of!.  Let me just say that a basic grasp of this fundemental knowledge will help you to solve many of the problems that you will be faced with as a gardener - believe me, I know - I learned the hard way!  Bear with me because I have a BIT OF EXPLAINING TO DO.
Now,  now Flossie - I didn't say 'bare' with me!

It all started for me this week with an email from Peter - a member of our Garden Club who has undertaken an Organic Horticulture course at College.

"Hi DiEnjoying the Organic Horticulture course. We're growing a large patch of veges of every kind and the growth rate is remarkable. No chemicals, of course, but I have been surprised at how many additives and amendments are going on -- compost, blood and bone, Organic Extra, sulphate of potash -- on soil that already tests really well. Crucially, it has large amounts of organic matter, thanks to regular plantings of green manure. And the compost, of course."  Peter

NOTE:  It was explained to me by Peter that they had spent the past few weeks planting out a large area with annual vegetable crops in the traditional farming practice of segregated rows.

This was my reply. Dear Peter,

Feeding crops. This is an interesting point you make and something I have been meaning to write up on the blog as people find it perplexing.

People always seem surprised when I talk about the necessity for feeding the soil - particularly if the pH is OK and they have improved it with OM. However, when you think about it it makes sense - especially when your are talking about veggies and fruit crops.


What you are doing at College is intensive farming with annual crops (that's what most vegetables are) even though you are doing it organically. You want them to do everything they have to do within a very short space of time - this is unlike the natural environment where plants are mostly permanent/perennial and there is naturally a great deal of seasonal variation in growth, flowering and fruiting - you have good seasons and bad seasons. What you are working with are probably also hybrids with expectation of larger than normal yields than would naturally occur in normal conditions.

In addition to this, you are probably growing a mixture of crops - leafy, root, fruiting that require larger inputs of nitrogen, phosphorous and potassium. Food for thought. I hope this is helpful. Kindly, Di


WHAT:You can get a grasp on this if you think of plants being like people - we need food, water and air to survive - without them we won't flourish - plants are the same.  We have OUR macronutrients (proteins, fats and carbohydrates) and we need larger amounts of them than our micronutrients (vitamins and minerals) - BUT THEY ARE ALL ESSENTIAL - in this respect plants are also the same - they have their MACRONUTRIENTS and MICRONUTRIENTS - they need them all to survive, but some in larger quantities than others.

OXYGEN, CARBON AND HYDROGEN make up 96% of these - which plants get from the air, sunlight and water.  

However, just as essential for healthy plant growth is the presence of a range of chemical elements that plants get from the soil - NITROGEN(N), PHOSPHORUS(P) and POTASSIUM(K).  Unlike us, plants can't go grazing for the nutrients they need, they have to be within their root zone.  In nature these elements occur naturally- provided by the soil and decomposing plant and animal material and, in the natural environment if these elements are scarce for some reason, plants evolve to survive without them.  For example - Australian soils are very low in phosphorus and many native plants will not thrive in phosphorus rich soils and you cannot feed them phosphorus rich fertilizers.

Nowhere in nature does anything exist like your vegetable garden.  This is an area of intensive crop production, and you are probably using the same piece of ground over and over again - SO THE SOIL AND PLANTS WILL NEED REGULAR FEEDING if they are to flourish.

The photo below is was taken of an experiment we did, when I was studying horticulture in the 1980's,  to look at the effect of these MACRONUTRIENTS on the growth of tomato seedlings.  I have never seen anything since that explains more simply the necessity of N, P, K on plant growth.  (All the plants were getting the same amounts of light, air and warmth)
Pot 1. C - Complete - this plant had all the N, P, K it needed. Note the healthy, normal growth.

Pot 2.  Had no nutrients at all - notice the stunted, poor growth.

Pot 3.  -N - no nitrogen.  The function of nitrogen is to promote strong, healthy leaf growth. Plants that are grown mostly for their foliage, such as leafy green vegetables, will require a fertiliser higher in nitrogen. If a plant's leaves begin to yellow there’s the possibility of nitrogen deficiency.

Pot 4.  -P - no phosphorus (phosphates).  This is responsible for the reproductive parts of the plant – the flowers, fruit and seeds and is also important in root development.
NOTE:  As a kid, on my father's alottment  I used to watch him put in a trench of wood ash next to where he was going to plant a root crop.  He didn't know that this would be ideal food for them - he had just watched someone else do it and seen the results.  Observation - one of the keys to successful gardening.

Pot 5.  -K - no potassium (potash) Essential for the formation of sugars, starches, carbohydrates, protein synthesis and cell division.  Enhances flavour, flowering and setting of fruit.

