Skip to main navigation Skip to main content

Korean. J. Breed. Sci. : Korean Journal of Breeding Science

OPEN ACCESS
ABOUT
BROWSE ARTICLES
EDITORIAL POLICIES
FOR CONTRIBUTORS

Articles

Article

국내 육성 품종별 숙지황의 품질 특성

김예진1, 한신희1, 마경호1, 홍충의1, 한종원1, 이상훈1, 장재기1, 이준수2, 정헌상2,*

Mapping of QTL for Yield Traits in Recombinant Inbred Lines Derived from Korean Wheat with Long Spike Length

Korean Journal of Breeding Science 2019;51(4):386-394.
Published online: December 1, 2019

1농촌진흥청 국립원예특작과학원

2충북대학교 식품생명공학과

1National Institute of Horticultural and Herbal Science, Rural Development Administration, Eumseong 27709, Republic of Korea

2Department of Food Science and Technology, Chungbuk National University, Cheongju 8644, Republic of Korea

* Corresponding Author (E-mail: hsjeong@cbnu.ac.kr, Tel: +82-43-261-2570, Fax: +82-43-271-4412)
• Received: September 23, 2019   • Revised: October 1, 2019   • Accepted: October 11, 2019

Copyright © 2019 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.

  • 155 Views
  • 0 Download
  • 2 Crossref
prev next

Citations

Citations to this article as recorded by  Crossref logo
  • Changes in Major Compounds during the Manufacturing of Rehmanniae Radix Preparata
    Seo Young Mun, Se Hee Jeon, Jong Hyuk Kim, Ju Hyeon Ha, Seung Han Cho, Ye Rin Kim, Yeon Ju Lee, Chang Keun Kang, Il Rae Rho
    Journal of Agriculture & Life Science.2025; 59(3): 1.     CrossRef
  • Analysis of Main Components of Rehmannia glutinosa and Saururus chinensis According to Extraction Method
    Jong Hyuk Kim, Ju Hyun Ha, Il Rae Rho
    Journal of Agriculture & Life Science.2024; 58(3): 11.     CrossRef

Download Citation

Download a citation file in RIS format that can be imported by all major citation management software, including EndNote, ProCite, RefWorks, and Reference Manager.

Format:

Include:

Mapping of QTL for Yield Traits in Recombinant Inbred Lines Derived from Korean Wheat with Long Spike Length
Korean. J. Breed. Sci.. 2019;51(4):386-394.   Published online December 1, 2019
Download Citation

Download a citation file in RIS format that can be imported by all major citation management software, including EndNote, ProCite, RefWorks, and Reference Manager.

Format:
Include:
Mapping of QTL for Yield Traits in Recombinant Inbred Lines Derived from Korean Wheat with Long Spike Length
Korean. J. Breed. Sci.. 2019;51(4):386-394.   Published online December 1, 2019
Close

Figure

  • 0
  • 1
Mapping of QTL for Yield Traits in Recombinant Inbred Lines Derived from Korean Wheat with Long Spike Length
Image Image
Fig. 1 Change of free sugar contents (%) of Rehmannia glutinosa with steaming conditions. (A) Fructose. (B) Glucose. (C) Sucrose. zMeans with same small letter (except for raw condition) and capital letter on 4 cultivars are not significantly different at p<0.05 by a Duncan’s multiple range test.
Fig. 2 Change of oligosaccharides contents (%) of Rehmannia glutinosa with steaming conditions. (A) Raffinose. (B) Stachyose. zMeans with same small letter (except for raw condition) and capital letter on 4 cultivars are not significantly different at p<0.05 by a Duncan’s multiple range test.
Mapping of QTL for Yield Traits in Recombinant Inbred Lines Derived from Korean Wheat with Long Spike Length

Change of yields of Rehmannia glutinosa with steaming conditions

Steaming Yields (%)

Jihwang 1 Kokang Togang Dagang
Raw 100 100 100 100
Dried 22.82±0.02hBz 22.69±0.01dC 23.61±0.02jA 19.36±0.03iD
1st 23.48±0.02fB 23.02±0.01bC 24.10±0.01iA 22.31±0.02cD
2nd 23.41±0.02gB 23.14±0.01aC 24.46±0.02hA 22.14±0.01dD
3rd 23.53±0.02eB 22.75±0.02cC 24.66±0.01gA 22.61±0.04bD
4th 23.46±0.01fB 22.67±0.01dC 24.94±0.01eA 22.14±0.04dD
5th 23.40±0.02gB 22.14±0.01iD 24.78±0.01fA 22.74±0.04aC
6th 23.65±0.02dB 22.21±0.02hC 25.01±0.01dA 21.48±0.06gD
7th 24.02±0.01cB 22.36±0.01fC 25.27±0.01bA 21.74±0.02eD
8th 24.14±0.02bB 22.46±0.01eC 25.42±0.01aA 21.64±0.01fD
9th 24.22±0.01aB 22.31±0.01gC 25.10±0.01cA 21.16±0.03hD

Change of browning index of Rehmannia glutinosa with steaming conditions.

