Chinese Agricultural Science Bulletin ›› 2023, Vol. 39 ›› Issue (33): 114-118.doi: 10.11924/j.issn.1000-6850.casb2022-0999
Previous Articles Next Articles
ZHANG Ruifang1(), FENG Yunchao1,2(
), YIN Qishi1, ZHAO Wen1, YANG Lian1,2
Received:
2022-11-23
Revised:
2023-03-15
Online:
2023-11-25
Published:
2023-11-22
ZHANG Ruifang, FENG Yunchao, YIN Qishi, ZHAO Wen, YANG Lian. Maize Dwarf Mutant DN132610: Major Gene + Polygene Genetic Model and Genetic Effect Analysis[J]. Chinese Agricultural Science Bulletin, 2023, 39(33): 114-118.
Add to citation manager EndNote|Ris|BibTeX
URL: https://www.casb.org.cn/EN/10.11924/j.issn.1000-6850.casb2022-0999
亲本 | 株高/cm | 峰度 | 变异系数(CV)/% |
---|---|---|---|
P1 | 166.70±10.77A | -1.04 | 6.46 |
F1 | 144.70±5.29 | -0.28 | 3.65 |
P2 | 139.43±10.14B | 2.15 | 7.27 |
B1 | 138.96±13.82 | 0.47 | 9.94 |
B2 | 135.65±14.11 | -0.33 | 10.40 |
F2 | 156.02±19.01 | 3.25 | 12.10 |
亲本 | 株高/cm | 峰度 | 变异系数(CV)/% |
---|---|---|---|
P1 | 166.70±10.77A | -1.04 | 6.46 |
F1 | 144.70±5.29 | -0.28 | 3.65 |
P2 | 139.43±10.14B | 2.15 | 7.27 |
B1 | 138.96±13.82 | 0.47 | 9.94 |
B2 | 135.65±14.11 | -0.33 | 10.40 |
F2 | 156.02±19.01 | 3.25 | 12.10 |
世代 | 株高次数分布 | 平均值±标准差/cm | ||||||||||
---|---|---|---|---|---|---|---|---|---|---|---|---|
57~ | 72~ | 87~ | 102~ | 117~ | 132~ | 147~ | 162~ | 177~ | 192~ | 207~ | ||
P1 | 0 | 0 | 0 | 0 | 0 | 1 | 11 | 11 | 7 | 0 | 0 | 166.70±10.77A |
F1 | 0 | 0 | 0 | 0 | 0 | 21 | 9 | 0 | 0 | 0 | 0 | 144.70±5.29 |
P2 | 0 | 0 | 0 | 1 | 3 | 18 | 8 | 0 | 0 | 0 | 0 | 139.43±10.14B |
B1 | 0 | 0 | 2 | 10 | 19 | 56 | 44 | 3 | 0 | 0 | 0 | 138.96±13.82 |
B2 | 0 | 0 | 2 | 14 | 53 | 58 | 24 | 5 | 0 | 0 | 0 | 135.65±14.11 |
F2 | 1 | 1 | 9 | 9 | 12 | 18 | 62 | 75 | 13 | 0 | 0 | 156.02±19.01 |
世代 | 株高次数分布 | 平均值±标准差/cm | ||||||||||
---|---|---|---|---|---|---|---|---|---|---|---|---|
57~ | 72~ | 87~ | 102~ | 117~ | 132~ | 147~ | 162~ | 177~ | 192~ | 207~ | ||
P1 | 0 | 0 | 0 | 0 | 0 | 1 | 11 | 11 | 7 | 0 | 0 | 166.70±10.77A |
F1 | 0 | 0 | 0 | 0 | 0 | 21 | 9 | 0 | 0 | 0 | 0 | 144.70±5.29 |
P2 | 0 | 0 | 0 | 1 | 3 | 18 | 8 | 0 | 0 | 0 | 0 | 139.43±10.14B |
B1 | 0 | 0 | 2 | 10 | 19 | 56 | 44 | 3 | 0 | 0 | 0 | 138.96±13.82 |
B2 | 0 | 0 | 2 | 14 | 53 | 58 | 24 | 5 | 0 | 0 | 0 | 135.65±14.11 |
F2 | 1 | 1 | 9 | 9 | 12 | 18 | 62 | 75 | 13 | 0 | 0 | 156.02±19.01 |
模型代码 | 模拟含义 | AIC值 | 极大对数似然函数值 |
---|---|---|---|
A-1 | 1MG-AD | 4806.14 | -2399.07 |
A-2 | 1MG-A | 4833.90 | -2413.95 |
