作物杂志,2019, 第4期: 139–147 doi: 10.16035/j.issn.1001-7283.2019.04.021

• 生理生化·植物营养·栽培耕作 • 上一篇    下一篇

喷施表油菜素内酯对籼稻和粳稻花时的影响

夏原野,杜志敏,杨宇尘,宫彦龙,闫志强,徐海   

  1. 沈阳农业大学水稻研究所/农业农村部东北水稻生物学与遗传育种重点实验室/北方超级粳稻育种教育部重点实验室/辽宁省北方粳稻遗传育种重点实验室,110866,辽宁沈阳
  • 收稿日期:2019-01-14 修回日期:2019-06-05 出版日期:2019-08-15 发布日期:2019-08-06
  • 通讯作者: 徐海
  • 作者简介:夏原野,硕士,从事水稻生理与遗传研究
  • 基金资助:
    国家重点研发计划(2017YFD0100502);国家现代农业产业技术体系建设专项资金(CARS-01-11);公益性行业(农业)科研专项-东北超级粳稻目标产量高效育种技术集成与示范项目

Effects of Epi-Brassinolide Treatments on Floret Opening Time of Indica and Japonica Rice

Xia Yuanye,Du Zhimin,Yang Yuchen,Gong Yanlong,Yan Zhiqiang,Xu Hai   

  1. Institute of Rice Research, Shenyang Agricultural University/Key Laboratory of Northeast Rice Biology and Breeding, Ministry of Agriculture and Rural Affairs/Key Laboratory of Northern Japonica Super Rice Breeding, Ministry of Education/Key Laboratory of Northern Japonica Genetics and Breeding of Liaoning Province, Shenyang 110866, Liaoning, China
  • Received:2019-01-14 Revised:2019-06-05 Online:2019-08-15 Published:2019-08-06
  • Contact: Hai Xu

摘要:

以6个籼稻品种和6个粳稻品种为试验材料,于调查花时性状的前日17:00、当日6:00及8:00分别喷施低浓度(0.01mg/L)、中浓度(0.10mg/L)和高浓度(1.00mg/L)的2,4-表油菜素内酯(epi-BR),以喷施不含epi-BR的水溶液为对照,调查6个与花时有关的性状在不同处理间的差异,包括始花时、盛花时、终花时、从始花时到盛花时的时间(简称始-盛时间)、从盛花时到终花时的时间(简称盛-终时间)、开花持续时间(简称始-终时间)。结果显示,不同浓度的epi-BR对供试品种的始花时、盛花时和终花时提前均有促进作用。籼稻品种中,0.10mg/L浓度的epi-BR促进花时提前的效果最明显,而粳稻品种中,1.00mg/L浓度的epi-BR促进花时提前的效果最明显。籼稻上施用高浓度(1.00mg/L)、中浓度(0.10mg/L)的epi-BR可显著缩短始-盛时间;粳稻上只有施用高浓度(1.00mg/L)的epi-BR才能缩短始-盛时间。与对照相比,施用epi-BR可显著延长盛-终时间和始-终时间。供试籼稻品种以调查花时性状的当日6:00喷施epi-BR促进花时提前的效果最为明显,供试粳稻品种以调查花时性状的前日17:00喷施促进花时提前的效果最好。供试籼稻品种比粳稻品种对epi-BR的响应更为敏感。促进籼稻花时提前的最佳处理是调查花时性状的当日6:00喷施中浓度(0.10mg/L)的epi-BR,促进粳稻花时提前的最佳处理是调查花时性状的前日17:00喷施高浓度(1.00mg/L)的epi-BR。

关键词: 表油菜素内酯, 花时, 籼稻, 粳稻

Abstract:

