Here’s a video of a presentation that I made at the Pasture Seed Conference in Tasmania:

Presentation Video

The presentation concentrated on some of the advances that have been made in seed production of cool-season grass seed crops.

The slides from the presentation can be accessed here:

Advances in Pasture Seed Production

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Here’s a new article from our seed production research and extension team on trinexapac-ethyl plant growth regulator (PGR) and its effects on seed yield and yield components in red clover (Trifolium pratense L.) seed crops.  The field trials were conducted in the Canterbury region of New Zealand and in seed fields in the Willamette Valley.

Red clover leaf (TG Chastain photo)
Red clover leaf (TG Chastain photo)

This article will appear in an upcoming issue of Agronomy Journal and is a part of our series on PGR tools for use in legume and grass seed production.  The product is marketed around the world as Palisade, Moddus, and several generic products for lodging control and seed yield enhancement in cool-season grass seed crops and legume seed crops.

Key findings of the article:

  • Trinexapac-ethyl was responsible for seed yield increases in red clover ranging from 9 to 15% in New Zealand and Oregon’s Willamette Valley.
  • One contributing factor for the increased seed yield with trinexapac-ethyl was that the PGR increased the number of heads formed in the red clover crop.  Moreover, the PGR reduced the height of the crop canopy and increased penetration of light into the canopy, possibly leading to the increased head production.
  • Timing of trinexapac-ethyl applications to coincide with early stem elongation gave the best seed yields although split applications at stem elongation and bud emergence produced yield increases in Oregon.
  • Seed weight was generally inversely related to yield; trinexapac-ethyl treatments that produced the highest yield also had the lowest seed weight.

The article can be found at the link below:

Anderson, N.P., D.P. Monks, T.G. Chastain, M.P. Rolston, C.J. Garbacik, Chun-hui Ma, and C.W. Bell. 2015. Trinexapac-ethyl effects on red clover seed crops in diverse production environments. Agron. J. 107:951-956.

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The 8th IHSG Conference will be held in Lanzhou, Gansu Province, China from 21 to 24 June 2015.  The conference will be followed by a post-conference tour to the Gansu Hexi Corridor.  Below is a link to the conference registration form:

Registration Form-20140129

Conference Schedule:

Sunday:  Conference Registration

Monday
Session 1. Genetics and Breeding
Session 2. Seed production: achieving high yields and environmental sustainability

Tuesday
Session 3. Endophyte utilization and pests control
Session 4. Seed quality: from field to storage

Wednesday
Session 5. Seed production in developing countries, and extension, tech transfer and training
Business meeting followed by Conference Dinner

Post-Conference Tour

25 to 29 June
More details will follow at the IHSG site (link below) including the announcement of the conference theme and session topics as well as a call for abstracts.

International Herbage Seed Group

IHSG

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Here’s a new article from our seed production research and extension team on the rate and timing of trinexapac-ethyl plant growth regulator (PGR) and its effects on seed yield and yield components in tall fescue (Schedonorus arundinaceus (Shreb.) Dumort.) seed crops.  The field trials were conducted in the Willamette Valley over a 6-year period at Hyslop Farm.

This article will appear in an upcoming issue of Field Crops Research and is a part of our series on PGR tools for use in grass and legume seed production.  The product is marketed around the world as Palisade, Moddus, and several generic products for lodging control in grass seed crops and legume seed crops.

Key findings of the article:

 

  • Trinexapac-ethyl reduced stem length and controlled lodging in tall fescue across six diverse lodging environments.
  • Trinexapac-ethyl consistently increased seed yield in tall fescue, but rate of application had no effect on yield.
  • Timing of trinexapac-ethyl applications had no effect on seed yield.
  • Seed yield increases resulting from trinexapac-ethyl were attributable to greater seed number and harvest index.

 

The article can be found at the link below:

Chastain, T.G., W.C. Young III, C.J. Garbacik, and T.B. Silberstein. 2015. Trinexapac-ethyl rate and application timing effects on seed yield and yield components in tall fescue. Field Crops Research 173:8-13.

 

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Thomas G. Chastain

The Tasmanian Pasture Seed Conference was held in November in Launceston, Tasmania. The conference was hosted by the Tasmanian Institute of Agriculture, the University of Tasmania, private seed companies and agricultural suppliers and banking interests in Australia.

Several local and international speakers made presentations at the conference and it was attended not only by residents of Tasmania but also by seed producers and company representatives from mainland Australia. Major international seed companies and suppliers were present as well as their local counterparts. The conference began with one day of presentations and discussions regarding the state of the Tasmanian herbage seed industry in comparison with international seed production regions as well as a look at the current state of knowledge in herbage seed production. That was followed up a day later by a well-organized tour of farm fields and production facilities.

Monthly rainfall and temperatures for Oregon's Willamette Valley and Launceston, Tasmania (Graphic by T.G. Chastain).  Click to enlarge.
Monthly rainfall and temperatures for Oregon’s Willamette Valley and Launceston, Tasmania (Graphic by T.G. Chastain). Click to enlarge.

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Thomas G. Chastain

Several scales have been constructed for use in assigning developmental stages to crop plants.   The BBCH (Biologische Bundesanstalt, Bundessortenamt und Chemische Industrie) scale is used to ascertain the developmental stages of crops and is based on the Zadoks scale for cereals but has been standardized and extended to many other crops including dicots.

The uniform nature of the BBCH scale has encouraged the wide-spread use of this system by agronomists and by agricultural practitioners alike.  One advantage of the BBCH scale is the simplicity of staging of crop plants because only one scale (with minor modification) is needed for multiple species.

Ten principal stages form the basis for the scale in each crop.  Below is a table showing the adaptation of the scale for grass seed crops.

Stage Description – BBCH scale
0-9 Seed germination/bud development
10-19 Leaf development
20-29 Tiller development
30-39 Stem elongation
40-49 Booting
50-59 Inflorescence emergence/development
60-69 Flowering/pollination
70-79 Seed development
80-89 Seed maturation and harvest
90-99 Senescence

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