A-3 | 1MG-EAD | 4879.27 | -2436.64 |
A-4 | 1MG-NCD | 4801.15 | -2397.58 |
B-1 | 2MG-ADI | 4681.29 | -2330.65 |
B-2 | 2MG-AD | 4730.52 | -2359.26 |
B-3 | 2MG-A | 4830.40 | -2411.20 |
B-4 | 2MG-EA | 4865.56 | -2429.78 |
B-5 | 2MG-CD | 4846.73 | -2419.36 |
B-6 | 2MG-EAD | 4890.68 | -2442.34 |
C-0 | PG-ADI | 4669.92 | -2324.96 |
C-1 | PG-AD | 4845.21 | -2415.61 |
D-0 | MX1-AD-ADI | 4662.18 | -2319.09 |
D-1 | MX1-AD-AD | 4775.51 | -2378.76 |
D-2 | MX1-A-AD | 4797.13 | -2390.57 |
D-3 | MX1-EAD-AD | 4818.46 | -2401.23 |
D-4 | MX1-NCD-AD | 4702.11 | -2343.05 |
E-0 | MX2-ADI-ADI | 4650.39 | -2307.20 |
E-1 | MX2-ADI-AD | 4636.55 | -2303.28 |
E-2 | MX2-AD-AD | 4823.89 | -2400.95 |
E-3 | MX2-A-AD | 4630.42 | -2306.21 |
E-4 | MX2-EA-AD | 4782.12 | -2383.06 |
E-5 | MX2-CD-AD | 4746.95 | -2364.47 |
E-6 | MX2-EAD-AD | 4775.50 | -2379.75 |
模型代码 | 模拟含义 | AIC值 | 极大对数似然函数值 |
---|---|---|---|
A-1 | 1MG-AD | 4806.14 | -2399.07 |
A-2 | 1MG-A | 4833.90 | -2413.95 |
A-3 | 1MG-EAD | 4879.27 | -2436.64 |
A-4 | 1MG-NCD | 4801.15 | -2397.58 |
B-1 | 2MG-ADI | 4681.29 | -2330.65 |
B-2 | 2MG-AD | 4730.52 | -2359.26 |
B-3 | 2MG-A | 4830.40 | -2411.20 |
B-4 | 2MG-EA | 4865.56 | -2429.78 |
B-5 | 2MG-CD | 4846.73 | -2419.36 |
B-6 | 2MG-EAD | 4890.68 | -2442.34 |
C-0 | PG-ADI | 4669.92 | -2324.96 |
C-1 | PG-AD | 4845.21 | -2415.61 |
D-0 | MX1-AD-ADI | 4662.18 | -2319.09 |
D-1 | MX1-AD-AD | 4775.51 | -2378.76 |
D-2 | MX1-A-AD | 4797.13 | -2390.57 |
D-3 | MX1-EAD-AD | 4818.46 | -2401.23 |
D-4 | MX1-NCD-AD | 4702.11 | -2343.05 |
E-0 | MX2-ADI-ADI | 4650.39 | -2307.20 |
E-1 | MX2-ADI-AD | 4636.55 | -2303.28 |
E-2 | MX2-AD-AD | 4823.89 | -2400.95 |
E-3 | MX2-A-AD | 4630.42 | -2306.21 |
E-4 | MX2-EA-AD | 4782.12 | -2383.06 |
E-5 | MX2-CD-AD | 4746.95 | -2364.47 |
E-6 | MX2-EAD-AD | 4775.50 | -2379.75 |
模型 | 世代 | U12 | U22 | U32 | nW2 | Dn |
---|---|---|---|---|---|---|
E-1 | P1 | 0.120(0.729) | 0.292(0.588) | 0.673(0.411) | 0.092(0.633) | 0.163(0.326) |
F1 | 7.882(0.005) * | 8.153(0.004) * | 0.300(0.583) | 0.745(0.009) * | 0.263(0.025) * | |
P2 | 2.771(0.095) | 2.370(0.123) | 0.083(0.772) | 0.326(0.120) | 0.188(0.208) | |
B1 | 0.371(0.542) | 1.363(0.243) | 5.332(0.020) * | 0.184(0.301) | 0.088(0.252) | |
B2 | 6.068(0.013) * | 6.207(0.012) * | 0.180(0.670) | 0.577(0.025) * | 0.112(0.040) * | |
F2 | 2.011(0.156) | 1.280(0.257) | 0.933(0.333) | 0.357(0.098) | 0.105(0.028) * | |
E-3 | P1 | 0.043(0.835) | 0.160(0.688) | 0.638(0.424) | 0.084(0.679) | 0.158(0.394) |
