ZHAO Jing-yun,REN Xiao-jun,REN Hai-hong,et al.Genetic Diversity Analysis of Main Agronomic Characters of New Soybean Lines in Huang-Huai-Hai Area[J].Soybean Science,2022,41(03):266-273.[doi:10.11861/j.issn.1000-9841.2022.03.0266]
黄淮海大豆新品系主要农艺性状的遗传多样性分析
- Title:
- Genetic Diversity Analysis of Main Agronomic Characters of New Soybean Lines in Huang-Huai-Hai Area
- 文献标志码:
- A
- 摘要:
- 摘要:为了更好地利用大豆种质资源,以黄淮海大豆产区102份大豆新品系为材料,对14个产量相关的农艺性状进行了遗传多样性分析。结果表明:供试品系的14个农艺性状中,四粒荚数变异系数最大,生育期最小,主茎节数的多样性指数最大,单株产量与单株粒数、单株荚数、二粒荚数相关性最大,且均呈极显著正相关(P<0.01)。主成分分析结果表明,前3个主成分累计贡献率达到70.108%;聚类分析结果表明,在欧氏距离6.5处,可将参试种质材料分为5个类群。类群Ⅰ为生育期较短类群,适宜于黄淮海北片种植;类群Ⅱ为百粒重较大的类群;类群Ⅲ为高产类群,可作为高产育种的亲本材料使用;类群Ⅳ包含材料数量最多,是黄淮海大豆产区普通类型;第Ⅴ类群底荚部位高、植株高大、生物产量高,可作为适于机械收获及牧草大豆品种选育的亲本材料。
- Abstract:
- In order to make better use of soybean germglasm resources, 102 new soybean lines in Huang-Huai-Hai Area were used as materials to analyze the genetic diversity of fourteen agronomic characters related to yield. The results showed that among the fourteen agronomic characters of the tested lines, the coefficient of variation of four pods was the largest and the growth period was the smallest. The diversity index of the nodes number of main stem was the highest, and the yield per plant had the highest correlation with the seeds number per plant, pods number per plant and pods number of two seeds, and all of them had a very significant positive correlation(P<0.01). The results of principal component analysis showed that the cumulative contribution rate of the first three principal components reached 70.108%. Cluster analysis showed that at Euclidean distance of 6.5, the tested germplasm materials could be divided into five groups. Group Ⅰ was a group with short growth period, which can be suitable for planting in the northern part of Huang-huai-hai Area. Group Ⅱ was a group with larger 100-seed weight. Group Ⅲ was a high-yield group and can be used as parent material for high-yield breeding. Group Ⅳ contained the most materials, which was a common type in Huang-Huai-Hai soybean producing areas. Group Ⅴ had high
参考文献/References:
[1]王述民, 李立会, 黎裕, 等. 中国粮食和农业植物遗传资源状况报告(Ⅰ)[J]. 植物遗传资源学报, 2011, 12(1): 1-12. (WANG S M, LI L H, LI Y, et al. Status of plant genetic resources for food and agricultural in China(Ⅰ)[J]. Journal of Plant Genetic Resources, 2011, 12(1): 1-12.)[2]王述民, 李立会, 黎裕, 等. 中国粮食和农业植物遗传资源状况报告(Ⅱ)[J]. 植物遗传资源学报, 2011, 12(2): 167-177. (WANG S M, LI L H, LI Y, et al. Status of plant genetic resources for food and agricultural in China(Ⅱ)[J]. Journal of Plant Genetic Resources, 2011, 12(2): 167-177.)[3]方嘉禾. 中国生物种质资源保护现状与行动建议[J]. 中国农业科技导报, 2001(1): 77-80. (FANG J H. Status and acting proposals concerning the conservation of Chinese bio-diversity resources[J]. Journal of Agricultural Science and Technology, 2001(1): 77-80.)