Xinjiang Agricultural Sciences ›› 2024, Vol. 61 ›› Issue (9): 2307-2314.DOI: 10.6048/j.issn.1001-4330.2024.09.027
• Plant Protection·Microbes·Animal Husbandry Veterinarian·Soil Fertilizer • Previous Articles Next Articles
CHEN Yong1(), ZHOU Lei2, SUI Chun2(
), LIN Caixia3(
)
Received:
2024-02-01
Online:
2024-09-20
Published:
2024-10-09
Correspondence author:
SUI Chun, LIN Caixia
Supported by:
通讯作者:
隋春,蔺彩霞
作者简介:
陈勇(1977- ),男,安徽六安人,硕士研究生,副研究员,研究方向为药用植物品种选育及栽培,(E-mail)chenyong@xaas.ac.cn
基金资助:
CHEN Yong, ZHOU Lei, SUI Chun, LIN Caixia. The characteristics of 32 cultivated germplasms of Isatis tinctoria Linnaeus in Xinjiang production area[J]. Xinjiang Agricultural Sciences, 2024, 61(9): 2307-2314.
陈勇, 周蕾, 隋春, 蔺彩霞. 32份板蓝根栽培种质在新疆产区的性状表现[J]. 新疆农业科学, 2024, 61(9): 2307-2314.
编号 No. | 长 Length (mm) | 宽 Width (mm) | 厚 Thickness (mm) | 千粒重 1000 grain weight(g) | 编号 No. | 长 Length (mm) | 宽 Width (mm) | 厚 Thickness (mm) | 千粒重 1000 grain weight(g) |
---|---|---|---|---|---|---|---|---|---|
HB-1 | 17.03 | 3.45 | 2.58 | 9.76 | GS-2 | 16.21 | 7.2 | 3.09 | 23.24 |
HB-2 | 20.58 | 4.48 | 1.58 | 10.7 | GS-3 | 21.38 | 6.51 | 2.26 | 18.41 |
HB-3 | 13.44 | 6.08 | 1.68 | 1.05 | GS-4 | 22.78 | 7.78 | 2.36 | 8.55 |
SX-1 | 24.31 | 6.18 | 2.06 | 17.59 | GS-5 | 22.55 | 6.34 | 2.15 | 18.04 |
SX-2 | 21.36 | 6.36 | 2.38 | 8.17 | GS-6 | 20.61 | 4.31 | 2.52 | 11.39 |
SX-3 | 17.26 | 4.04 | 1.58 | 19.15 | GS-7 | 21.09 | 6.78 | 2.38 | 16.35 |
SX-4 | 16.98 | 3.64 | 1.58 | 11.46 | GS-8 | 19.22 | 5.08 | 5.2 | 2.26 |
SD-1 | 17.26 | 5.2 | 2.06 | 10.41 | XJ-1 | 19.3 | 6.29 | 2.35 | 24.81 |
SD-2 | 18.36 | 5.04 | 2.26 | 10.65 | XJ-2 | 17.38 | 4.31 | 2.4 | 8.17 |
SD-3 | 20 | 4 | 1.38 | 11.23 | XJ-3 | 19.02 | 5.06 | 1.58 | 8.03 |
SD-4 | 21.18 | 6.7 | 1.78 | 10.71 | XJ-4 | 15 | 4.32 | 1.78 | 18.35 |
HN-1 | 21.61 | 6.38 | 2.21 | 18.44 | NX-1 | 23.54 | 5 | 2.08 | 6.76 |
HN-2 | 17.71 | 4.09 | 1.79 | 9.22 | SAX-1 | 18.35 | 4.35 | 2.5 | 8.44 |
HN-3 | 17.26 | 4.01 | 1.35 | 8.36 | JL-1 | 20.5 | 6.9 | 2.3 | 1.81 |
HN-4 | 17.78 | 4.4 | 1.09 | 8.4 | HLJ-1 | 19.76 | 4.52 | 2.06 | 17.62 |
