Tuesday, August 31, 2010

FOUNTAIN GRASS CONTROL IN TURF



Nick Christians
Aug. 31, 2010

I have had several calls and have received a few samples of what people describe as a foxtail-like weed growing in lawns that form clumps of grass that tend to shred at the tips when they are mowed.

These are Fountain Grass (Pennisetum alopecuroides). This is an ornamental grass that self seeds into lawns. It has a very tough blade that does not mow cleanly. It shreds at the tip. It also produces a foxtail-like seed head when mowed.

Here is a picture of Fountain Grass on a berm in my lawn and some of the surrounding patches. I also included a picture of a sample that I received last week from Keokuk.

How do you control it? Zac Reicher did a lot of work on this when he was at Purdue. The best way to kill it is Roundup, but this has to be done non-selectively. Quinclorac was the best postemergence selective material in his trials. For an article on this work, see the article by Voigt and Reicher, 2010:

http://archive.lib.msu.edu/tic/gcman/article/2010feb84.pdf



Here is Fountain Grass used as an ornamental in my yard.






Here is Fountain Grass that has escaped into my lawn





Here is the sample from Keokuk.



Monday, August 30, 2010

New Turfgrass Disease Culprits

This article comes to us from David Maubach, Senior Sales Specialist, BASF Professional Turf & Ornamentals.

The presence of several new turfgrass diseases has increased on U.S. golf courses in recent years. Three new diseases in particular – Pythium root dysfunction, brown ring patch and rapid blight – are a challenge for course superintendents. Fortunately, researchers have made headway regarding how to detect and treat these destructive new diseases.

Tackling New Diseases
New turfgrass diseases can evolve for a number of reasons and several factors contribute to the prevalence of disease such as geography, moisture and temperature.

Stress caused by heat, drought and excess moisture can weaken turf and make it more prone to disease. Put simply, healthy turf is less susceptible to disease. The challenge with golf courses, particularly on the greens, is that turfgrass is kept short by plant growth regulators and/or frequent mowing, which causes stress.

Players expect superintendents to provide the best of both worlds – short grass and healthy turf. It is a difficult balance, especially when new diseases emerge and superintendents do not know how to treat it.

University and industry researchers are addressing these three emerging problem diseases. To avoid being caught off-guard, superintendents should take time to learn more about these diseases. Doing so will help identify and treat the diseases, and in some cases, avoid them altogether.

Pythium Root Dysfunction
Discovered in North Carolina in 1994, Pythium root dysfunction attacks putting greens and is limited to newly constructed greens less than eight years old. It is most commonly found in the Southeast, but also occurs in Midwestern areas with harsh summers. Bentgrass is most susceptible to the disease, which occurs on turf stressed from one or more of the following factors: high heat, repeated close mowing, low fertility schedules and drought.

Pythium root dysfunction causes the roots and crown of turfgrass to turn brown or black. The symptoms are most visible during the summer, but the disease actually spreads during spring and fall, when it is cool and wet.

Because symptoms are less prevalent on plants with a strong root system, there are several cultural practices superintendents can undertake to minimize damage caused by Pythium root dysfunction. Root enhancement techniques – specifically aerification, nutrition supplements, verticutting and reduced irrigation – are helpful in counteracting symptoms of the disease.

Irrigation management is also extremely important. Clay and compacted soils are more likely to harbor Pythium root dysfunction because of reduced drainage.

It is less difficult and less expensive to prevent Pythium root dysfunction than it is to try to cure it. Fungicides such as pyraclostrobin and triticonazole are two of the most effective at preventing the disease.

Dr. Lane Tredway, turfgrass pathologist at North Carolina State University, is one of the foremost experts on Pythium root dysfunction. To learn more about his research and information on NC State’s Center for Turfgrass Environmental Research & Education, visit www.turffiles.ncsu.edu.

Brown Ring Patch
Formerly known as waitea patch, brown ring patch has been reported sporadically throughout the Midwest and is a mounting problem in Southern California. Occurring primarily on greens with high annual bluegrass (poa annua) populations, the disease is prevalent in warm and moist conditions.

Initial symptoms of brown ring patch are thin, yellow, concentric rings several inches in diameter that turn brown under hot or wet conditions. Once established, brown ring patch can quickly damage turfgrass. Temperature plays a significant role in regards to whether or not brown ring patch occurs. The disease does not spread in hot or cold conditions, but rather during times of mild (mid-60s to low-80s F) temperature.

Cultural control options of aerification and higher mowing heights are sometimes used to combat brown ring patch. Alternating among several fungicides – pyraclostrobin, propiconazole and triticonazole – has been an effective treatment.

Dr. Frank Wong, assistant plant pathologist at the University of California-Riverside, is considered one of the top brown ring patch researchers. For more information, visit UC Riverside’s Department of Plant Pathology and Microbiology at www.plantpathology.ucr.edu.