[4]曲吉. 西藏农作物种质资源保存现状及行动建议[J]. 西藏农业科技, 2016, 38(3): 42-43.(QU J.The current situation of crop germplasm resources preservation in Tibet and proposals for action[J]. Tibet Journal of Agricultural Sciences, 2016, 38(3): 42-43.)[5]杜雄明, 孙君灵, 周忠丽,等. 棉花资源收集、保存、评价与利用现状及未来[J]. 植物遗传资源学报, 2012, 13(2): 163-168. (DU X M, SUN J L, ZHOU Z L, et al. Current situation and the future in collection, preservation, evaluation and utilization of cotton germplasm in China[J]. Journal of Plant Genetic Resources, 2012, 13(2): 163-168.)[6]孙星邈, 邱红梅, 马晓萍, 等. 东北三省大豆种质品质性状鉴评与综合分析[J]. 大豆科学,2017, 36(6): 872-878. (SUN X M, QIU H M, MA X P, et al. Quality traits identification and integrated analysis of Heilongjiang, Jilin and Liaoning soybeans[J]. Soybean Science, 2017, 36(6): 872-878.)[7]张孟臣, 张磊, 刘学义, 等. 黄淮海大豆改良种质[M].北京: 中国农业出版社, 2006.(ZHANG M C, ZHANG L, LIU X Y, et al. Improved soybean germplasm in Huang Huai Hai [M]. Beijing: China Agricultural Press, 2014.)[8]成雪峰. 黄淮海地区大豆品种主要农艺性状演变分析[J]. 大豆科学, 2011, 30(4): 585-588, 595. (CHENG X F. Evolution of soybean major agronomy characters in Huang-Huai-Hai region[J]. Soybean Science, 2011, 30(4): 585-588, 595.)[9]张礼凤, 李伟, 王彩洁, 等. 山东大豆种质资源形态多样性分析[J]. 植物遗传资源学报, 2006, 7(4): 450-454. (ZHANG L F, LI W, WANG C J, et al. Morphological diversity of soybean germplasm resources in Shandong[J]. Journal of Plant Genetic Resources, 2006, 7(4): 450-454.)[10]〖ZK(#〗张礼凤, 李伟, 徐冉, 等. 山东大豆品种资源农艺性状及品质概况分析[J]. 华北农学报, 2006, 21(增刊): 133-136. (ZHANG L F, LI W, XU R, et al. Analysis of agronomic characters and quality of soybean germplasm resources in Shandong Province[J]. Acta Agriculturae Boreali-Sinica, 2006, 21(S2): 133-136.)[11]郭长霞, 李俊献, 李建华, 等. 河南大豆主要数量性状与产量的相关和通径分析[J]. 大豆科技, 2013(1): 26-29. (GOU C X, LI J X, LI J H, et al. Correlation and path analysis of main quantitative characters and yield of soybean in Henan Province[J]. Soybean Science and Technology,2013(1):26-29.)[12]刘萌娟, 李鸣雷, 赵惠贤, 等. 陕西大豆资源遗传多样性及变异特点研究[J]. 植物遗传资源学报, 2010, 11(3): 326-334. (LIU M J, LI M L, ZHAO H X, et al. Genetic diversity and variation trait of Shaanxi soybean landraces[J]. Journal of Plant Genetic Resources, 2010, 11(3): 326-334.)[13]罗瑞萍, 赵志刚, 姬月梅, 等. 大豆产量及其相关数量性状关系的分析[J]. 安徽农业科学, 2010, 38(17): 8910-8912. (LOU R P, ZHAO Z G, JI Y M, Research on the relationship between soybean yield and its related quantitative character[J]. Journal of Anhui Agricultural Sciences, 2010, 38(17): 8910-8912.)[14]汪宝卿, 张礼凤, 戴海英, 等. 黄淮海地区夏大豆农艺性状的遗传变异、相关及主成分分析[J]. 大豆科学, 2012, 31(2): 208-212. (WANG B Q, ZHANG L F, DAI H Y, et al. Genetic variation, correlation and principal component analysis on agronomic traits of summer sowing soybean in Huanghuai region[J]. Soybean Science, 2012, 31(2): 208-212.)[15]李明松, 吕美琴, 林荣辉. 