Steaming Yields (%)

Jihwang 1 Kokang Togang Dagang
Raw 0.66±0.04 0.85±0.01 0.81±0.01 0.55±0.00
1st 0.74±0.01fBz 0.59±0.01eD 0.67±0.03dC 0.78±0.01deA
2nd 1.08±0.06deA 0.72±0.00dBC 0.69±0.01dC 0.77±0.05eB
3rd 1.01±0.04eA 0.78±0.01dC 0.79±0.01dC 0.88±0.01dB
4th 1.11±0.01dC 1.01±0.00cD 1.23±0.01cA 1.16±0.01cB
5th 1.15±0.02dC 1.24±0.00bB 1.42±0.01abA 1.10±0.07cC
6th 1.35±0.10cB 1.17±0.21bB 1.33±0.20acB 1.66±0.01aA
7th 1.34±0.09cAB 1.24±0.02bB 1.46±0.03aA 1.41±0.13bA
8th 1.64±0.01bB 1.74±0.03aA 1.33±0.01acD 1.41±0.04bC
9th 2.04±0.04aA 1.13±0.02bcD 1.31±0.00bcB 1.20±0.05cC

Change of catalpol contents of Rehmannia glutinosa with steaming conditions

Steaming Catalpol (mg/g)

Jihwang 1 Kokang Togang Dagang
Raw 31.96±0.14 22.55±0.03 26.32±0.03 27.57±0.05
1st 11.66±0.42aBz 12.01±0.25aB 8.65±0.27aC 13.82±0.12aA
2nd 2.76±0.06bC 3.31±0.45bAB 3.01±0.01bBC 3.57±0.02bA
3rd 1.56±0.03cA 1.12±0.08cB 1.13±0.05cB 1.64±0.04cA
4th ND ND ND ND
5th ND ND ND ND
6th ND ND ND ND
7th ND ND ND ND
8th ND ND ND ND
9th ND ND ND ND

Change of 5-HMF contents of Rehmannia glutinosa with steaming conditions

Steaming 5-HMF (%)

Jihwang 1 Kokang Togang Dagang
Raw ND ND ND ND
1st ND ND ND ND
2nd 0.02±0.00hBz 0.02±0.00fB 0.03±0.00fA 0.02±0.00gB
3rd 0.03±0.00gB 0.05±0.00eA 0.05±0.00eA 0.03±0.00fB
4th 0.08±0.00fA 0.08±0.00dA 0.08±0.00dA 0.07±0.00eB
5th 0.14±0.00eA 0.07±0.00dC 0.14±0.00cA 0.09±0.00dB
6th 0.17±0.00cA 0.09±0.01cB 0.17±0.00bA 0.09±0.00dB
7th 0.14±0.00dB 0.09±0.00bC 0.17±0.00bA 0.15±0.00aB
8th 0.18±0.00bB 0.10±0.01aD 0.19±0.00aA 0.11±0.00cC
9th 0.21±0.00aA 0.11±0.00aD 0.18±0.00bB 0.13±0.00bC
Table 1 Change of yields of Rehmannia glutinosa with steaming conditions

Means with same small letter on column (steaming times) except for raw condition and capital letter on line (4 cultivars) are not significantly different at p<0.05 by a Duncan’s multiple range test.

Table 2 Change of browning index of Rehmannia glutinosa with steaming conditions.

Means with same small letter on column (steaming times) except for raw condition and capital letter on line (4 cultivars) are not significantly different at p<0.05 by a Duncan’s multiple range test.

Table 3 Change of catalpol contents of Rehmannia glutinosa with steaming conditions

Means with same small letter on column (steaming times) except for raw condition and capital letter on line (4 cultivars) are not significantly different at p<0.05 by a Duncan’s multiple range test. ND; Not detected.

Table 4 Change of 5-HMF contents of Rehmannia glutinosa with steaming conditions

Means with same small letter on column (steaming times) except for raw condition and capital letter on line (4 cultivars) are not significantly different at p<0.05 by a Duncan’s multiple range test. ND; Not detected.