In this study, both six indica varieties and six japonica varieties were used to investigate the dynamics of floret opening. Three concentrations of epi-BR, including 0.01mg/L, 0.10mg/L and 1.00mg/L, were sprayed on the whole plants at 17:00 previous day and 6:00 and 8:00 in the morning investigation day, respectively. Water, no epi-BR, was used as the control (CK). A total of six traits related to the floret opening time, including the flowering begin time (FBT), the vigorous flowering time (VFT), the flowering end time (FET), the time from flowering begin to vigorous flowering (BVT), the time from vigorous flowering to flowering end (VET), and the time from flowering begin to end (BET), were investigated after application of epi-BR on different treatments. Compared to the control, the epi-BR with different concentration could promote the FBT, VFT and EFT of indica and japonica varieties. The floret opening time was dramatically different among the epi-BR treatments with different concentration. The effect of 0.10mg/L epi-BR on promoting flowering time was the best treatment in indica varieties. While the effect of 1.00mg/L epi-BR on promoting flowering time was the best treatment in japonica varieties. 0.10mg/L and 1.00mg/L epi-BR could promote BVT in indica varieties, but only 1.00mg/L BR could promote BVT in ssp. japonica rice. Epi-BR could delay the VET and BET of rice compared to the no epi-BR treatment (CK). The effect of spraying at 6:00 of investigation day on promoting flowering time was the best in ssp. indica rice. The effect of spraying at 17:00 previous day of investigation day on promoting flowering time was the best in ssp. japonica rice. Response of floret opening of ssp. indica rice was more sensitive than that of ssp. japonica rice on epi-BR. Treatment with medium concentration (0.10mg/L) of epi-BR at 6:00 of investigation day was the best treatment to promote flowering of ssp. indica rice. The treatment with heavy concentration (1.00mg/L) of epi-BR at 17:00 previous day of investigation day was the best treatment to promote flowering of ssp. japonica rice.

Key words: Epi-brassinolide, Floret opening time, ssp. indica rice, ssp. japonica rice

图1

不同浓度epi-BR调控籼粳稻花时性状的效果"

表1

不同浓度epi-BR调控籼粳稻花时性状效果的差异"

