Fall Invaders
Great information from Elizabeth Killinger, UNL Extension, regarding keeping fall invaders out of our homes!
Warm days and cool nights signal that fall is here. The pumpkins are ready to be picked, the leaves will soon be in full color display and the wolf spiders and crickets will start migrating into the home. Not exactly what you had in mind for a peaceful fall? Find out how to start preparing now to keep these invaders from making themselves at home in your home.
When the temperatures start dipping, the pests start coming in. Nobody really wants to spend the winter outdoors and insects are no different. Some of the more common nuisance pests, or occasional invaders, include boxelder bugs, multicolored Asian Lady Beetles, millipedes, and crickets. These pests don’t do any harm inside the home; they are just looking for a cozy place to spend the winter.
Proper identification of the insect will assure the proper control method. Boxelder bugs are black and orange true…
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National 4-H Week!
Did you know that more than 6 million young people across the United States are celebrating National 4-H Week October 6-13, 2013?! Research has proven that participation in 4-H has a significant positive impact on young people. Recent findings from the Tufts University 4-H Study of Positive Youth Development indicate that, when compared to their peers, young people in 4-H are:
1) Nearly 4 times more likely to contribute to their communities
2) Two times more likely to pursue healthy behaviors
3) Two times more likely to engage in Science, Technology, Engineering and Math (STEM) programs in the out-of-school time.
4-H is the largest youth development organization in the world! It’s a community of seven million young people across the globe learning leadership, citizenship, and life skills. In the U.S., 4-H programs are implemented by the 109 land grant universities and the Cooperative Extension System through their 3,100 local Extension offices across the country. Overseas, 4-H programs operate throughout more than 50 countries.
To learn more about 4-H locally, contact our office at 402-762-3644 or on our webpage. We would like to visit with you about the program and how you and your youth could become involved! We’re always looking for potential volunteers and program ideas. You can also learn more about 4-H at the State and National levels.
Challenge-Wear a 4-H Shirt and Post it on Facebook or Twitter:
When to Post: October 6 to 12, 2013. Post your pictures then check back to “like” your favorite photos! Official voting ends October 13th at midnight.
How to Enter: Post your picture via:
1) Facebook: post to the event titled: 2013 Wear A 4-H Shirt
2) Twitter: use hash tag #weara4Hshirt
Be sure to tag your photo with your category entry! The picture categories:
1) Most People in One Photo
2) Nebraska Landscapes
3) Fun and Food
The best picture from each category will receive a prize!
What do Mycotoxin Levels Mean?
Last week I was receiving text messages from a few of our farmers about corn harvest results from damaged corn. Low levels of mycotoxins are being detected in samples thus far, thankfully.

A reminder, the presence of mold does not automatically mean a mycotoxin is present. The fungi producing mold have the potential to produce mycotoxins.
Here’s What the Numbers Mean…
For aflatoxin, the U.S. Food and Drug Administration has set a recommended limit of 20ppb (parts per billion) for dairy animals, 100 ppb for breeding animals, and 300 ppb for finishing animals. To put this is simpler terms, a sample would need 20 affected kernels out of a billion kernels to be at the legal limit for dairy animals. So far, most samples are coming up at 5-6ppb which is very low.
For fumonisin, 20ppm (parts per million) is the recommended limit set by FDA for swine, 30ppm for breeding animals, 60ppm for livestock for slaughter, and 100ppm for poultry for slaughter. So, this would mean 20 affected kernels in a million kernels could cause a problem for swine. Again, our levels are averaging closer to 5ppm right now which are low.
Deoxynivalenol (DON) also known as vomitoxin is another mycotoxin being tested from grain samples. This mycotoxin causes reduced weight gain and suppresses animal feeding, especially in swine. Concentrations greater than 10ppm can result in livestock vomiting and totally refusing feed. FDA has recommended that total feed levels of DON not exceed 5 ppm for cattle and chicken, and 1 ppm for swine.
