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녹비용 헤어리베치 품종 ‘청풍보라’

A New Hairy Vetch (Vicia villosa Roth) Variety, ‘Cheongpoogbora’ for Green Manure

Korean Journal of Breeding Science 2014;46(3):318-322.
Published online: August 31, 2014

National Institute of Crop Science, Suwon 441-857, Korea

*Corresponding Author (E-mail: jhku@korea.kr, Tel: +82-31-290-6743, Fax: +82-31-290-6742)
• Received: June 10, 2014   • Revised: August 3, 2014   • Accepted: August 7, 2014

© 2014 by the Korean Society of Breeding Science

This is an Open-Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/3.0) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.

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  • Effects of Green Manures and Complemental Fertilization on Growth and Nitrogen Use Efficiency of Chinese Cabbages Cultivated in Organic Systems
    Jung-Lai Cho, Nan-Hee An, Hong-Sik Nam, Sang-Min Lee
    Korean Journal of Organic Agricultue.2018; 26(4): 731.     CrossRef

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A New Hairy Vetch (Vicia villosa Roth) Variety, ‘Cheongpoogbora’ for Green Manure
Korean. J. Breed. Sci.. 2014;46(3):318-322.   Published online September 30, 2014
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A New Hairy Vetch (Vicia villosa Roth) Variety, ‘Cheongpoogbora’ for Green Manure
Korean. J. Breed. Sci.. 2014;46(3):318-322.   Published online September 30, 2014
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A New Hairy Vetch (Vicia villosa Roth) Variety, ‘Cheongpoogbora’ for Green Manure
Image Image
Fig. 1. The field photo of Cheongpoongbora (left) and Welta (right) at the Suwon in May 6, 2009.
Fig. 2. Pedigree diagram of ‘Cheongpoongbora’.
A New Hairy Vetch (Vicia villosa Roth) Variety, ‘Cheongpoogbora’ for Green Manure

Morphological characteristics of ‘Cheongpoongbora’.

Variety Leaflet shape Leaf color Stem hair density Flower color Seed coat color Seed shape

Cheongpoongbora Oblong Medium green Medium Blue-violet Black Spherical
Welta Oblong Dark green High Blue-violet Black Spherical

Overwintering rate of ‘Cheongpoongbora’ tested in Suwon, Iksan, Milyang, and Yeongdeok regions from 2008 to 2009.

Regions Seeding date Cheongpoogbora (%)
Welta (%)
2008 2009 Mean 2008 2009 Mean

Suwon Oct. 2 100 95.5 97.8 92.1 96.0 94.1
Iksan Oct. 13 83.9 93.2 88.6 73.3 94.9 84.1
Milyang Oct. 8 100 100 100 100 100 100
Yeongdeok Oct. 13 85.2 94.8 90.0 75.0 82.1 78.6
Mean - 92.3 95.9 94.1 85.1 93.3 89.2

Flowering season of ‘Cheongpoongbora’ tested in Suwon, Iksan, Milyang, and Yeongdeok regions from 2008 to 2009.

Regions Seeding date Cheongpoogbora (%)
Welta
2008 2009 Mean 2008 2009 Mean

Suwon Oct. 2 May 7 May 6 May 6 May 20 May 11 May 15
Iksan Oct. 13 May 5 May 12 May 10 May 13 May 20 May 16
Milyang Oct. 8 April 23 April 17 April 20 May 10 May 8 May 9
Yeongdeok Oct. 13 April 27 April 14 April 20 May 13 April 19 May 1

Mean - May 1 April 27 April 29z May 14 May 7 May 10y

The days calculated from January 1 to flowering date is significantly different between ‘Cheongpoongbora’ and ‘Welta’ by t-test

Dry matter yield of ‘Cheongpoongbora’ tested in Suwon, Iksan, Milyang, and Yeongdeok regions from 2008 to 2009.

Varieties Suwon Iksan Milyang Yeongdeok Mean Index (A/B × 100)

Cheongpoogbora (A, MT/ha) 5.45az 4.49a 5.75a 5.12a 5.20a 106
Welta (B, MT/ha) 5.33a 3.69b 5.71a 4.93a 4.92b 100

Means with the same letters within columns are not significantly different at 5% probability level by least significant difference

Nitrogen yield of ‘Cheongpoongbora’ tested in Suwon, Iksan, Milyang, and Yeongdeok regions from 2008 to 2009.

Varieties Suwon Iksan Milyang Yeongdeok Mean Index (A/B × 100)

Cheongpoogbora (A, kg/ha) 174az 143a 180a 166a 166a 106
Welta (B, kg/ha) 171a 120b 174a 158a 156b 100

Means with the same letters within columns are not significantly different at 5% probability level by least significant difference

Table 1. Morphological characteristics of ‘Cheongpoongbora’.
Table 2. Overwintering rate of ‘Cheongpoongbora’ tested in Suwon, Iksan, Milyang, and Yeongdeok regions from 2008 to 2009.
Table 3. Flowering season of ‘Cheongpoongbora’ tested in Suwon, Iksan, Milyang, and Yeongdeok regions from 2008 to 2009.

The days calculated from January 1 to flowering date is significantly different between ‘Cheongpoongbora’ and ‘Welta’ by t-test

Table 4. Dry matter yield of ‘Cheongpoongbora’ tested in Suwon, Iksan, Milyang, and Yeongdeok regions from 2008 to 2009.

Means with the same letters within columns are not significantly different at 5% probability level by least significant difference

Table 5. Nitrogen yield of ‘Cheongpoongbora’ tested in Suwon, Iksan, Milyang, and Yeongdeok regions from 2008 to 2009.

Means with the same letters within columns are not significantly different at 5% probability level by least significant difference