F1 | 8.869(0.002) * | 9.270(0.002) * | 0.415(0.519) | 0.839(0.005) * | 0.276(0.016) * | |
P2 | 3.674(0.055) | 3.295(0.069) | 0.026(0.871) | 0.415(0.068) | 0.206(0.135) | |
B1 | 0.527(0.467) | 1.720(0.189) | 5.922(0.014) * | 0.211(0.249) | 0.090(0.231) | |
B2 | 9.085(0.002) * | 9.768(0.001) * | 0.685(0.407) | 0.884(0.004) * | 0.134(0.007) * | |
F2 | 3.268(0.070) | 2.319(0.127) | 0.827(0.363) | 0.498(0.041) * | 0.010(0.010) * |
模型 | 世代 | U12 | U22 | U32 | nW2 | Dn |
---|---|---|---|---|---|---|
E-1 | P1 | 0.120(0.729) | 0.292(0.588) | 0.673(0.411) | 0.092(0.633) | 0.163(0.326) |
F1 | 7.882(0.005) * | 8.153(0.004) * | 0.300(0.583) | 0.745(0.009) * | 0.263(0.025) * | |
P2 | 2.771(0.095) | 2.370(0.123) | 0.083(0.772) | 0.326(0.120) | 0.188(0.208) | |
B1 | 0.371(0.542) | 1.363(0.243) | 5.332(0.020) * | 0.184(0.301) | 0.088(0.252) | |
B2 | 6.068(0.013) * | 6.207(0.012) * | 0.180(0.670) | 0.577(0.025) * | 0.112(0.040) * | |
F2 | 2.011(0.156) | 1.280(0.257) | 0.933(0.333) | 0.357(0.098) | 0.105(0.028) * | |
E-3 | P1 | 0.043(0.835) | 0.160(0.688) | 0.638(0.424) | 0.084(0.679) | 0.158(0.394) |
F1 | 8.869(0.002) * | 9.270(0.002) * | 0.415(0.519) | 0.839(0.005) * | 0.276(0.016) * | |
P2 | 3.674(0.055) | 3.295(0.069) | 0.026(0.871) | 0.415(0.068) | 0.206(0.135) | |
B1 | 0.527(0.467) | 1.720(0.189) | 5.922(0.014) * | 0.211(0.249) | 0.090(0.231) | |
B2 | 9.085(0.002) * | 9.768(0.001) * | 0.685(0.407) | 0.884(0.004) * | 0.134(0.007) * | |
F2 | 3.268(0.070) | 2.319(0.127) | 0.827(0.363) | 0.498(0.041) * | 0.010(0.010) * |
一阶遗传参数 | 估计值 |
---|---|
第1对主基因加性效应da | -11.205 |
第2对主基因加性效应db | -11.205 |
第1对主基因显性效应ha | -28.303 |
第2对主基因显性效应hb | -15.840 |
加性×加性互作i | -10.999 |
加性×显性互作jab | -6.598 |
显性×加性互作jba | -19.061 |
显性×显性互作l | 31.645 |
ha/da | 2.525 |
hb/db | 1.413 |
一阶遗传参数 | 估计值 |
---|---|
第1对主基因加性效应da | -11.205 |
第2对主基因加性效应db | -11.205 |
第1对主基因显性效应ha | -28.303 |
第2对主基因显性效应hb | -15.840 |
加性×加性互作i | -10.999 |
加性×显性互作jab | -6.598 |
显性×加性互作jba | -19.061 |
显性×显性互作l | 31.645 |
ha/da | 2.525 |
hb/db | 1.413 |
[1] |
刘磊. 玉米矮化突变体gad39的遗传分析与分子鉴定[D]. 郑州: 河南农业大学, 2021:01-02.
|
[2] |
何文昭, 王红武, 胡小娇, 等. 玉米株高和穗位高在不同环境下的数量遗传分析[J]. 作物杂志, 2017, 178(3):13-18.
|
[3] |
孙传波, 桑建, 侯佳贤, 等. 玉米抗倒伏性研究进展[J]. 农业与技术, 2022, 42(14):14-17.
|
[4] |
王夏青, 宋伟, 张如养, 等. 玉米茎秆抗倒伏遗传的研究进展[J]. 中国农业科学, 2021, 54(11):2261-2272.
doi: 10.3864/j.issn.0578-1752.2021.11.002 |
[5] |
晏小凤, 汤雯雯, 周玉姝, 等. 玉米倒伏研究进展及应对倒伏的措施[J]. 山东农业科学, 2022, 54(10):153-160.