GS-1 | 21.58 | 7.48 | 3.14 | 24.36 | BJ-1 | 18.1 | 4.4 | 1.38 | 9.62 |
Tab.1 Data on hornbeam traits of different germplasms
编号 No. | 长 Length (mm) | 宽 Width (mm) | 厚 Thickness (mm) | 千粒重 1000 grain weight(g) | 编号 No. | 长 Length (mm) | 宽 Width (mm) | 厚 Thickness (mm) | 千粒重 1000 grain weight(g) |
---|---|---|---|---|---|---|---|---|---|
HB-1 | 17.03 | 3.45 | 2.58 | 9.76 | GS-2 | 16.21 | 7.2 | 3.09 | 23.24 |
HB-2 | 20.58 | 4.48 | 1.58 | 10.7 | GS-3 | 21.38 | 6.51 | 2.26 | 18.41 |
HB-3 | 13.44 | 6.08 | 1.68 | 1.05 | GS-4 | 22.78 | 7.78 | 2.36 | 8.55 |
SX-1 | 24.31 | 6.18 | 2.06 | 17.59 | GS-5 | 22.55 | 6.34 | 2.15 | 18.04 |
SX-2 | 21.36 | 6.36 | 2.38 | 8.17 | GS-6 | 20.61 | 4.31 | 2.52 | 11.39 |
SX-3 | 17.26 | 4.04 | 1.58 | 19.15 | GS-7 | 21.09 | 6.78 | 2.38 | 16.35 |
SX-4 | 16.98 | 3.64 | 1.58 | 11.46 | GS-8 | 19.22 | 5.08 | 5.2 | 2.26 |
SD-1 | 17.26 | 5.2 | 2.06 | 10.41 | XJ-1 | 19.3 | 6.29 | 2.35 | 24.81 |
SD-2 | 18.36 | 5.04 | 2.26 | 10.65 | XJ-2 | 17.38 | 4.31 | 2.4 | 8.17 |
SD-3 | 20 | 4 | 1.38 | 11.23 | XJ-3 | 19.02 | 5.06 | 1.58 | 8.03 |
SD-4 | 21.18 | 6.7 | 1.78 | 10.71 | XJ-4 | 15 | 4.32 | 1.78 | 18.35 |
HN-1 | 21.61 | 6.38 | 2.21 | 18.44 | NX-1 | 23.54 | 5 | 2.08 | 6.76 |
HN-2 | 17.71 | 4.09 | 1.79 | 9.22 | SAX-1 | 18.35 | 4.35 | 2.5 | 8.44 |
HN-3 | 17.26 | 4.01 | 1.35 | 8.36 | JL-1 | 20.5 | 6.9 | 2.3 | 1.81 |
HN-4 | 17.78 | 4.4 | 1.09 | 8.4 | HLJ-1 | 19.76 | 4.52 | 2.06 | 17.62 |
GS-1 | 21.58 | 7.48 | 3.14 | 24.36 | BJ-1 | 18.1 | 4.4 | 1.38 | 9.62 |
Fig.4 Scattered trend plot of correlation among indicators (leaf length, root length, root width, number of lateral roots, root weight and (R, S)-goitrin content)
Fig.5 Preferred resource XJ-1 features Note:The Character of XJ001: The plant has an upright shape, with rhizome diameter of about 2.5 cm and a root length of about 40 cm. There are 2-3 lateral roots, and the leaves are semi upright. The leaf shape is elliptical, with smooth and uncut leaf edges. The flowers are yellow, and the seeds are brown in color and long elliptical in shape.