Rapid Blight
Rapid blight occurs in the fall and winter, affecting several annual winter grasses used to overseed Bermudagrass. Affected species include ryegrass, annual bluegrass and poa trivialis. It is primarily seen in the Southwest, including Nevada, Arizona and Southern California, as well as on coastal areas in the Southeast and Northeast. Perennial grasses are not affected by rapid blight.

The disease is associated with a marine organism and cases of rapid blight rise significantly in areas where superintendents use reclaimed water or water with high salinity for irrigation. The disease can occur on any area that has been overseeded, but is usually treated only on putting greens.

Dr. Mary Olsen, plant pathology specialist for the University of Arizona-Tucson, has confirmed that rapid blight is caused by an obscure microorganism that prior to its discovery in turf was known to infect in marine plants such as seagrass, diatoms and algae.

Rapid blight shows itself as water-soaked, slightly sunken and darker looking turf. It turns yellow and dies in patches.

The primary cultural control option is to use better quality irrigation water, avoiding reclaimed water, if possible. Pyraclostrobin provides the most effective preventative control, with mancozeb as a less effective alternative.

Olsen is a leading rapid blight researcher. The University of Arizona’s Division of Plant Pathology and Microbiology is available on the Web at http://ag.arizona.edu/PLP.

Prevention, Education Key
To avoid being caught off guard by new diseases, it is important to stay educated on new diseases, be consistent with preventative tactics and devote time to detection efforts.

Part of being proactive is keeping up with the latest research and information about turfgrass disease. Superintendents who collect and absorb background information are better prepared when they encounter a problem – they know what they are dealing with and who can help them.

Some superintendents are quick to write off an undiagnosed problem as being untreatable by a particular fungicide they have already applied, so they simply retreat with a different product. Instead, they should take a turf sample and send it in to a diagnostics lab.

Fungicide manufacturer representatives, university extension personnel and other course superintendents are also good sources of information. It is wise to seek the help of others if they encounter an abnormality they do not recognize.

It may seem like common sense, but it is important for superintendents to walk their courses every day to keep an eye out for abnormalities. New diseases such as pythium root dysfunction, brown ring patch and rapid blight can cause problems quickly if undetected.

David Maubach
Senior Sales Specialist
BASF Professional Turf & Ornamentals

Friday, August 27, 2010

What's the Web Saying About Turfgrass: 8-27-10 Edition

This week brought a break from the rain and we were treated to cooler temperatures. It's looks as though things will heat up again next week. Until then, here are some turf and golf related thinks.

iPhone at Work: Certified Golf Course Superintendent. How does a golf course superintendent use his iPhone to get the job done and what iPhone apps help get him through his day? Here’s one superintendents answer and as a small token of thanks we’re sending him a $20 iTunes gift certificate. http://www.tipb.com/2010/08/11/iphone-work-certified-golf-superintendent/

Golf's biggest problem-Women may be solution. The overwhelming problem facing the golf industry is finding new players while retaining those who already play. Money and time have been spent to find a fix. Just not often enough to generate a pattern of growth rather than decline. The Right Invitation makes the case for additional investment in order to attract and retain women customers and that these women are the source of growth for the golf industry. http://frontpagegolf.com/News/News2010/Golfsbiggestproblem081510.html

The History of Golf Course Superintendents. This is a great video for anyone that loves Golf. As a matter of fact, it is great even if you dont like Golf, but would like to learn some things that didn’t know. http://golf-game-equipment.com/?p=945

Hey golf gods, what did Dustin Johnson ever do? This letter of complaint is for the gods of golf: Which one of you has Dustin Johnson ticked off? You've shown this kid no mercy. What next, the rack? http://www.usatoday.com/sports/columnist/lopresti/2010-08-16-lopresti-johnson-gods-of-golf_N.htm

Nuisance ants on golf courses. Mound-building nuisance ants have become one of the most troublesome pests in golf course maintenance. This article provides an update on our current USGA-funded research project concerning biology and pro-active management of turf ants on golf courses. http://usgatero.msu.edu/v02/n22.pdf

Enemy Number One to Black Cutworms. Superintendents can feel alone in their battles to protect golf courses from the ravages of insect invasion. They are not - Mother Nature is on their side. University of Kentucky entomologist, Dr. Dan Potter, and his talented group of graduate students, investigate how natural enemies of turf insects can help limit turf damage to golf courses. One such enemy is a type of virus that attacks black cutworms-and it works. http://turf.lib.msu.edu/gsr/article/nus-potter-8-9-10.pdf

Marcus Jones
Graduate Research Assistant

Thursday, August 26, 2010

PYTHIUM BLIGHT IN LAWNS

Nick Christians
August 26, 2010

I have looked at a number of lawns this year that looked like they had been damaged by Pythium Blight. I was always there after the fact, however, and was unable to diagnose it for sure. Pythium on golf course turf is a common problem, but it is fairly rare on lawns.

Here are some pictures from Jorden Kolpin in the plant and insect diagnostic clinic at Iowa State. These are pictures showing the mycelia early in the morning on Kentucky bluegrass lawns in Iowa. These have been verified to be Pythium by the lab.