It is very important to sample from several places in the grain to get an accurate sample for damage and mycotoxins. It is also very important that black light tests are not used to determine the presence or absence of mycotoxins. Some of these mold fungi produce a compound that fluoresces under black light, but research has shown that this quality does not consistently predict the presence of mycotoxins (often provides false positives). Finally, before any of your storm-damaged corn is put in a bin, call your insurance agent out to get a sample!
Protecting Your Health with a Mask
There is some great information from the University of Nebraska Med Center on what types of masks to use to protect your health from molds and potential mycotoxins. Some people tend to have more sensitive immune and respiratory systems than others, so I’d highly recommend checking out these short videos.
Feeding Storm Damaged Corn; a Few Thoughts from a Veterinarian
With the recent sprouting of grain on the ears and with more producers now learning what percent loss their crop insurance is determining for each field, I felt it would be good to talk about feeding this damaged grain again. This post is written by Dr. Dee Griffin, DVM at UNL’s Great Plains Veterinary Education Center at Clay Center. I appreciate Dee’s willingness to provide this information from a Veterinarian’s perspective. 
Also a note, to date we have not found Aspergillus in our hail damaged fields. The grain molds we are seeing are Diplodia and Fusarium. Diplodia does not have the potential to produce mycotoxins. Fusarium has the potential of producing fumonisin, vomitoxin, or DON. You can bring forage samples to Husker Harvest Days this coming week to the IANR building and have them tested that day for nitrates for free if you wish.
Dr. Griffin writes: Any time a growing grain producing plant is damaged there is a potential for changes in the plant or grain on the plant contaminated with fungus/molds to grow. The most common change in stressed plants is the accumulation of nitrates. Aspergillus or Fusarium will be the most likely fungi to be contaminating harvested grain from storm damaged corn in our area.
It is really important to know that most molds are not toxic. Therefore just because mold growth is observed doesn’t mean the feedstuff will harm livestock. Even though a mold may not be toxic it can still cause feed refusal. Not all livestock species are equally sensitive to mold contamination and not all production groups are equally sensitive. For instance pregnant and young animals are more sensitive than mature non-pregnant animals.
Nitrate accumulation in stressed plants can cause be harmless or cause serious harm depending on:
- the level of nitrate in the feed harvested from stressed plants,
- on the life stage of the animal,
- and on the species of animal.
Nitrates accumulate in the forage portion of the plant, so nitrates are not a concern in grain harvested from stressed plants. Additionally, it is important to know nitrate levels will always be highest in the bottom part of the plant and lowest in the top foliage. Nitrate testing is simple and reasonable quick. Your local UNL Extension Educator can help you locate the nearest facility that does forage nitrate testing.
Feed containing nitrate levels less than (<) 1000 parts per million (ppm) seldom are associated with an animal health concern. Feed containing nitrate levels greater than (>) 1000 ppm may be a concern in younger animals and levels >2000 ppm should not be fed to pregnant cattle. Feeder cattle are reasonably resistant to nitrates but feeds containing >4000 ppm should not be fed to any animals.
Molds in corn grain of concern could be either Aspergillus or Fusarium. Your UNL Extension Educator can be a great help in identifying mold growing on ears of your storm damaged corn before the grain is harvested. Both of these fungi are potentially dangerous when found in livestock feed. Toxins produced by molds are extremely stable, therefore if a significant level is found, the level will not decrease over time. Silage produced from damaged plants and grain harvested from mold infested plants is potentially a problem.
Good silage management is critical to lessen the likely hood of continued mold growth after ensiling. Proper packing to remove oxygen and improve fermentation which ensures the pH will be below 4.5 is critical.
You can’t look at harvested grains from storm damaged fields and visually identify mycotoxins. Corn grain from storm damaged fields can … and mostly likely should … be tested for mycotoxins before feeding to livestock. Your local UNL Extension Educator, nutritionist or veterinarian can help with mycotoxin testing.