春大豆新品种系比较试验的遗传多元分析[J]. 安徽农学通报, 2009, 15(11): 141-142, 170. (LI M S, LYU M Q, LIN R H. Genetic multivariate analysis of comparative test of new spring soybean varieties [J]. Anhui Agronomy Bulletin,2009, 15(11): 141-142, 170.)[16]慈敦伟, 张礼凤, 汪宝卿, 等. 大豆种质资源农艺性状和产量的年份间差异及其关系[J]. 植物遗传资源学报, 2011, 12(6): 872-880. (CI D W, ZHANG L F, WANG B Q, et al. Variation of agronomic traits and production of germplasm resources of soybean in different years and the relationship between them[J]. Journal of Plant Genetic Resources, 2011, 12(6): 872-880.)[17]邱丽娟, 常汝镇. 大豆种植资源描述规范和数据标准[M].北京: 中国农业出版社, 2006. (QIU L J, CHANG R Z. Description specification and data standard of soybean resources [M]. Beijing:China Agricultural Press, 2006.)[18]吕伟, 韩俊梅, 文飞, 等. 不同来源芝麻种质资源的表型多样性分析[J]. 植物遗传资源学报, 2020, 21(1): 234-242, 251. (LYU W, HAN J M, WEN F, et al. Phenotypic diversity analysis of sesame germplasm resources[J]. Journal of Plant Genetic Resources, 2020, 21(1): 234-242, 251.)[19]胡建斌, 马双武, 简在海, 等.中国甜瓜种质资源形态性状遗传多样性分析[J].植物遗传资源学报, 2013, 14(4): 612-619. (HU J B, MA S W, JIANG Z H, et al. Genetic diversity of morphological characters of muskmelon germplasm resources in China[J]. Journal of Plant Genetic Resources, 2013, 14(4): 612-619.)[20]欧巧明, 叶春雷, 李进京, 等.油用亚麻品种资源主要性状的鉴定与评价[J].中国油料作物学报, 2017, 39(5): 623-633. (OU Q M, YE C M, LI J J, et al. Identification and evaluation of main breeding characteristics of oil flax resources [J]. Chinese Journal of Oil Crop, 2017, 39(5): 623-633.)[21]吕伟, 韩俊梅, 任果香, 等.山西芝麻种质资源遗传多样性分析[J]. 作物杂志, 2019(5): 57-63. (LYU W, HAN J M, REN G X, et al. Genetic diversity analysis of sesame germplasm resources in Shanxi[J]. Crops, 2019(5): 57-63.)[22]李艳伟, 施俊生, 汪宝根, 等. 浙江地方瓠瓜种质资源的表型鉴定与遗传多样性[J]. 植物遗传资源学报, 2020, 21(5): 1135-1147. (LI Y W, SHI J S, WANG B G, et al. Phenotypic identification and genetic diversity analysis of local germplasm resources of bottle gourd in Zhejiang Province[J]. Journal of Plant Genetic Resources, 2020, 21(5): 1135-1147.)[23]叶新如, 朱海生, 温庆放, 等. 丝瓜种质资源主成分与聚类分析[J]. 福建农业学报, 2017, 32(7): 703-709. (YE X R, ZHU H S, WEN Q F, et al. Principal components and cluster analyses on luffa germplasms[J]. Fujian Journal of Agricultural Sciences, 2017, 32(7): 703-709.)[24]秦君, 杨春燕, 谷峰, 等. 黄淮海地区大豆产量及其稳定性评价[J]. 中国农业科学, 2013, 46(3): 451-462. (QIN J, YANG C Y, GU F, et al. Evaluation of productivity and stability of soybean cultivars in China’s Huang-Huai-Hai region[J]. Scientia Agricultura Sinica, 2013, 46(3): 451-462.)
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CHENG Xue-feng.Evolution of Soybean Major Agronomy Characters in Huang-Huai-Hai Region[J].Soybean Science,2011,30(03):585.[doi:10.11861/j.issn.1000-9841.2011.04.0585]
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备注/Memo
收稿日期:2021-10-08