Other important elements are calcium (Ca), magnesium (Mg) and sulfur (S).  MICRONUTRIENTS are needed in small amounts like boron (B) which is needed by citrus to prevent fruit drop and to prevent hollow stems in broccoli.  Peas and beans won't thrive without molybdenum (Mo). 

HOW:  These Macro and Micro nutrients are present in the soil as part of the original decomposing rock and organic matter.  Replenishing the soil with plenty of organic matter is the most effective way to ensure that your plants are getting everything they need to eat!  Use whatever you have got to boost their supply; composted kitchen scraps, grass clippings, worm castings, animal manures, wood ash, urine, straw, seaweed ..................  
FACT:  ORGANIC MATTER is Natures' 'slow release' fertilizer.


How do these nutrients become available to the plants?  They are mostly converted by bacteria to a soluble form that is taken up by the roots of plants.  BUT THESE MICROFLORA IN THE SOIL ARE ONLY ACTIVE WHEN THE pH is right - that is NEUTRAL 6.5-7.  So it is important to check your pH (see top of main page (UNDERSTANDING SOILS).  All the food your plants need may be present in your soil. but unavailable because the pH is either too acid or too alkaline.

If you look at the diagram above (another of my College notes that I wish I hadn't chucked out!) you will see that the widest parts of the shaded areas indicate maximum availability of each element. The YELLOW BAND INDICATES WHEN ALL OF THE ELEMENTS ARE AVAILABLE - 6.5-7 with the MACRO NUTRIENTS, in particular, decreasing as the soil becomes more acid.  

WHEN:  Sub-tropical soils (and sandy soils) quickly become depleted of nutrients after heavy rain so our soils need feeding on a more regular basis.  The general ‘rule’ is to apply nitrogen, phosphorus and potassium at the beginning of the growing season to encourage vigorous growth, and again at end of the growing season so they go into their dormant period in a well fed condition.

Heavy rain also makes the soil MORE ACID because the alkaline elements in the soil are more soluble in water - they quickly get washed away.  That's why it's important to check the pH and correct any imbalance.  Mulch, mulch and more mulch!

One of the very best ways to 'quickly' feed a plant is to use a home made COMPOST TEA (see previous post) as a foliar spray - that is directly onto the leaves.  The plant is able to respond much more quickly to being fed by this method rather than via its roots and the soil. I give my fruit and vegies a feed this way about every ten days.
NOTE:  I make my COMPOST TEA from seaweed(kelp), comfrey leaves, and cow manure - this provides all the nitrogen, phosphorus, potassium and trace elements that my plants may need.


Six years ago I inherited this terrible clay 'pudding' - you can't call it soil.  I nearly wept.  The developers had scooped off metres of beautiful rich top soil to level it.  Everything struggled to live here, including me!

6 years later!
With the help of these and the other millions of micro and macro flora in the soil - they just need lots of organic matter to do the work for you.


"A cup of soil contains about 100 billion microorganisms. This is ten times the number of stars in our galaxy. Just a spoonful of soil contains about a billion microorganisms" ABC Radio National Science Show 5/3/2012  In our lifetime we will never know everything there is to know about the complex inter-reltionships of nutrients in either the soil or our own bodies. 

Tuesday, March 20, 2012

Nematodes and Companion Planting: Sorting Fact from Fiction

MARIGOLDS Tagetes patula 

"1 cup of soil contains 100 billion microorganisms"
ABC Radio National Science Show, 3 March 2012



WHAT ARE ROOT KNOT NEMATODES?  They are tiny parasites, invisible to the naked eye,  that burrow into the roots of plants leaving cancerous like growths that compromise the health and vigour of a wide range of ornamentals and food crops.

FACT Not all NEMATODES are bad - they perform a multitude of beneficial functions that contribute towards the health of the soil - what we are dealing with here are PARASITIC NEMATODES that can cause a tremendous amount of damage to food crops.

Parasitic Nematode damage to my tomato plants

Troubleshooting an unproductive bed (I'll leave the jokes to the wits out there!).



The Garden Troubleshooter!

I had one bed that was just not doing well - things would start to grow and then most would die or linger on looking unhappy.

The Companion Planting Theory - Sorting Fact from Fiction: In this bed I had planted MARIGOLDS amongst the vegetables to keep the nematodes at bay - this is the perceived companion planting wisdom. This was mixed up with tomatoes, broccoli, eggplant, climbing beans and wild rocket.

