Breeding and Characteristics of a New Soybean Mindou 10 for Fresh Consumption
-
摘要:
目的 为加快鲜食大豆品种更新换代,助力福建省乡村振兴及鲜食大豆产业的发展,通过有性杂交系谱选育高产优质的鲜食大豆新品种供推广种植。 方法 以抚鲜5号为母本,K丰72-2为父本进行有性杂交,经系谱选育,聚合父母本优良基因,定向选出组合08B2-1。2017年春进行品比试验,平均鲜荚产量8379.60 kg·hm−2,比毛豆3号(CK)增产16.35%,增产极显著。定名为闽豆10号推荐参加福建省鲜食大豆品种区域试验,闽豆10号在2019—2020年福建省鲜食大豆品种区域试验中,平均鲜荚产量11381.85 kg·hm−2,比CK增产5.40%。 结果 2021年7月通过福建省农作物品种审定委员会审定(闽审豆20210001)。 结论 育成鲜食大豆新品种闽豆10号,该品种荚大粒大,清煮口感香甜柔糯,属中熟鲜食大豆品种,适宜福建省春播种植。 Abstract:Objective To expedite the process of the breeding program on soybean for fresh consumption as well as the rural revitalization in Fujian through vegetable market development, a new high-yield, high-quality variety was obtained. Method The hybridization between Fuxian 5 as female parent and K Feng 72-2 as male parent was carried out and followed by a pedigree selection protocol. Result The hybrid line, 08B2-1, exhibiting desirable genetic traits of the parents was selected for further evaluation. In a spring 2017 trial, it rendered an average fresh pod yield of 8 379.6.40 kg·hm−2, which was 16.35% higher than that of the reference Maodou 3 and was named Mindou 10 for submission to the 2019 and 2020 Fujian Provincial Regional Trial of Fresh Edible Soybean Varieties. At those regional trials, Mindou 10 delivered a fresh pod yield of 11381.85 kg·hm−2, i.e., 5.40% higher than that of Maodou 3. It was officially certified by the Fujian Provincial Committee of Crop Variety Identification in July 2021. Conclusion The newly bred mid-season Mindou 10 soybeans for fresh consumption bore large pods and seeds. When prepared by boiling in plain water, the tender beans tasted delightful and sweet. The cultivar was considered suitable for spring planting in the province. -
Key words:
- fresh-consumption soybean /
- new variety /
- Mindou 10 /
- breeding /
- characteristics
-
表 1 闽豆10号与毛豆3号(CK)主要农艺性状和经济性状比较
Table 1. Main agronomic and economic characteristics of Mindou 10 and Maodou 3
性状
Trait闽豆10号 Mindou 10 对照 CK 2019年
20192020年
2020平均
Average2019年
20192020年
2020平均
Average生育期 Growth period/d 80.71 79.83 80.27 79.14 78.67 78.91 株高 Plant height/cm 45.21 46.54 45.88 38.50 41.17 39.84 茎粗 Stem diameter/cm 0.85 0.84 0.85 0.69 0.81 0.75 主茎节数 Main-stem section number 8.10 7.59 7.85 6.54 7.54 7.04 有效分枝数 Number of branches 3.88 3.09 3.49 3.37 3.73 3.55 单株有效荚数 Number of pods 39.69 32.61 36.15 25.76 30.09 27.93 单株荚重 Fresh yield per plant/g 106.77 73.91 90.34 74.02 73.20 73.61 百粒鲜重 100-fresh seeds weight/g 75.10 73.88 74.79 78.49 82.48 80.49 单株标准荚数 Standard pods per plant 26.32 25.79 26.06 17.07 22.93 20.00 标准荚长 Standard pod length/cm 5.63 5.71 5.67 6.14 6.00 6.07 标准荚宽 Standard pod width/cm 1.38 1.38 1.38 1.37 1.43 1.40 每千克标准荚数 Number of standard pods per kilogram 319.63 331.59 325.61 269.01 286.99 278.00 生育期指播种出苗至采青日数。
Growth period represents days from seedling emergence to pod harvesting.表 2 闽豆10号与毛豆3号(CK)在福建省区域试验中的产量比较
Table 2. Production yields of Mindou 10 and Maodou 3 at provincial regional trials in Fujian
年份
Year鲜荚产量
Fresh pod yield/(kg·hm−2)增产率
Yield increase rate/%标准荚产量