类型
Type
品种
Cultivar
Epi-BR浓度(mg/L)
Epi-BR concentration
始花时
FBT
盛花时
VFT
终花时
FET
始-盛时间
BVT
盛-终时间
VET
始-终时间
BET
籼稻 泸香618B CK 66.11aA 116.78aA 216.11aA 50.67aA 99.33cC 150.00aA
ssp. indica Luxiang 618B 0.01 50.67bB 100.78bB 201.56bB 50.11aA 100.78cC 150.89aA
0.10 42.44cC 88.56dD 193.56cC 46.11bB 105.00bB 151.11aA
1.00 49.11bB 90.11cC 200.56bB 41.00cC 110.44aA 151.44aA
窄叶青8号 CK 74.67aA 124.44aA 234.11aA 49.78aA 109.67dD 159.44cC
Zhaiyeqing 8 0.01 60.22bB 110.78bB 224.89bB 50.56aA 114.11cC 164.67aAB
0.10 45.11cC 91.33dD 210.22dD 46.22bB 118.89bB 165.11aA
1.00 59.44bB 100.56cC 222.89cC 41.11cC 122.33aA 163.44bB
黄华占 CK 120.89aA 165.89aA 246.22aA 45.00aA 80.33dD 125.33cC
Huanghuazhan 0.01 91.89cC 137.22bB 224.67cC 45.33aA 87.44cC 132.78bB
0.10 79.00dD 120.11dD 211.33dD 41.11bB 91.22bB 132.33bB
1.00 97.56bB 129.33cC 231.78bB 31.78cC 102.44aA 134.22aA
2998B CK 70.33aA 115.56aA 200.44aA 45.22aA 84.89dD 130.11cC
0.01 44.00cC 89.33bB 185.00cC 45.33aA 95.67cC 141.00aA
类型
Type
品种
Cultivar
Epi-BR浓度(mg/L)
Epi-BR concentration
始花时
FBT
盛花时
VFT
终花时
FET
始-盛时间
BVT
盛-终时间
VET
始-终时间
BET
0.10 39.22dD 76.33dD 179.22dD 37.11bB 102.89bB 140.00aAB
1.00 49.11bB 80.00cC 187.67bB 30.89cC 107.67aA 138.56bB
明恢100 CK 99.89aA 160.44aA 240.67aA 60.56aA 80.22dD 140.78cB
Minghui100 0.01 69.22cC 128.56bB 224.89cC 59.33bA 96.33cC 155.67aA
0.10 62.89dD 107.67dD 217.56dD 44.78cB 109.89bB 154.67abA
1.00 74.11bB 109.89cC 228.44bB 35.78dC 118.56aA 154.33bA
冈46B Gang 46B CK 130.22aA 174.89aA 263.11aA 44.67aA 88.22dD 132.89bB
0.01 105.00cC 149.78bB 249.89cB 44.78aA 100.11cC 144.89aA
0.10 90.33dD 126.44dD 236.22dC 36.11bB 109.78bB 145.89aA
1.00 106.67bB 136.67cC 252.00bB 30.00cC 115.33aA 145.33aA
粳稻 越光Koshihikari CK 140.44aA 192.11aA 281.33aA 51.67aA 89.22cC 140.89bB
ssp.japonica 0.01 125.11bB 176.44bB 275.22bB 51.33aA 98.78bB 150.11aA
0.10 119.33cC 171.11cC 269.67cC 51.78aA 98.56bB 150.33aA
1.00 113.44dD 159.56dD 263.67dD 46.11bB 104.11aA 150.22aA
里歌Lige CK 190.22aA 250.00aA 350.00aA 59.78aA 100.00cC 159.78bB
0.01 178.67bB 239.11bB 345.22bB 60.44aA 106.11bB 166.56aA
0.10 177.89bB 237.89bB 344.33bB 60.00aA 106.44bB 166.44aA
1.00 166.56cC 211.89cC 333.00cC 45.33bB 121.11aA 166.44aA
丰锦Toyonishike CK 175.44aA 230.67aA 299.11aA 55.22aA 68.44dC 123.67bB
0.01 148.56bB 204.11bB 284.22bB 55.56aA 80.11cB 135.67aA
0.10 147.11cC 202.11cC 283.67bB 55.00aA 81.56bB 136.56aA
1.00 141.67dD 187.78dD 277.56cC 46.11bB 89.78aA 135.89aA
秋光Akihikari CK 170.22aA 215.33aA 304.89aA 45.11aA 89.56cC 134.67cB
0.01 160.44bB 204.89bB 296.56bB 44.44aA 91.67bB 136.11abA
0.10 159.67bB 204.67bB 296.33bB 45.00aA 91.67bB 136.67aA
1.00 146.89cC 185.56cC 282.56cC 38.67bB 97.00aA 135.67bAB
秋田小町 CK 150.89aA 220.00aA 330.44aA 69.11aA 110.44cC 179.56bB
Akitakaomaqi 0.01 131.00bB 198.67cB 324.22cC 69.56aA 125.56bB 195.11aA
0.10 129.11cC 200.44bB 327.00bB 69.44aA 126.56bB 196.00aA
1.00 121.33dD 171.44dD 316.78dD 50.11bB 145.33aA 195.44aA
一目惚Yimuhu CK 180.56aA 239.89aA 321.11aA 59.33aA 81.22cC 140.56bB
0.01 159.33bB 219.89bB 309.56bB 60.56aA 89.67bB 150.22aA
0.10 159.22bB 219.56bB 309.78bB 60.33aA 90.22bB 150.56aA
1.00 150.22cC 195.89dD 300.33cC 45.67bB 104.44aA 150.11aA

图2

不同时间喷施epi-BR调控籼粳稻花时性状的效果"

表2

不同时间喷施epi-BR对籼粳稻花时性状调控效果的差异"

