LI Hai-chao,WANG Jin-she,ZHANG Hui,et al.Breeding and Cultivation of A New Super High Yield Soybean Variety Zheng 1307[J].Soybean Science,2022,41(04):504-508.[doi:10.11861/j.issn.1000-9841.2022.04.0504]
超高产大豆新品种郑1307的选育及栽培技术
- Title:
- Breeding and Cultivation of A New Super High Yield Soybean Variety Zheng 1307
- Keywords:
- soybean; Zheng 1307; breeding; high yield; cultivation techniques
- 文献标志码:
- A
- 摘要:
- 郑1307由河南省农业科学院以郑9805为母本,以周豆23为父本,有性杂交,系谱法选育而成。该品种高产稳产性突出,2017—2018年河南省区域试验,平均产量2 981.6 kg?hm-2,比对照品种豫豆22增产18.8%;2017—2018年国家黄淮南片区试,平均产量3 062.25 kg?hm-2,比对照品种中黄13增产14.8%;2018年生产试验,平均产量3 145.5 kg?hm-2,平均比对照中黄13增产16.2%;2018—2020年分别在山东梁山、河南新乡县和河南辉县实收4.08,6.70和7.33 hm2,平均产量分别为4 339.5,4 546.8和4 638.6 kg?hm-2,创造了大面积实收的高产典型。郑1307于2019年通过国家黄淮南片和河南省审定,审定编号分别为国审豆20190018和豫审豆20190012。
- Abstract:
- Zheng 1307 was bred by Henan Academy of Agricultural Sciences with Zheng 9805 as female parent and Zhoudou 23 as male parent through sexual hybridization and pedigree method. This variety has outstanding high and stable yield. In the regional test of Henan Province from 2017 to 2018, the average yield was 2 981.6 kg?ha-1, 18.8% higher than the control variety Yudou 22. From 2017 to 2018, the average yield of the national Huang Huai south regional trial was 3 062.25 kg?ha-1, 14.8% higher than that of the control variety Zhonghuang 13. In the production test in 2018, the average yield was 3 145.5 kg?ha-1, an average increase of 16.2% compared with the control Zhonghuang 13. From 2018 to 2020, Zheng 1307 had an average output of 4 339.5, 4 546.8 and 4 638.6 kg?ha-1, in Liangshan(4.08 ha), Shandong,Xinxiang(6.70 ha) and Huixian(7.33 ha), Henan, respectively, creating a high-yield model of large-area paid-in. Zheng 1307 passed the south Huang-Huai area and Henan province examination and approval in 2019 with the approval numbers of 20190018 and 20190012, respectively.
参考文献/References:
[1]郭泰,郭美玲,冯宪忠,等. 矮杆耐密植大豆新品种合农91选育与高产创建[J]. 大豆科学, 2019,38(4): 664-667. (GUO T, GUO M L, FENG X Z, et al. Breeding and high yield establishment of dwarf stalks resistant to dense planting new soybean variety Henong 91[J]. Soybean Science, 2019,38(4): 664-667.) [2]赵璇,金素娟,牛宁,等. 抗病高产广适大豆新品种石豆17的选育及栽培技术要点[J]. 河北农业科学, 2019,23(5): 80-82.(ZHAO X, JIN S J, NIU N, et al. Breeding and cultivation technology 〖KG(0.8mm〗of a new soybean variety Shidou 17 with diseaseresistance, high yield and wide adaptability[J]. Journal of Hebei Agricultural Sciences,2019,23(5): 80-82.)[3]李强,王雪娇,李婷,等.早熟高产大豆新品种登科13选育及栽培技术[J]. 大豆科技,2019(3): 81-83.(LI Q, WANG X J, LI T, et al. Breeding and cultivation techniques of a new early maturing and high yield soybean variety Dengke 13[J]. Soybean Science and Technology, 2019(3): 81-83.)[4]史晓蕾,刘兵强,闫龙,等. 高蛋白大豆新品种冀豆23的选育及栽培技术[J]. 大豆科学, 2019,38(4): 497-498.(SHI X L, LIU B Q, YAN L, et al. Breeding of high protein soybean cultivar Jidou 23 and its cultivation technique[J]. Soybean Science, 2019,38(4): 497-498.)[5]牛宁,金素娟,赵璇,等.国审高油高产大豆品种石 885 的选育[J].大豆科学,2019,38(2): 333-334.(NIU N, JIN S J, ZHAO X, et al. Breeding report of high-oil and high-yield soybean cultivar Shi 885[J]. Soybean Science,2019,38(2): 333-334.)[6]张丽亚,周斌,杨勇,等. 国审高蛋白高产大豆蒙1301的选育及栽培技术[J].大豆科学,2019,38(3): 499-500.(ZHANG L Y, ZHOU B, YANG Y, et al. Breeding of high-protein and high-yield soybean variety Meng 1301 and its cultivation technique[J]. Soybean Science,2019,38(3): 499-500.)
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备注/Memo
收稿日期:2022-01-17