Proper sampling is crucial to getting reliable results back from the laboratory. A “grab sample” is not adequate. The sample submitted to the lab should be representative of the entire load, bin, pit or pile of feedstuff being evaluated.
The steps are simple
- If sampling a field before harvest, sample at least two dozen ears that appear to have mold growth and submit all the ears to the laboratory for mycotoxin evaluation
- If sampling after harvest, take multiple samples uniformly from throughout the silage or grain in question
- The sample should be taken from what would be used in a single load of feed
- That means, if five loads of feed could be made from a 50,000 lb semi-load of corn, collect not less than five samples from the semi-load of corn
- The sample should be based on sample volume not weight
- For instance, collect “coffee can” size samples
- Mix all the all samples together that were collected from the feed in question
- For instance, if 10 coffee can size samples were collected from across the face of a silage pit, pour all 10 samples onto a plastic sheet and thoroughly mix them together
- Next, collect a single sample from within the 10 mixed samples
- Submit the single sample to the laboratory
The laboratory results usually will provide some recommendations for how the feedstuff can be used. There is an old saying, “Dilution is the solution …” meaning in this consideration, that many feedstuffs that contain higher levels of mycotoxin than would be acceptable, might be usable if a sufficient amount of non-mycotoxin contaminated feedstuff is used to dilute the mycotoxin. Your UNL Extension Educator, nutritionist or veterinarian can help evaluate the possible uses of a damaged feedstuff containing unacceptable levels of a mycotoxin.
Sprouting Corn Kernels on Hail-Damaged Ears
The latest event in the Clay County storm occurring August 1st has become germination of “good” kernels left on the ears that have been damaged by
hail. This event of kernel germination prior to harvest is also called “vivipary”.
Typically we wouldn’t see this occur before black layer because of the hormonal balance within the kernels-particularly the balance between gibberellin and abscisic acid. According to a study by White, et. al (2000), Gibberellin production with the lack of ABA allowed for kernel germination while less Gibberellin and more ABA deterred kernel germination. At full maturity, very little ABA is left in the kernel (in both corn and soybeans) which allows them to germinate in correct conditions after harvest. But this can also allow for sprouting in the ear after black layer when corn is still drying down, particularly in tight-husked, upright ears with conditions of high humidity or rain after black layer. Sprouting under those conditions typically occurs at the base of the ear first.
Why are kernels sprouting before we’ve reached black layer?
That’s a good question. I haven’t found much in the way of scientific explanation other than the thought that the hormonal balance of the kernels can be altered by physical damage from hail, bird feeding, and grain mold. Some ear mold fungi also produce gibberellic acid which can lead to a hormonal balance shift in these ears stimulating germination. I also haven’t observed that this is hybrid-dependent and am finding as much as 25-50% sprouted ears in various areas of hail-damaged fields.
What can you do now?
Make sure your crop insurance adjuster is aware of the situation and make sure to submit samples for kernel damage due to mold, sprouting, and check for mycotoxins prior to harvest.
The local co-op may or may not choose to accept the load depending on percent damage and the standards they need to follow. If the load is rejected, contact your crop insurance agent to determine your next step. DO NOT bin the grain on your farm until you contact your insurance agent as they have specific rules that need to be followed in the case of grain rejected due to mycotoxins or kernel damage from storms.
Sprouted kernels lead to higher kernel damage and more fines in a load. Keys for harvest will include harvesting early, getting corn dried down to 14%, potentially drying at a high temperature to kill the sprout, screening out fines, and monitoring stored grain closely for hot spots, mold, and additional sprouting grain.
You can also choose not to take it to grain right now, and honestly, that may be the best option for several of the hail-damaged fields. Silage is still an option and it would be recommended to sample the green chop going into the silage pit for potential mycotoxins. Mycotoxin level does not change with fermentation so cattle feeders would have a good idea of any mycotoxin levels if sampling was done in this manner. See this post for additional information on making silage.