Standard pod yield/(kg·hm−2)增产率
Yield increase rate/%标准荚率
Standard pod rate/%闽豆10号
Mindou 10对照
CK闽豆10号
Mindou 10对照
CK2019 11818.20 10690.20 10.55** 8750.85 8586.15 1.92 74.05 2020 10945.35 10907.85 0.34 8098.05 8375.10 −3.31 73.99 平均 Average 11381.85 10799.03 5.40 8424.45 8480.63 −0.66 74.02 表 3 闽豆10号与毛豆3号(CK)各试点小区产量
Table 3. Yield performance of Mindou 10 at 2019 and 2020 provincial regional trials in Fujian
单位:kg 年份
Year品种
Variety南平
Nanping漳州
Zhangzhou莆田
Putian连江
Lianjiang翔安
Xiang’an明溪
Mingxi泉州
Quanzhou平均
Average2019 闽豆10号 Mindou 10 17.50 18.61 15.13 15.27 14.65 16.35 12.77 15.75 对照 CK 10.00 18.73 13.30 15.10 15.57 15.32 11.73 14.25 试点平均 Average 13.78 18.09 13.98 15.22 17.24 12.40 11.97 14.67 2020 闽豆10号 Mindou 10 12.37 12.60 15.67 12.80 15.78 16.73 16.18 14.59 对照 CK 10.80 18.10 15.11 11.27 15.70 14.68 16.09 14.54 试点平均 Average 10.91 15.15 13.97 11.99 16.03 15.72 15.98 14.25 表 4 闽豆10号与毛豆3号在福建省区域试验的丰产性及稳定性分析
Table 4. High and stable yield performance of Mindou 10 and Maodou 3 at provincial regional trials in Fujian
年份
Year品种
Variety丰产性参数
Fertility parameters稳定性参数
Stability parameters小区产量
Plot
yield/kg效应值
Effective
value标准差
Standard
deviation变异系数
Coefficient of
variation/%稳定性系数
Stability
coefficient回归方程
Regression
equation综合评价
Comprehensive
evaluation2019 闽豆10号 Mindou 10 15.75 1.09 5.028 14.23 0.3785 y=10.2010+0.378 5x 好
Good
对照 CK 14.25 −0.42 4.212 14.40 0.8669 y=1.5343+0.866 9x 较好
Fairly good2020 闽豆10号 Mindou 10 14.59 0.34 2.082 9.89 0.6834 y=4.8533+0.683 4x 好
Good对照 CK 14.54 0.29 1.858 9.38 1.0953 y=-1.0722+1.095 3x 好
Good表 5 闽豆10号测试报告
Table 5. Test report on Mindou 10
品种
Variety粗蛋白
Crude protein/%粗脂肪
Crude fat/%总糖
Total sugar/%淀粉
Starch/%粗纤维
Crude fiber/%维生素C
Vitamin C/(mg·g−1)闽豆10号 Mindou 10 12.46 5.10 3.40 6.65 4.10 0.27 表 6 闽豆10号和毛豆3号炭疽病抗性鉴定
Table 6. Certifications on resistance of Mindou 10 and Maodou 3 to Anthracnose
品种
Variety年份
Year病情指数
Disease index抗性评价
Resistance evaluation闽豆10号
Mindou 102019 17.21 中抗 Middle resistance 2020 45.08 感病 Susceptible 对照 CK 2019 62.84 高感 Highly susceptible 2020 50.62 感病 Susceptible -
[1] KIM S Y, KIM B M, KIM J B, et al. Effect of steaming, blanching, and high temperature/high pressure processing on the amino acid contents of commonly consumed Korean vegetables and pulses [J]. Preventive Nutrition and Food Science, 2014, 19(3): 220−226. doi: 10.3746/pnf.2014.19.3.220 [2] JUWATTANASOMRAN R, SOMTA P, CHANKAEW S, et al. A SNP in GmBADH2 gene associates with fragrance in vegetable soybean variety “Kaori” and SNAP marker development for the fragrance [J]. TAG Theoretical and Applied Genetics Theoretische Und Angewandte Genetik, 2011, 122(3): 533−541. doi: 10.1007/s00122-010-1467-6 [3] RAO M S S, BHAGSARI A S, MOHAMED A I. Fresh green seed yield and seed nutritional traits of vegetable soybean genotypes [J]. Crop Science, 2002, 42(6): 1950−1958. doi: 10.2135/cropsci2002.1950 [4] 韩天富, 盖钧镒. 世界菜用大豆生产、贸易和研究的进展 [J]. 大豆科学, 2002, 21(4):278−284. doi: 10.3969/j.issn.1000-9841.2002.04.009HAN T F, GAI J Y. Advances in production, trade and research of vegetable soybeans in the world [J]. Soybean Science, 2002, 21(4): 278−284.