因素 Factor | 叶长 Leaf length | 根长 Root length | 根粗 Root diameter | 侧根数 Branch root number | 根重 Root weight | (R, S)-告依春含量 (R, S) -goitrin content |
---|---|---|---|---|---|---|
叶长Leaf length | 1 | 0.207 | -0.056 | -0.094 | 0.219 | 0.032 |
根长Root length | 1 | -0.391* | -0.48 | -0.22 | 0.149 | |
根粗Root diameter | 1 | 0.57 | 0.74 | -0.019 | ||
侧根Branch root number | 1 | 0.64 | -0.055 | |||
根重Root weight | 1 | 0.030 | ||||
(R, S)-告依春含量 (R, S) -goitrin content | 1 |
Tab.2 Correlation analysis among indicators (leaf length, root length, root width, number of lateral roots, root weight, and (R, S)-goitrin content)
因素 Factor | 叶长 Leaf length | 根长 Root length | 根粗 Root diameter | 侧根数 Branch root number | 根重 Root weight | (R, S)-告依春含量 (R, S) -goitrin content |
---|---|---|---|---|---|---|
叶长Leaf length | 1 | 0.207 | -0.056 | -0.094 | 0.219 | 0.032 |
根长Root length | 1 | -0.391* | -0.48 | -0.22 | 0.149 | |
根粗Root diameter | 1 | 0.57 | 0.74 | -0.019 | ||
侧根Branch root number | 1 | 0.64 | -0.055 | |||
根重Root weight | 1 | 0.030 | ||||
(R, S)-告依春含量 (R, S) -goitrin content | 1 |
[1] | 国家药典委员会. 中华人民共和国药典(2020年版)[M]. 北京: 中国医药科技出版社, 2020: 1088. |
National Pharmacopoeia Commission. Chinese Pharmacopoeia(2020 ed.)[M]. Beijing: China Medical Science Press, 2020: 1088. | |
[2] | Wong L W, Goh C B S, Tan J B L. A systemic review for ethnopharmacological studies on Isatis indigotica fortune: bioactive compounds and their therapeutic insights[J]. The American Journal of Chinese Medicine, 2022, 50(1): 161-207. |
[3] | Speranza J, Miceli N, Taviano M F, et al. Isatis tinctoria L. (woad): a review of its botany, ethnobotanical uses, phytochemistry, biological activities, and biotechnological studies[J]. Plants, 2020, 9(3): 298. |
[4] | Chen J, Zhu Z P, Gao T H, et al. Isatidis Radix and isatidis folium: a systematic review on ethnopharmacology, phytochemistry and pharmacology[J]. Journal of Ethnopharmacology, 2022, 283: 114648. |
[5] | Wang T B, Wang X W, Zhuo Y, et al. Antiviral activity of a polysaccharide from Radix Isatidis (Isatis indigotica Fortune) against hepatitis B virus (HBV) in vitro via activation of JAK/STAT signal pathway[J]. Journal of Ethnopharmacology, 2020, 257: 112782. |
[6] | Liu Z Y, Tang Y, Zhou R R, et al. Bi-directional solid fermentation products of Trametes robiniophila Murr with Radix Isatidis inhibit proliferation and metastasis of breast cancer cells[J]. Journal of the Chinese Medical Association, 2018, 81(6): 520-530. |
[7] | Li J P, Yuan Y, Zhang W Y, et al. Effect of Radix isatidis polysaccharide on alleviating insulin resistance in type 2 diabetes mellitus cells and rats[J]. Journal of Pharmacy and Pharmacology, 2019, 71(2): 220-229. |
[8] | Zhang Z J, Morris-Natschke S L, Cheng Y Y, et al. Development of anti-influenza agents from natural products[J]. Medicinal Research Reviews, 2020, 40(6): 2290-2338. |
[9] | 王茜, 黄勇, 李斌, 等. 不同菘蓝种质主要表型性状对品质和产量的影响[J]. 河南农业科学, 2020, 49(7): 44-52. |
WANG Xi, HUANG Yong, LI Bin, et al. Effects of main phenotypic characters on quality and yield of Isatis indigotica fort[J]. Journal of Henan Agricultural Sciences, 2020, 49(7): 44-52. | |
[10] | 杨福红, 赵鑫, 王盼, 等. 菘蓝种质资源评价[J]. 中成药, 2022, 44(5): 1515-1521. |