类型
Type
品种
Cultivar
喷施时间
Spraying time
始花时
FBT
盛花时
VFT
终花时
FET
始-盛时间
BVT
盛-终时间
VET
始-终时间
BET
籼稻 泸香618B Luxiang 618B 调查前日17:00 51.00aA 101.83aA 205.17aA 46.92aA 103.33aA 150.25aA
ssp. indica 调查当日6:00 41.00bB 94.17bB 198.08bB 46.92aA 103.92aA 150.83aA
调查当日8:00 50.22aA 101.17aA 205.58aA 47.08aA 104.42aA 151.50aA
窄叶青8号Zhaiyeqing 8 调查前日17:00 61.83aA 109.00aA 225.25aA 47.17aA 116.25aA 163.42aA
调查当日6:00 55.25bB 102.42bB 218.33bB 47.17aA 115.92aA 163.08aA
调查当日8:00 62.50aA 108.92aA 225.50aA 46.42aA 116.58aA 163.00aA
黄华占Huanghuazhan 调查前日17:00 99.00aA 139.50aA 229.67aA 40.50aA 90.17aA 130.67aA
调查当日6:00 94.00bB 135.08bB 225.42bB 41.08aA 90.33aA 131.42aA
调查当日8:00 99.00aA 139.83aA 230.42aA 40.83aA 90.58aA 131.42aA
2998B 调查前日17:00 52.50aA 92.67aA 190.17aA 40.17aA 97.50aA 137.67aA
调查当日6:00 47.17bB 86.33bB 183.92bB 39.17aA 97.58aA 136.75aA
调查当日8:00 52.33aA 91.92aA 190.17aA 39.58aA 98.25aA 137.83aA
明恢100 Minghui 100 调查前日17:00 79.33aA 129.50aA 230.25aA 50.17aA 100.75aA 150.92aA
类型
Type
品种
Cultivar
喷施时间
Spraying time
始花时
FBT
盛花时
VFT
终花时
FET
始-盛时间
BVT
盛-终时间
VET
始-终时间
BET
调查当日6:00 71.75bB 121.00bB 223.42bB 49.25aA 102.42aA 151.67aA
调查当日8:00 78.50aA 129.42aA 230.00aA 50.92aA 100.58aA 151.50aA
冈46B Gang 46B 调查前日17:00 109.83aA 149.08aA 252.17aA 39.25aA 103.08aA 142.33aA
调查当日6:00 103.67bB 142.17bB 246.08bB 38.50aA 103.92aA 142.42aA
调查当日8:00 110.67aA 149.58aA 252.67aA 38.92aA 103.08aA 142.00aA
粳稻 越光Koshihikari 调查前日17:00 120.67cC 170.92cB 268.17bB 50.25aA 97.25aA 147.50aA
ssp. japonica 调查当日6:00 125.50bB 176.08bA 273.92aA 50.58aA 97.83aA 148.42aA
调查当日8:00 127.58aA 177.42aA 275.33aA 49.83aA 97.92aA 147.75aA
里歌Lige 调查前日17:00 175.00bB 231.42bB 339.58bC 56.42aA 108.17aA 164.58aA
调查当日6:00 154.75aA 235.92aA 344.25bA 56.25aA 108.33aA 164.58aA
调查当日8:00 180.33aA 236.83aA 345.58aA 56.50aA 108.75aA 165.25aA
丰锦Toyonishike 调查前日17:00 149.00cC 201.83cB 281.83cB 52.83aA 80.00aA 132.83aA
调查当日6:00 154.75bB 207.92bA 287.83bA 53.17aA 79.92aA 133.08aA
调查当日8:00 155.83aA 208.75aA 288.75aA 52.92aA 80.00aA 132.92aA
秋光Akihikari 调查前日17:00 156.00bB 199.25cB 291.42bB 43.25aA 92.17aA 135.42aA
调查当日6:00 160.58aA 203.75bA 296.92aA 43.17aA 93.17aA 136.33aA
调查当日8:00 161.33aA 204.83aA 296.92aA 43.50aA 92.08aA 135.58aA
秋田小町Akitakaomaqi 调查前日17:00 129.08bB 193.50bB 320.83bB 64.42aA 127.33aA 191.75aA
调查当日6:00 135.08aA 199.75aA 326.16aA 64.67aA 126.42aA 191.08aA
调查当日8:00 135.08aA 199.67aA 326.83aA 64.58aA 127.17aA 191.75aA
一目惚Yimuhu 调查前日17:00 157.67bB 214.75bB 305.67bB 57.08aA 90.92aA 148.00aA
调查当日6:00 164.33aA 220.33aA 312.08aA 56.00aA 91.75aA 147.75aA
调查当日8:00 165.00aA 221.33aA 312.83aA 56.33aA 91.50aA 147.83aA

表3

epi-BR调控籼粳稻花时的最优组合"