|
[6] |
李影, 李军, 于明鑫. 玉米倒伏的原因及对策[J]. 农业开发与装备, 2021, 240(12):217-218.
|
[7] |
潘志远, 段燕燕, 常宝学, 等. 不同株高杂交种玉米抗倒伏特性及杂种优势[J]. 新疆农业科学, 2022, 59(7):1590-1597.
doi: 10.6048/j.issn.1001-4330.2022.07.004 |
[8] |
邓妍, 王创云, 赵丽, 等. 行距配置对玉米茎秆抗倒伏特性及光合性能的影响[J]. 中国农学通报, 2017, 33(21):15-20.
doi: 10.11924/j.issn.1000-6850.casb17040091 |
[9] |
王月华, 韩烈保, 曾会明. 植物赤霉素矮化突变研究进展[J]. 中国生物工程杂志, 2006, 26(28):22-27.
|
[10] |
王铁固, 马娟, 张怀胜, 等. 玉米株高主基因+多基因遗传模型分析[J]. 玉米科学, 2012, 20(4):45-49.
|
[11] |
蒋锋, 刘鹏飞, 曾慕衡, 等. 甜玉米株高的多世代遗传分析与QTL定位[J]. 西北农林科技大学学报(自然科学版), 2011, 39(3):67-74.
|
[12] |
李洪戈, 余坤江, 郭婷婷, 等. 甘蓝型油菜无花瓣性状的主基因+多基因遗传分析[J]. 江苏农业学报, 2014, 30(2):253-258.
|
[13] |
许莹莹, 马青美, 傅经效, 等. 玉米株高与穗位高的遗传效应分析[J]. 青岛农业大学学报(自然科学版), 2019, 36(3):171-175,187.
|
[14] |
霍仕平, 晏庆九, 许明陆, 等. 玉米主要株型数量性状的基因效应分析[J]. 玉米科学, 2001(1):12-15.
|
[15] |
doi: 10.1007/s00122-017-3044-8 |
[16] |
doi: 10.1111/tpj.2017.92.issue-5 URL |
[17] |
doi: 10.1111/pbr.2016.135.issue-2 URL |
[18] |
蒋锋, 闫艳, 麦嘉埼, 等. 甜玉米品质性状的主基因+多基因遗传分析[J]. 中国农学通报, 2022, 38(30):14-20.
doi: 10.11924/j.issn.1000-6850.casb2021-1155 |
[19] |
盖钧镒. 植物数量性状遗传体系的分离分析方法研究[J]. 遗传, 2005(1):130-136.
|
[20] |
章元明, 盖钧镒, 戚存扣. 植物数量性状遗传体系检测中回交或自交家系重复试验数据的分析方法[J]. 遗传, 2001(4):329-332.
|
[21] |
吴元奇, 唐兰, 邱贵兰, 等. 一份矮生玉米株高主基因+多基因遗传模式分析[J]. 四川农业大学学报, 2022, 40(3):353-361.
|
[22] |
赵延明. 玉米株高遗传效应及与环境互作效应分析[J]. 中国种业, 2008(S1):53-55.
|
[23] |
曹锡文, 刘兵, 章元明. 植物数量性状分离分析Windows软件包SEA的研制[J]. 南京农业大学学报, 2013, 36(6):1-6.
|
[24] |
王靖天, 张亚雯, 杜应雯, 等. 数量性状主基因+多基因混合遗传分析R软件包SEAv2.0[J]. 作物学报, 2022, 48(6):1416-1424.
doi: 10.3724/SP.J.1006.2022.14088 |
[25] |
邱正高. 糯玉米农艺性状航空诱变效应及遗传模型研究[D]. 重庆大学, 2008:21-28.
|
[26] |
袁谦, 赵永涛, 孟凡奇, 等. 大穗型小麦新种质穗部性状遗传效应分析[J]. 江苏农业科学, 2022, 50(16):86-91.
|
[27] |
范孟媛, 房桂萍, 成玉富, 等. 茄子产量相关性状的遗传分析[J]. 蔬菜, 2022, 380(8):10-18.
|
[28] |
张梦圆. 花生网斑病抗性遗传分析与QTL定位[D]. 洛阳: 河南科技大学, 2022:11-14.
|
[29] |
陈楠. 辣椒10个性状的主基因+多基因遗传分析[D]. 杨凌: 西北农林科技大学, 2022:9-29.