What I Discovered: All the tomato plants were failing to thrive, along with the beans and eggplant - while the broccoli, rocket and marigolds were unaffected.  
1. When I pulled up the sick tomatoes I saw that they all had these cancerous growths on the roots - the same with the eggplant and beans, but not any of the other plants.  2. The MARIGOLD roots were unaffected but this showed THAT THEY WERE NOT PROTECTING THE PLANTS AROUND THEM.
3.  What about the BROCCOLI and ROCKET, you might say? Doing a bit of reading around the subject I discovered that because these plants are both in the BRASSICA family, and they exude sulphur from their roots (the smell of boiled cabbage!!), which is probably what the strong smelling MARIGOLD is doing too (a bit like men wearing Brut?) - deterring the nematodes from getting too close to them.



Marigold roots unaffected by nematode damage


MARIGOLDS DO NOT PROTECT THE PLANTS AROUND THEM FROM NEMATODE ATTACK - JUST THEMSELVES.

How Can we Use this Knowledge to our Advantage?
1. NEMATODES will persist in the soil and keep causing damage if they have favourable host plants so having an understanding of plant families is going to be our best ally.
2.  EXCLUDE the plants that are nematode magnets and INCLUDE the ones that put them off.  Tomatoes and eggplant are in the same family (SOLANACEAE) so they are going - along with their brothers and sisters - potatoes, capsicum, chillies.  Make sure you destroy the affected plants and don't put them in the compost.
TOP TIP  Two effective ways to destroy diseased plants:
.  Put in a garbage bin full of water, with the lid on to eliminate mosquitoes breeding, and leave until they rot down then pour this slurry on the garden.
.  Place in a securely tied black plastic bag in the sun until decomposed - then put on the compost.

How to get this Unhealthy Bed Back Into Shape?
1.  Having a bed so badly affected by nematodes tells me that there is something out of kilter here.  When plants become diseased it usually means that they are under stress and, as usual, THE ANSWER PROBABLY LIES IN THE SOIL.

FACT:  The heavy rainfall that we experience over the summer months invariably leave the soils 'tired' and depleted of nutrients.  For the full story take a look at the page UNDERSTANDING SOILS.  You will find that they are often quite ACID and lacking in ORGANIC MATTER.  What to do?

STEP 1.  Do a pH test to determine the first step to take.  When I did a pH test in the 'not happy' bed I saw that, in fact, it was quite alkaline - about 10 when it should be between 6-7 (NEUTRAL - this the optimum level of acidity/alkalinity in the soil when microorganisms thrive and nutrients are released for root uptake).

I then realised that I had been topping it up with mushroom compost and have since discovered that a large component of mushroom compost is CHALK (calcium carbonate - very alkaline).

pH test of soil showing it to be quite alkaline - 10 - when it should be 6-7


STEP 2. I now realised it was time to empty out the compost bins, to correct this imbalance, and put it to good use.  I mixed up the COMPOST with some BLOOD and BONE, dried GRASS CLIPPINGS to give the soil an addition of ORGANIC MATTER and correct the pH - make it neutral - 6.5-7 is what we are aiming for.  

For acid soils (5 and under) you need to be adding all of the above plus some DOLOMITE or AGRICULTURAL LIME to raise the pH.

STEP 3. After pulling out all the affected plants we are now going to use the MARIGOLDS and their nematode deterring properties to fumigate the soil.  I simply pulled all the ones out that I had around the garden, chopped them up and left them to rot down on top of the soil - bingo - no more nematodes.

TOP TIP:  For an empty bed where you are starting from scratch and want to ensure that it is nematode free and is ultimately going to give you the healthiest FOOD -  PLANT A GREEN MANURE CROP of a mixture of MARIGOLD, MUSTARD (a brassica) and  LEGUME (fixes nitrogen on their roots) seed (e.g. vetch, cow pea, lupins), and a GRASS (e.g. barley or ryegrass - adds much needed organs matter and carbon to hungry soils).  When they are about 50 cm high, slash them down to the ground, cover with a thick layer of straw to deter further growth, wait for that to break down then plant away.  This is a centuries old practice for improving the health of the soil organically and without the need for chemical fertilisers.



Nitrogen nodules on broad bean roots.  Don't confuse this most desirable phenomena with the cancerous looking roots of a nematode affected plant.

STEP 4.  Put the kettle on!




“We know more about the movement of celestial bodies than 
about the soil underfoot.”  Leonardo Da Vinci, circa 1500’


Me doing Step 2.




Reference sources:  Hawaii University School of Agricultural Science.  Gardening Australia.  Queensland Department of Primary Industry.

“To be a successful farmer one must first know the nature of the soil.” - Xenophon, Oeconomicus, 400 B.C.