品种Cultivar 始花时最优组合Optimal combination of FBT 盛花时最优组合Optimal combination of VFT
泸香618B Luxiang 618B 调查当日6:00喷施0.10mg/L的epi-BR 调查当日6:00时喷施0.10mg/L的epi-BR
窄叶青8号Zhaiyeqing 8 调查当日6:00喷施0.10mg/L的epi-BR 调查当日6:00时喷施0.10mg/L的epi-BR
黄华占Huanghuazhan 调查当日6:00喷施0.10mg/L的epi-BR 调查当日6:00时喷施0.10mg/L的epi-BR
2998B 调查当日6:00喷施0.10mg/L的epi-BR 调查当日6:00时喷施0.10mg/L的epi-BR
明恢100 Minghui 100 调查当日6:00喷施0.10mg/L的epi-BR 调查当日6:00时喷施0.10mg/L的epi-BR
冈46B Gang 46B 调查当日6:00喷施0.10mg/L的epi-BR 调查当日6:00时喷施0.10mg/L的epi-BR
越光Koshihikari 调查前日17:00喷施1.00mg/L的epi-BR 调查前日17:00时喷施1.00mg/L的epi-BR
里歌Lige 调查前日17:00喷施1.00mg/L的epi-BR 调查前日17:00时喷施1.00mg/L的epi-BR
丰锦Toyonishiki 调查前日17:00喷施1.00mg/L的epi-BR 调查前日17:00时喷施1.00mg/L的epi-BR
秋光Akihikari 调查前日17:00喷施1.00mg/L的epi-BR 调查前日17:00时喷施1.00mg/L的epi-BR
秋田小町Akitakaomaqi 调查前日17:00喷施1.00mg/L的epi-BR 调查前日17:00时喷施1.00mg/L的epi-BR
一目惚Yimuhu 调查前日17:00喷施1.00mg/L的epi-BR 调查前日17:00时喷施1.00mg/L的epi-BR

表4

籼稻和粳稻对epi-BR响应的敏感性差异"

