Biostimulant Seed Coating Treatments to Improve Cover Crop Germination and Seedling Growth
Biostimulant seed coating formulations were investigated in laboratory experiments for their potential to increase maximum germination, germination rate, germination uniformity, and seedling growth of red clover (<i>Trifolium</i><i> </i><i>pratense</i><i> &l...
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MDPI AG
2020-01-01
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Series: | Agronomy |
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Online Access: | https://www.mdpi.com/2073-4395/10/2/154 |
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author | Yi Qiu Masoume Amirkhani Hilary Mayton Zhi Chen Alan G. Taylor |
author_facet | Yi Qiu Masoume Amirkhani Hilary Mayton Zhi Chen Alan G. Taylor |
author_sort | Yi Qiu |
collection | DOAJ |
description | Biostimulant seed coating formulations were investigated in laboratory experiments for their potential to increase maximum germination, germination rate, germination uniformity, and seedling growth of red clover (<i>Trifolium</i><i> </i><i>pratense</i><i> </i>L.) and perennial ryegrass (<i>Lolium</i><i> </i><i>perenne</i><i> </i>L.) seeds. Red clover and perennial ryegrass seeds were coated with different combinations of soy flour, diatomaceous earth, micronized vermicompost, and concentrated vermicompost extract. Coated and non-coated seeds of red clover and perennial ryegrass were evaluated for germination and growth after 7 and 10 days, respectively. Red clover seed was maintained at a constant 20 °C with a 16/8 h photoperiod, whereas for perennial ryegrass seed, the germinator was maintained at 15/25 °C, with the same photoperiod as red clover. Coated treatments significantly improved germination rate and uniformity with no reduction in total germination, compared to the non-treated controls in red clover. In contrast, for perennial ryegrass, the total germination percentage of all coated seeds was reduced and displayed a delayed germination rate, compared with the non-treated controls. Shoot length, seedling vigor index, and dry weight of seedlings of coated seed treatments of both crops were significantly higher when compared to controls for both species. In addition to growth metrics, specific surface mechanical properties related to seed coating quality of seeds of both species were evaluated. Increasing the proportion of soy flour as a seed treatment binder in the coating blend increased the integrity and compressive strength of coated seeds, and the time for coatings to disintegrate. These data show that seed coating technologies incorporating nutritional materials and biostimulants can enhance seedling growth and have the potential to facilitate the establishment of cover crops in agriculture and land reclamation. |
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language | English |
last_indexed | 2024-12-13T18:08:35Z |
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spelling | doaj.art-5bdc54b65aaa457c9fde35d4064bda492022-12-21T23:36:01ZengMDPI AGAgronomy2073-43952020-01-0110215410.3390/agronomy10020154agronomy10020154Biostimulant Seed Coating Treatments to Improve Cover Crop Germination and Seedling GrowthYi Qiu0Masoume Amirkhani1Hilary Mayton2Zhi Chen3Alan G. Taylor4Cornell AgriTech, Horticulture Section, Cornell University, SIPS, Geneva, New York, NY 14850, USACornell AgriTech, Horticulture Section, Cornell University, SIPS, Geneva, New York, NY 14850, USACornell AgriTech, Horticulture Section, Cornell University, SIPS, Geneva, New York, NY 14850, USACollege of Mechanical and Electrical Engineering, Inner Mongolia Agricultural University, Hohhot, Inner Mongolia 010018, ChinaCornell AgriTech, Horticulture Section, Cornell University, SIPS, Geneva, New York, NY 14850, USABiostimulant seed coating formulations were investigated in laboratory experiments for their potential to increase maximum germination, germination rate, germination uniformity, and seedling growth of red clover (<i>Trifolium</i><i> </i><i>pratense</i><i> </i>L.) and perennial ryegrass (<i>Lolium</i><i> </i><i>perenne</i><i> </i>L.) seeds. Red clover and perennial ryegrass seeds were coated with different combinations of soy flour, diatomaceous earth, micronized vermicompost, and concentrated vermicompost extract. Coated and non-coated seeds of red clover and perennial ryegrass were evaluated for germination and growth after 7 and 10 days, respectively. Red clover seed was maintained at a constant 20 °C with a 16/8 h photoperiod, whereas for perennial ryegrass seed, the germinator was maintained at 15/25 °C, with the same photoperiod as red clover. Coated treatments significantly improved germination rate and uniformity with no reduction in total germination, compared to the non-treated controls in red clover. In contrast, for perennial ryegrass, the total germination percentage of all coated seeds was reduced and displayed a delayed germination rate, compared with the non-treated controls. Shoot length, seedling vigor index, and dry weight of seedlings of coated seed treatments of both crops were significantly higher when compared to controls for both species. In addition to growth metrics, specific surface mechanical properties related to seed coating quality of seeds of both species were evaluated. Increasing the proportion of soy flour as a seed treatment binder in the coating blend increased the integrity and compressive strength of coated seeds, and the time for coatings to disintegrate. These data show that seed coating technologies incorporating nutritional materials and biostimulants can enhance seedling growth and have the potential to facilitate the establishment of cover crops in agriculture and land reclamation.https://www.mdpi.com/2073-4395/10/2/154seed coatingcover cropvermicompostbiostimulantgrowth enhancement |
spellingShingle | Yi Qiu Masoume Amirkhani Hilary Mayton Zhi Chen Alan G. Taylor Biostimulant Seed Coating Treatments to Improve Cover Crop Germination and Seedling Growth Agronomy seed coating cover crop vermicompost biostimulant growth enhancement |
title | Biostimulant Seed Coating Treatments to Improve Cover Crop Germination and Seedling Growth |
title_full | Biostimulant Seed Coating Treatments to Improve Cover Crop Germination and Seedling Growth |
title_fullStr | Biostimulant Seed Coating Treatments to Improve Cover Crop Germination and Seedling Growth |
title_full_unstemmed | Biostimulant Seed Coating Treatments to Improve Cover Crop Germination and Seedling Growth |
title_short | Biostimulant Seed Coating Treatments to Improve Cover Crop Germination and Seedling Growth |
title_sort | biostimulant seed coating treatments to improve cover crop germination and seedling growth |
topic | seed coating cover crop vermicompost biostimulant growth enhancement |
url | https://www.mdpi.com/2073-4395/10/2/154 |
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