YANG Fuhong, ZHAO Xin, WANG Pan, et al. Evaluation of germplasm resources of Isatis indigotica[J]. Chinese Traditional Patent Medicine, 2022, 44(5): 1515-1521. | |
[11] | Han W J, Wan H F, Fu X D, et al. Research progress on germplasm resources and variety breeding of Isatis indigotica Fort[J]. Molecula Plant Breed, 2022, 1-14. |
[12] | 高江龙, 陈勇, 马小龙, 等. 新疆菘蓝种植分布现状及发展对策研究[J]. 新疆农业科技, 2023(5): 31-33. |
GAO Jianglong, CHEN Yong, MA Xiaolong, et al. Research progress on chemical constituents and pharmacological effects of Isatis[J]. Xinjiang Agricultural Science and Technology, 2023(5): 31-33. | |
[13] | 聂黎行, 王馨平, 黄烈岩, 等. 板蓝根化学成分信息库的构建[J]. 中国药学杂志, 2022, 57(6): 428-452. |
NIE Lixing, WANG Xinping, HUANG Lieyan, et al. Construction of information bank of chemical components in isatidis Radix[J]. Chinese Pharmaceutical Journal, 2022, 57(6): 428-452. | |
[14] | 孟文文, 钟昆芮, 周艳飞, 等. 不同产地板蓝根药材中(R, S)-告依春含量测定与分析[J]. 北京农学院学报, 2020, 35(1): 89-94. |
MENG Wenwen, ZHONG Kunrui, ZHOU Yanfei, et al. Determination of (R, S)-goitrinin Isatidis Radix of different originations[J]. Journal of Beijing University of Agriculture, 2020, 35(1): 89-94. | |
[15] | Han W J, Zhou L, Wan H F, et al. A comprehensive comparison on root yield and content of polysaccharides and alkaloids from ten germplasms of Isatis indigotica Fort. in two growing areas[J]. Industrial Crops and Products, 2022, 187: 115254. |
[16] | 韩文静. 板蓝根与柴胡栽培种质产量与品质评价[D]. 北京: 北京协和医学院, 2022. |
HAN Wenjing. Evaluation of Yield and Quality of Cultivated Germplasm of Radix Isatidis and Bupleurum chinense DC[D]. Beijing: Peking Union Medical College, 2022. | |
[17] | 张金霞, 孙向阳, 李爱堂, 等. 菘蓝新品种培育现状分析[J]. 中药材, 2021, 44(3): 730-735. |
ZHANG Jinxia, SUN Xiangyang, LI Aitang, et al. Investigation of germplasm resources of Radix Isatidis produced at Bozhou in Anhui province[J]. Journal of Chinese Medicinal Materials, 2021, 44(3): 730-735. | |
[18] | 王思媛. 氮磷钾对菘蓝生长、产量和质量的影响[D]. 大庆: 黑龙江八一农垦大学, 2021. |
WANG Siyuan. Effect of N-P-K on growth, yield and quality of I. indigotica[D]. Daqing: Heilongjiang Bayi Agricultural University, 2021. | |
[19] | Zhang Y L, Yang B F, Sun W H, et al. Effect of N Combined with K Fertilizers on the Quality of Platycodon grandiflorum (Jacq.) A. DC.[J]. Medicinal Plant, 2010, 1(11): 1-2, 5. |
[20] | He J, Li X Y, Zhang X H. Effects of Formula Fertilizer of N, P and K on the Growth of Annual Scutellaria baicalensis Georgi[J]. Medicinal Plant, 2012, 3(4): 30-32, 38. |
[1] | MIAO Yu, CHEN Cuixia, MA Yanming, XING Guofang, DONG Yusheng, CHEN Zhijun, WANG Xian, XIANG Li. Genetic diversity analysis of phenotypic traits of 276 Central Asian barley germplasm resources [J]. Xinjiang Agricultural Sciences, 2024, 61(8): 1888-1895. |
[2] | YE Pingyi, LONG Yilei, TANG Yanping, DU Xiao, AN Mengjie, TAO Zhixin, LIANG Farui, AI Xiantao, HU Shoulin. Identification and evaluation of fruit branch angle and machine-picked agronomic traits in Gossypium hirsutum L. [J]. Xinjiang Agricultural Sciences, 2024, 61(6): 1318-1327. |
[3] | LIU Yue, JIA Yonghong, ZHANG Jinshan, YU Yuehua, WANG Runqi, LI Dandan, SHI Shubing. Comparison of peanut varieties with different high oleic acid under drip irrigation [J]. Xinjiang Agricultural Sciences, 2024, 61(6): 1361-1367. |