This disease is also called "Cottony Blight". You will be able to see why in the pictures. The mycelia generally go away in mid day. Jorden makes a positive identification by looking under the microscope. The individual hypha lack cross walls and spores of the Pythium are generally present.

The hot, wet conditions are what brought this on. Wet conditions, with night temperatures above 68 F and hot days are required for its development. The problem should be over for the season, but watch for it next year.





Wednesday, August 25, 2010

Goodbye Warm Summer Nights

Although you might not have been aware, Central Iowa had quite the streak going. June 6 was the last time the nighttime temps went below 60 degrees…that is until last night. Most of the state was greeted to early morning temperatures in the low to mid-50’s this morning. Some northern locations even saw temperatures dip in the 40’s. A cool reminder that fall conditions and improved growing conditions are upon us.

The weather this summer has been unusual to say the least. Most of the readership would probably use a different adjective to describe the weather but I’ll stick to “unusual” (This is a PG rated blog site after all). The consecutive day’s streak of nighttime temperatures above 60 degrees officially ends at 79 days. This falls just short of the record set back in 1983 when Central Iowa ran up a streak of 81 days. Good bye and good riddance. Don’t come back until next year.

Even with the cooler temperatures there are still disease and insect pressures that continue to cause problems. We have quite a bit of type II fairy ring working at our research station. Type II fairy rings have only a band of dark green turf, with or without mushrooms present in the band. On areas that are mowed frequently (greens and tees), mature mushrooms may never be observed but the "button" stage may be present at ground level. These rings have coalesced together and cover a fairly large area of turf but they have yet to cause any damage.

















We also have noticed a tremendous increase in bird activity lately as they hunt after black cutworms that are feeding on our green and fairway height creeping bentgrass. I was able to find this sample by digging through a wedge I sampled from a putting green. I was surprised to observe just how deep into the soil profile the tunnel went.


















Sand bunkers continue to make news as a Connecticut man was arrested in part for taking a joyride on a golf course which caused an estimated $10,000 worth of damage. Maintenance workers arrived at work to find a car in the greenside bunker on the eighth hole. There hasn’t been any word if local rules deemed it a waste bunker allowing golfers to ground their club. Maybe we can get a ruling from the PGA on this.

Marcus Jones
Graduate Research Assistant

Tuesday, August 24, 2010

TURF RECOVERY FROM FLOOD DAMAGE

Nick Christians
Aug. 24, 2010

These two pictures are both from the intramural field on ISU campus. The first one is from last November. It shows a strip of warm season grasses that have been planted on the steam tunnel that runs through the area. They include bermudagrass, zoysiagrass, and buffalograss. They are all dormant as would be expected in November. The Kentucky bluegrass/perennial ryegrass turf is green.




Now look at this picture taken yesterday, Aug. 23, 2010, approximately two weeks after the flood. This area was completely under water for at least 3 days. The bluegrass/rye is dead (although I think the rhizomes of the bluegrass are alive) and the warm-season grasses have recovered. This is a good demonstration of how well warm-season species can take flooding.

Monday, August 23, 2010

Turfgrass Mathematics Around the World

Some of the best parts of my internship experiences are actually learning how to use what I have learned in school. Being able to fully begin to realize the application of my years of schooling and hours of studying for tests makes me truly appreciate my education.

Learning turfgrass identification, and how to read soil tests all seemed like I was just studying while in school. Now that I have begun to work with various types of grasses, my ability to identify different species has become very handy. I have also worked with the superintendents here on interpreting soil tests and learning how they make fertility adjustments. But what I believe to be one of the greatest skills I learned in school is all the calculations used in managing turfgrass.

Calibrating a sprayer or fertilizer spreader was a skill I really got to practice a lot while on my internships and it was a great way for me to apply what I had learned in school, and finally get some hands on experience with performing the calibrations. Ever since I took Dr. Christians Hort 351 Fundamentals of Turfgrass Management I, and was introduced to his book, I have not gone to any internship without taking the book along.

While I have been in Hong Kong, I have also had to adapt to using the International System of Units (SI) or Metric System. When I first came here it was unusual for me to think of temperatures being 32 C degrees as hot (89.6 F) or to be able to think of our mower heights in millimeters. I now have to think more about if a 12mm mower should be used for tees, green surrounds, fairway step-cut, par-3 fairways, or tee banks (0.4724 inches, used for green surrounds.)

I would encourage all superintendents who have interns, to ask them to perform chemical calibrations and calculations, and work with students on learning how to do it properly. Not only does this help the intern be able to learn a great skill, but also it teaches them about responsible chemical application.

For those interested, here are some useful conversions and measurements I have become familiar with while using the SI system:



It may be a great teaching tool to challenge interns to perform calibrations in both United States Customary Units and in International System of Units. If you are interested in more conversions, here are some great sites I have found:

http://www.wolframalpha.com/ (this is by far my favorite math/conversion related site)

http://www.sciencemadesimple.com/conversions.html

http://www.onlineconversion.com/

For those of you with Windows Vista or Windows 7, there are also many Gadgets available for download that make conversions on your desktop incredibly easy.

Damian Richardson