Tuesday, January 31, 2012
How wide a border?
It is easy to find recommendations for spacing pecan trees in a new pecan planting. I usually recommend an initial spacing of 35 to 40 feet between trees when setting out a new orchard. But I've never seen anyone talk about the space that should be left between a new planting and established pecan trees or adjacent woodland.
In the photo above, a row of young Kanza trees (left and west side) are growing next to a block of large native pecan trees (right and east side). Note how the Kanza trees seem to be leaning away from the natives. Even though the limbs of Kanza and native trees are no where near touching, the large native trees seem to exert their presence in forcing the Kanza tree grow westward, away from the crowns of the larger trees. There are 45 to 50 feet between native and Kanza trees pictured above.
Now let's look at another situation. The photo above shows a row of grafted trees (left and west) adjacent to woodland (right and east). The distance between pecan trees and woodland is 60 to 65 feet. In this case, the pecan trees have had enough space to grow normally without obvious influence from the large trees in the adjacent forest.
If you are establishing a new pecan planting, my recommendation would be to plant no closer than 60 feet from adjacent established trees (native pecans or woodland). This spacing should ensure balanced top growth of your new trees.
Sunday, January 29, 2012
Carving out a new native pecan grove
Every native pecan grove starts out as a forest of river-bottom, hardwood trees that includes pecan in a mix of oak, ash, hackberry, and hickory. With high pecan prices comes increased interest in developing native stands of pecan trees into productive groves. Pictured above are native pecan trees that have just been released from a forest of competing trees. In the background, you can still see some pin oaks (pin oaks hold their brown leaves all winter long) that have yet to be cleared and brush piles waiting to be burned.
Trees that have just been released from the forest are tall and narrow (photo at left). Over the next few years, these trees will take advantage of increased sunlight and start to fill out their crowns and maybe even produce a few nuts. Note that the trees in this native grove are fairly young (under 16 inches DBH). These smaller native trees will respond to fertilizer and sunlight much faster than mature trees (>36 inch DBH), giving this grove a much greater potential for a rapid increase in nut production..
Clearing a new native grove is a lot of work but it still remains the fastest way for expanding your pecan acres. Over the next few months and years, I'll be watching this native grove for signs of further development. Will a ground cover be planted? Will we see cattle grazing under the trees? How soon will we see a nut crop? Only time will answer these questions.
Thursday, January 26, 2012
Kanza produces in drought year
| Kanza nuts: 2010 vs. 2011 |
We ran into a spell of dry weather in 2011 that radically shrank the size of each nut produced by our Kanza trees. In the photo above, the nut on the left was grown in 2010 and was near normal in size, weighing (7.42g). In contrast, the nut on the right is from our 2011 crop. It is much smaller and weighs only 5.57g or three-quarters the weight of the 2010 nut. Using some simple math, I calculated the yield of our Kanza trees if they had produced the same sized nuts in 2011 as they had in 2010. That calculation predicted that we would have harvested 1198 lbs./ac if we had adequate rainfall in 2011. Nut production continues to increase in this young Kanza orchard--the drought of 2011 just made it hard to see.
| Kanza kernels: 2010 vs. 2011 |
Labels:
drought,
kanza,
pecan cultivars
Wednesday, January 25, 2012
Recognizing 'Giles' pecan
| 'Giles' Pecan |
'Giles' nuts are easily identified in the field by an interesting characteristic not shared by other cultivars. 'Giles' nuts are often crooked. In the photo above, notice that the apex of the nut points to the right. In fact, the whole right side of the nut appears shorter than the left side. Crack the nut open and you'll find one kernel half shorter than the other (photo above).
Although every 'Giles' nut on a tree may not be "crooked", the vast majority display this characteristic to some degree. Crooked nuts are not the result of disease or improper fertilization, asymmetrical nut development is controlled genetically. This simple quirk of nature makes 'Giles' one of the easiest cultivars to identify from a nut sample.
Labels:
giles,
pecan cultivars
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