(in Chinese) doi: 10.3969/j.issn.1000-9841.2002.04.009 [5] 曾新宇, 孙学映, 宗洪霞, 等. 重庆市鲜食大豆产业发展优势、问题与对策分析 [J]. 南方农业, 2018, 12(1):41−45.ZENG X Y, SUN X Y, ZONG H X, et al. Analysis on the development advantages, problems and countermeasures of fresh soybean industry in Chongqing [J]. South China Agriculture, 2018, 12(1): 41−45.(in Chinese) [6] 赵国全. 试论我省种业发展存在的问题与解决思路 [J]. 种子世界, 2017(10):3. doi: 10.3969/j.issn.1000-8071.2017.10.003ZHAO G Q. Research on problems and solutions in the development of seed industry in our province [J]. Seed World, 2017(10): 3.(in Chinese) doi: 10.3969/j.issn.1000-8071.2017.10.003 [7] 姜永平, 吴春芳, 陈惠, 等. 鲜食大豆区试高产性、稳产性分析方法的评选 [J]. 金陵科技学院学报, 2006, 22(3):17−21. doi: 10.3969/j.issn.1672-755X.2006.03.005JIANG Y P, WU C F, CHEN H, et al. The evaluation and selection of the high-yield and stable-yield analysis method in fresh edible soybean regional test [J]. Journal of Jinling Institute of Technology, 2006, 22(3): 17−21.(in Chinese) doi: 10.3969/j.issn.1672-755X.2006.03.005 [8] 周旭梅, 高洪敏, 高旭东. 丹玉311在西北春玉米区的丰产性、稳产性和适应性分析 [J]. 中国种业, 2020(12):50−53. doi: 10.3969/j.issn.1671-895X.2020.12.016ZHOU X M, GAO H M, GAO X D. Analysis on fertility, stability and adaptability of Danyu 311 in northwest spring maize area [J]. China Seed Industry, 2020(12): 50−53.(in Chinese) doi: 10.3969/j.issn.1671-895X.2020.12.016 [9] 汪涛, 钟荣顺, 高智谋. 大豆炭疽病菌(Colletotrichum truncatum)的营养生理研究 [J]. 菌物研究, 2006, 4(3):91−93. doi: 10.3969/j.issn.1672-3538.2006.03.021WANG T, ZHONG R S, GAO Z M. Studies on the nutritive physiological characteristics of Colletotrichum truncatum [J]. Journal of Fungal Research, 2006, 4(3): 91−93.(in Chinese) doi: 10.3969/j.issn.1672-3538.2006.03.021 [10] 王国荣, 孙志峰, 陈吴健, 等. 大豆豆荚炭疽病有效杀菌剂的筛选与防治适期研究 [J]. 浙江农业学报, 2012, 24(2):258−262. doi: 10.3969/j.issn.1004-1524.2012.02.015WANG G R, SUN Z F, CHEN W J, et al. Screening of effective fungicides and optimum period for controlling soybean pod anthracnose [J]. Acta Agriculturae Zhejiangensis, 2012, 24(2): 258−262.(in Chinese) doi: 10.3969/j.issn.1004-1524.2012.02.015 [11] 石妞妞, 杜宜新, 何艳琴, 等. 中国590份大豆种质资源对炭疽病的抗性鉴定及评价 [J]. 福建农业学报, 2021, 36(1):41−52.SHI N N, DU Y X, HE Y Q, et al. Assessment on anthracnose-resistance of 590 soybean cultivars in China [J]. Fujian Journal of Agricultural Sciences, 2021, 36(1): 41−52.(in Chinese) [12] 中华人民共和国农业农村部. 鲜食大豆品种品质: NY/T 3705—2020[S]. [13] GUOQIANG LIN R H. Dynamic metabolic profiling in vegetable soybean seed development [J]. Emirates Journal of Food and Agriculture, 2018, 30(2): 90−98. [14] ZHANG Y M, HU R F, LI H W, et al. Proteomics changes in filling seeds of vegetable soybean [J]. HortScience, 2016, 51(11): 1397−1401. doi: 10.21273/HORTSCI10911-16 [15] 张秋英, 李彦生, 刘长锴, 等. 菜用大豆食用品质关键组分及其积累动态研究 [J]. 作物学报, 2015, 41(11):1692−1700. doi: 10.3724/SP.J.1006.2015.01692ZHANG Q Y, LI Y S, LIU C K, et al. Key components of eating quality and their dynamic accumulation in vegetable soybean varieties[Glycine max(L. ) merr.] [J]. Acta Agronomica Sinica, 2015, 41(11): 1692−1700.(in Chinese) doi: 10.3724/SP.J.1006.2015.01692