Epi-BR浓度(mg/L)
Epi-BR concentration
类型
Type
始花时差
DFBT
盛花时差
DVFT
终花时差
DFET
始-盛时间差
DBVT
盛-终时间差
DVET
始-终时间差
DBET
CK 籼稻ssp. indica -93.69 -143.00 -233.44 49.31 90.44 139.76
粳稻ssp. japonica -167.96** -224.67** -314.48** -56.70 89.81 146.52
0.01 籼稻ssp. indica -23.52 -23.59 -14.96** -0.07 8.63 8.56
粳稻ssp. japonica -17.44 -14.48 -8.65 -0.28 8.83 9.11
0.10 籼稻ssp. indica -33.85** -41.26** -25.33** -7.41** 15.83 8.43
粳稻ssp.japonica -19.24 -18.70 -9.35 -0.22 9.35 9.57
1.00 籼稻ssp. indica -21.02 -35.24 -12.89 -14.22 22.35 8.13
粳稻ssp. japonica -27.94** -39.31 -18.83** -11.37 20.48 9.11
[1] 袁隆平 . 杂交水稻超高产育种. 杂交水稻, 1997,12(6):1-3.
[2] 陈温福, 徐正进, 张龙步 , 等. 北方粳型稻超高产育种理论与实践. 中国农业科学, 2007,40(5):869-874.
[3] 万建民 . 中国水稻遗传育种与品种系谱. 北京: 中国农业出版社, 2010: 92-101.
[4] 周燮 . 新发现的植物激素. 南京: 江苏科学技术出版社, 2010: 10-71.
[5] 曾晓春, 周燮 . 茉莉酸甲酯诱导水稻颖花开放. 植物学报, 1999,41(5):560-562.
[6] 林俊城, 田小海, 殷桂香 , 等. 人工调节籼型杂交水稻不育系花时的研究. 中国农业科学, 2008,41(8):2474-2479.
[7] 张从合, 陈金节, 王合勤 , 等. 光温敏核不育系广占63S开花习性观察. 安徽农业科学, 2003,31(5):715-717.
[8] 闫志强, 徐海, 马作斌 , 等. 籼稻与粳稻花时对茉莉酸甲酯(MeJA)响应的敏感性差异. 中国农业科学, 2014,47(13):2529-2540.
doi: 10.3864/j.issn.0578-1752.2014.13.005
[9] 闫志强, 徐海, 宫彦龙 , 等. 籼粳稻的花时对乙烯利调控的响应及其敏感性差异. 沈阳农业大学学报, 2015,46(6):641-647.
[10] Krumova S, Zhiponova M, Dankov K , et al. Taneva brassinosteroids regulate the thylakoid membrane architecture and the photosystem II function. Journal of Photochemistry and Photobiology B:Biology, 2013,126:97-104.
[11] Szekeres M, Németh K, Koncz-Kálmán Z , et al. Brassinosteroids rescue the deficiency of CYP90,a Cytochrome P450,controlling cell elongation and deetiolation in Arabidopsis. Cell, 1996,85(2):171-182.
[12] Jaillais Y, Vert G . Brassinosteroids,gibberellins and light-mediated signalling are the three-way controls of plant sprouting. Nature Cell Biology, 2012,14(8):788-790.
[13] 姜树坤, 黄成, 徐正进 , 等. 粳稻株高QTL 与赤霉素和油菜素内酯合成及信号转导基因相关分析. 中国农业科学, 2010,43(14):2829-2838.
[14] 王红红, 李凯荣, 侯华伟 . 油菜素内酯提高植物抗逆性的研究进展. 干旱地区农业研究, 2005,23(3):213-219.
[15] 宋平, 夏凯, 吴传万 , 等. 雄性不育和可育水稻开颖对茉莉酸甲酯响应的差异. 植物学报, 2001,43(5):480-485.
[16] 程式华 . 中国超级稻育种技术创新与应用. 中国农业科学, 2016,49(2):205-206.
[17] 徐正进, 陈温福 . 中国北方粳型超级稻研究进展. 中国农业科学, 2016,19(2):239-250.
[18] 林建荣, 宋昕蔚, 吴明国 , 等. 籼粳超级杂交稻育种技术创新与品种培育. 中国农业科学, 2016,49(2):207-218.
[19] 袁隆平 . 两系杂交水稻研究的进展. 中国农业科学, 1990,23(3):1-6.
[20] Kojima S, Takahashi Y, Kobayashi Y , et al. Hd3a,a rice ortholog of the arabidopsis FT gene,promotes transition to flowering downstream of Hd1 under short-day conditions. Plant Cell Physiology, 2002,43(10):1096-1105.
[21] Yano M, Katayose Y, Ashikari M , et al. Hd1,a major photoperiod sensitivity quantitative trait locus in rice,is closely related to the Arabidopsis flowering time gene CONSTANS. Plant Cell, 2000,12:2473-2484.