|
[1] | QI Wei, GUO Yuefeng, GUO Zhenning. Effect of Soft Sandstone Compound Soil on the Growth Characteristics of Cucumis sativus [J]. Chinese Agricultural Science Bulletin, 2023, 39(4): 31-36. |
[2] | ZHAO Kai, HUANG Ling, FENG Weiying, SHAO Minmin, WANG Fuyu, CHEN Guiju, ZHANG Yudan, YANG Benzhou, SUN Leiming, YAN Lu, WANG Lin. Effects of Different Sowing Dates and Seeding Rates on the Growth and Yield of Winter Wheat [J]. Chinese Agricultural Science Bulletin, 2023, 39(32): 1-7. |
[3] | WAN Haixia, XU Hao, GUO Yongzhong, HAN Xinsheng, XIAN Hailong. Study on the Effect of Earthworm Treatment on Cattle Manure [J]. Chinese Agricultural Science Bulletin, 2023, 39(32): 158-164. |
[4] | WANG Xinran, HUANG Chao, YANG Yuhui, LIU Fuwei. Experimental Study on Belt Type of Soybean Maize Compound Planting in Jalaid Banner, Inner Mongolia [J]. Chinese Agricultural Science Bulletin, 2023, 39(31): 1-6. |
[5] | LIU Yangyang, WANG Mingtian. Refined Agro-climatic Zoning of Main Food Crops: Taking Zhongjiang County of Sichuan Province as an Example [J]. Chinese Agricultural Science Bulletin, 2023, 39(31): 129-138. |
[6] | YANG Taoyang, SA Rula, YE Ruhan, YANG Hengshan, HAN Feng, WU Qingyun. Effects on Maize Stalk Fermentation: Straw Degrading Bacteria [J]. Chinese Agricultural Science Bulletin, 2023, 39(27): 45-51. |
[7] | ZHAO Jiatao, LIU Mengdao, FU Zhengbo, YANG Xianghong, ZI Shangyong. Preliminary Study on Mixed Cropping Ways of Different Row-type Barley Varieties and the Yield-Increasing Effects [J]. Chinese Agricultural Science Bulletin, 2023, 39(20): 1-5. |
[8] | SHI Zhenyu, LI Xiaoyan, GULINAER·Suoerdahan, XING Zihan. Spatial-temporal Characteristics of Cultivated Land Occupied by Construction Land Expansion in Corn Belt in Central Jilin Province from 1990 to 2019 [J]. Chinese Agricultural Science Bulletin, 2023, 39(11): 80-87. |
[9] | WANG Xin, SONG Shuang, ZHOU Qi, WANG Xiyue, WU Zihao, DONG Shoukun. Effects of Different Concentrations of Growth Promoter and Control Medicament PBOG on Yield of Soybean [J]. Chinese Agricultural Science Bulletin, 2023, 39(10): 1-4. |
[10] | WANG Shaoxin, WANG Baobao, LI Zhongjian, XU Luo, FENG Jianying. Research Context and Trend of Fresh-eating Corn in China [J]. Chinese Agricultural Science Bulletin, 2023, 39(1): 8-15. |
[11] | LUO Xianfu, LIU Wenqiang, PAN Xiaowu, DONG Zheng, LIU Sanxiong, LIU Licheng, YANG Biaoren, SHENG Xinnian, LI Xiaoxiang. Mapping of Plant Height QTL Using NILs Derived from Residual Heterozygous Lines in Rice [J]. Chinese Agricultural Science Bulletin, 2022, 38(9): 1-5. |
[12] | WANG Huanhuan, YANG Qin, PU Hongmei, HE Jin, CHENG Hua, HAN Min, ZHAO Xuechun, WANG Zhiwei, JIN Baocheng. Accuracy Analysis of Soybean Vegetation Coverage Measurement by Photo Line Transect Method [J]. Chinese Agricultural Science Bulletin, 2022, 38(32): 111-118. |
[13] | JIANG Feng, YAN Yan, MAI Jiaqi, LIANG Rilang, ZHOU Jiecheng, LI Pingyao, LIU Pengfei. Quality Traits of Sweet Corn: Major Gene +Polygene Genetic Analysis [J]. Chinese Agricultural Science Bulletin, 2022, 38(30): 14-20. |
[14] | HOU Junfeng, CHEN Bin, BAO Fei, TAN Heping, HAN Hailiang, WANG Guiyue, ZHAO Fucheng. Effects of Different Straw Chemical Mixed Fertilizer Treatments on Growth Characteristics and Yield of Sweet Corn ‘Zhetian 19’ [J]. Chinese Agricultural Science Bulletin, 2022, 38(23): 6-14. |
[15] | CHONG Yang, ZHAO Jiankai, MA Xiucai. Technology Research and System Design of Automatic Forage Observation [J]. Chinese Agricultural Science Bulletin, 2022, 38(22): 126-133. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||