Additional information:
Du-Pont Pioneer. (2007). Field Facts: Pre-mature Germination of Corn Kernels.
Nielsen, R.L. (2012). Premature Corn Kernel Sprouting (aka Vivipary). Corny News Network, Purdue University.
White et. al. (2000). Gibberellins and Seed Development in Maize. II. Gibberellin Synthesis Inhibition Enhances Abscisic Acid Signaling in Cultured Embryos. Plant Physiology Vol. 122 no. 4 pg. 1089-1098.
Wiebold, B. (2009). Wet Weather Can Cause Seeds to Sprout before Harvest. Integrated Pest & Crop Management Newsletter, Univ of Missouri.
Extent of Storm Damage Visual
This map came from Kansas State University in a newsletter where they were talking about the vegetation differences from the Drought of 2012 to 2013 in Kansas. A colleague shared this with me pointing out how obvious the storm in Clay County, NE is on this map. Look above Kansas to the brown area-that’s the LOSS of vegetation we have right now in Clay County which is quite extensive-and neat how it’s captured unexpectedly on this map.

Rural Futures Conference
Do you have a passion for building strong and resilient rural communities? Do you think about the future and what is in store
for rural people and places? If so, I’d encourage you to plan on November 3-5, 2013 at The Cornhusker, A Marriott Hotel in Lincoln, Nebraska for the 2013 Rural Futures Conference and participate in the dialogues around these very issues.
The theme for the 2013 Rural Futures Conference is Beyond Boundaries, which encourages all of us to step beyond our typical boundaries and work together to create positive rural futures. While moving beyond boundaries can be challenging and even ominous, it also provides the unique opportunity to implement a foundation of collaboration that can impact the future of rural people and places. The upcoming conference will celebrate the importance of rural and create energy and enthusiasm for new and innovative ways to address complex opportunities and challenges. From University faculty, staff and students to community citizens and organizational partners, don’t miss the opportunity to transcend boundaries and collaboratively make a difference.
One of the greatest resources in any organization or community is its people. When we think about rural places, there is no doubt that the people and leadership in rural America is a driving force for progress. There are several opportunities for you to be involved in and even contribute content to the 2013 Rural Futures Conference. We encourage you to share your knowledge and expertise at the conference to help us explore new ideas, discover synergies, and facilitate partnerships. Please consider being involved in one or more of these opportunities during the conference, and encourage others to become involved as well.
Quick Pitch Spotlight: Conference participants rapid fire their “big idea” for rural people and places.
Community Questions: Communities of place or interest pose questions that stimulate collaboration and potential research opportunities.
Faculty and Partner Poster Session: Participants display current work or research relevant to the rural futures.
Registration opens September 1, and will remain open until the seats are filled. Registration closed early last year because maximum capacity was reached, so register early to ensure your spot. For more information or to register, visit ruralfutures.nebraska.edu/conference.
For the latest information on the 2103 Rural Futures Conference, follow Rural Futures on Twitter at twitter.com/rural_futures (hashtag: #RFC2013) or Facebook at facebook.com/ruralfutures
Soybean Stem Borer
Great information on Soybean Stem Borer from Brandy VanDeWalle’s blog!
Several years ago I received a call from a grower who had lots of soybeans that were lodged; it was confirmed their fields had the soybean stem borer, which was one of the first times it was reported in Nebraska in recent years. This year at the Soybean Management Field Day, entomologists reported that it has now moved north of the interstate and into York County as well.
UNL extension entomologists, Bob Wright and Tom Hunt wrote an article last year on CropWatch providing the following information. This beetle (Dectes texanus texanus) has been moving into Nebraska from north central Kansas over the last decade.
The adult is a gray, elongate beetle about 0.5 inch long with antennae that are longer than the body. Females lay eggs from late June to August on various plants, including cocklebur, giant ragweed, sunflower, and soybean. On soybean, eggs are primarily laid…
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