[22] Shelley R H, Federico V, Dean R , et al. Antagonistic regulation of flowering-time gene SOC1 by CONSTANS and FLC via separate promoter motifs. EMBO Journal, 2002,21(16):4327-4337.
[23] Wei F J, Tsai Y C, Wu H P , et al. Both Hd1 and Ehd1 are important for artificial selection of flowering time in cultivated rice. Plant Science, 2016,242:187-194.
[24] 黄大军, 陈国荣, 贺良 , 等. 花信灵在粳稻不育系繁殖中的应用研究. 西南农业学报, 2005,18(30):256-259.
[25] 王忠, 顾蕴洁, 高煜珠 . 水稻开颖机理的探讨—Ⅳ.水稻小穗轴的结构及其开闭颖的关系. 作物学报, 1992,18(5):331-335.
[26] 王忠, 顾蕴洁, 高煜珠 . 水稻开颖机理的探讨—Ⅲ.浆片的结构及其在开颖过程中内含物的变化. 作物学报, 1991,17(2):96-101.
[27] 徐正进, 陈温福, 张龙步 , 等. 水稻穗颈维管束性状的类型间差异及其遗传的研究. 作物学报, 1996,22(2):167-172.
[1] 段斌,方玲,何世界,李慧龙,彭波,宋晓华,胡杨. 基于播期的温度变化对豫南粳稻播始历期和灌浆成熟期的影响[J]. 作物杂志, 2019, (3): 99–105
[2] 唐双勤,吴自明,谭雪明,曾勇军,石庆华,潘晓华,曾研华. 直播早籼稻品种芽期耐冷性鉴定研究[J]. 作物杂志, 2019, (1): 159–167
[3] 张丽丽,赵一洲,李鑫,毛艇,刘研,张战,倪善君,刘福才. 60Co-γ射线辐照对不同粳稻品种后代稻米品质性状变异的影响[J]. 作物杂志, 2018, (3): 51–56
[4] 杜志敏,杨宇尘,夏原野,宫彦龙,闫志强,徐海. 收获期对北方杂交粳稻和常规粳稻品质的影响[J]. 作物杂志, 2018, (1): 147–151
[5] 张长海. 大穗型杂交中籼稻灌浆特点及不同天气对其灌浆的影响[J]. 作物杂志, 2017, (6): 109–119
[6] 张喜娟,来永才,孟英,张凤鸣,唐傲,董文军,冷春旭,刘猷红,王麒. 种植方式对寒地粳稻生育期、产量和温度利用的影响[J]. 作物杂志, 2017, (5): 124–128
[7] 王先俱,张城,庞秀,陈亚君,丁芬,邵国军,徐正进. 北方染败类型杂交粳稻高产制种机制研究[J]. 作物杂志, 2017, (3): 19–24
[8] 程海涛,马兆惠,刘桂林,曹萍,吕文彦. 北方粳稻品种(系)资源淀粉RVA谱特征与品质性状典型相关分析[J]. 作物杂志, 2017, (2): 59–66
[9] 徐锡明,张欣,施利利,崔晶,丁得亮,曲红岩,谷守贤,李永杰. 直链淀粉含量偏低型杂交粳稻组合的稻米品质评价[J]. 作物杂志, 2016, (6): 44–48
[10] 宫彦龙,徐海,夏原野,杜志敏,石笑蕊,徐正进. 幼穗分化期喷施表油菜素内酯(epi-BR)对水稻穗部性状的影响[J]. 作物杂志, 2016, (2): 133–138
[11] 全东兴,孟维韧,金成海,周广春. 海南生态条件对杂交粳稻BT型不育系开花习性的影响[J]. 作物杂志, 2016, (1): 28–32
[12] 董立强,叶靖,王术,贾宝艳,黄元财,王岩. 播种量对北方寒地旱直播粳稻产量和光合特性的影响[J]. 作物杂志, 2016, (1): 86–92
[13] 郭丽颖, 赵宏伟, 王敬国, 等. 粳稻单株产量及其构成因素的关联分析[J]. 作物杂志, 2015, (5): 25–30
[14] 陈宾宾, 邹德堂, 张皓正, 等. 灌溉方式和氮肥用量对寒地粳稻子粒灌浆形成和产量的影响[J]. 作物杂志, 2015, (1): 91–98
[15] 李洪亮, 柴永山, 孙玉友, 等. 寒地粳稻产量及其构成因素间的相关及通径分析[J]. 作物杂志, 2014, (5): 26–28
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
[1] 李红燕,王永宏,赵如浪,张文杰,明博,谢瑞芝,王克如,李璐璐,高尚,李少昆. 宁夏引/扬黄灌区玉米子粒脱水模型的构建与应用[J]. 作物杂志, 2018, (4): 149 –153 .
[2] 温辉芹,程天灵,裴自友,李雪,张立生,朱玫. 山西省近年审定小麦品种的综合性状分析[J]. 作物杂志, 2018, (4): 32 –36 .
[3] 梁海燕, 李海, 林凤仙, 张翔宇, 张知, 宋晓强. 不同糜子品种抗倒伏性田间鉴定及抗倒评价指标的筛选分析[J]. 作物杂志, 2018, (4): 37 –41 .
[4] 何中国,朱统国,李玉发,王佰众,牛海龙,刘红欣,李伟堂,牟书靓. 吉林省花生育种现状及发展方向[J]. 作物杂志, 2018, (4): 8 –12 .
[5] 樊艳丽,董会,卢柏山,史亚兴,高宁,史亚民,徐丽,席胜利,张翠芬,刘焱辉. 播期对不同糯玉米品种淀粉糊化特性的影响[J]. 作物杂志, 2018, (4): 79 –83 .
[6] 朱凯,张飞,柯福来,王艳秋,邹剑秋. 种植密度对适宜机械化栽培高粱品种产量及生理特性的影响[J]. 作物杂志, 2018, (1): 83 –87 .
[7] 范昱,王红力,何凤,赖弟利,王佳俊,宋月,向达兵. 后熟对苦荞子粒营养品质的影响[J]. 作物杂志, 2018, (1): 96 –101 .
[8] 唐梅, 李明昌, 庞晓妮, 等. 优质香稻品种三香628的特征特性及机插高产栽培技术[J]. 作物杂志, 2013, (1): 139 –140 .
[9] 李智. 阜阳三系杂交大豆研究进展[J]. 作物杂志, 2007, (5): 87 –89 .
[10] 韩相林, 程献云, 秦海英, 等. 小麦新品种濮麦9号配套栽培技术[J]. 作物杂志, 2005, (3): 51 .