[4] | YANG Xiangbo, CHEN Liangyu, YANG Songnan, CHEN Xifeng, XING Weiming, LI Xueying, CONG Weixuan, ZANG Zhenyuan, ZANG Yuanbo, ZHANG Jun. Phenotype analysis and comprehensive evaluation of spring soybean germplasm resources from northeast China [J]. Xinjiang Agricultural Sciences, 2024, 61(12): 2921-2933. |
[5] | LI Chunyu, TAN Zhanming, CHENG Yunxia, SHU Sheng, MA Quanhui, HE Miao, DUAN Yifan, WU Hui. Comparative analysis of agronomic traits of different processing tomato varieties [J]. Xinjiang Agricultural Sciences, 2024, 61(11): 2676-2683. |
[6] | CUI Yujiang, GONG Zhaolong, WANG Junduo, ZHENG Juyun, SANG Zhiwei, YANG Ni, LIANG Yajun, LI Xueyuan, QU Yanying. Comprehensive evaluation of basic agronomic traits and yield components of 245 Gossypium hirsutum L. varieties [J]. Xinjiang Agricultural Sciences, 2024, 61(10): 2358-2365. |
[7] | SHAO Jiang, ZHAO Yun, HU Xiangwei, LIU Jie, Nasirula Keremu, SHI Shubing, FENG Guojun. Effects of drought stress on foxtail millet yield and dry matter accumulation in different periods [J]. Xinjiang Agricultural Sciences, 2024, 61(10): 2388-2395. |
[8] | WANG Ting, ZHANG Li, ZHANG Fanfan, HUANG Rongzheng, LI Xiao, ZHANG Yulin, CHEN Yongcheng, ZHAO Jiantao, MA Chunhui. Poduction performance screening and nutritional value evaluation of corn varieties suitable for silage [J]. Xinjiang Agricultural Sciences, 2023, 60(7): 1596-1605. |
[9] | SHI Xiaolei, DING Sunlei, CONG Hua, ZHANG Jinbo, QU Kejia, WANG Xingzhou, HAN dai, YAN Yongliang. Gray correlation analysis of reast soybean yield correlation traits [J]. Xinjiang Agricultural Sciences, 2023, 60(7): 1641-1652. |
[10] | YAN Yongliang, ZHANG Heng, QU Kejia, SHI Xiaolei, WANG Xingzhou, ZHANG Jinbo, CONG Hua. Comparative study on the agronomic traits and yields of different soybean varieties [J]. Xinjiang Agricultural Sciences, 2023, 60(7): 1653-1662. |
[11] | HUANG Qiannan, Maerheba Aisibaier, ZOU Hui, WANG Cairong, Ailimaimaiti Kuerban, SUN Na, LEI Junjie. Genetic diversity of main agronomic traits in Xinjiang winter wheat germplasm resources [J]. Xinjiang Agricultural Sciences, 2023, 60(5): 1050-1058. |
[12] | DONG Xiuli, HAN Dengxu, YANG Jie, Abuleti Abula, DAI Aimei, LI Junjie, WANG Yejian, LIU Jun, XI Haojiang, LIANG Xiaoling, LI Mingdong. Comprehensive analysis of main agronomic traits of maize [J]. Xinjiang Agricultural Sciences, 2023, 60(4): 865-871. |
[13] | DU Hongyan, PANG Shengqun, MA Haixiang, JI Xuehua. Correlation and path analysis of agronomic traits of processing tomato early maturity mutants [J]. Xinjiang Agricultural Sciences, 2023, 60(4): 943-950. |
[14] | HAO Xiyu, YANG Tao, ZHANG Junjie, LI Xue, ZHANG Zhongjuan, WU Chenqing, ZONG Xuxiao, LENG Youbin, CHEN Bo, GUO Laichun. Effects of Different Nitrogen, Phosphorus and Potassium Treatments on Yield, Agronomic Traits and Economic Benefit of Chickpea (Cicer arietinum L.) [J]. Xinjiang Agricultural Sciences, 2023, 60(3): 555-566. |
[15] | Alibieligen Hazitai, Hanipa Hazaisi, Zulehumaer Wusimanjiang, YAO Qing, Shouhereti Yodika, HOU Xanfei, LI Qiang, ZHANG Zheng. Adaptability Analysis of Introduced Soybean Varieties in Yili Valley of Xinjiang [J]. Xinjiang Agricultural Sciences, 2023, 60(2): 326-335. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||