Crops ›› 2022, Vol. 38 ›› Issue (1): 179-183.doi: 10.16035/j.issn.1001-7283.2022.01.027

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Effects of Spraying Paclobutrazol on Growth and Photosynthetic Characters of Broomcorn Millet

Yan Feng()   

  1. Qiqihar Sub-Academy of Heilongjiang Academy of Agricultural Sciences, Qiqihar 161006, Heilongjiang, China
  • Received:2021-04-02 Revised:2021-12-28 Online:2022-02-15 Published:2022-02-16

Abstract:

In order to investigate effects of paclobutrazol spraying time and concentration on growth and photosynthetic characters of broomcorn millet, Qishu 1 was used as materials, and the randomized block design was conducted. Four concentrations (150, 300, 600, 1200mg/L) of paclobutrazol were applied on broomcorn millet, at the tillering, elongation and booting stage, with distilled water as control. The results showed that spraying of paclobutrazol could change morphological traits of stalk, decrease plant height, increase stem diameter and lodging resistance. The appropriate concentration of paclobutrazol in the growth period of broomcorn millet could promote the net photosynthetic rate, transpiration rate and relative chlorophyll content of broomcorn millet, and the three indexes all increased firstly and then decreased with the increase of paclobutrawl concentration. Spraying paclobutrazol could increase the weight of main spike, grain weight of main spike, and grain yield, and the effect of spraying at tillering stage was better than that of jointing stage and booting stage, but when the concentration was too high, the effect of increasing yield reduced. According to the comprehensive analysis, spraying 300mg/L paclobutrazol at tillering stage could effectively enhance lodging resistance and photosynthetic indexes of millet, which is a suitable cultivation measure for preventing lodging and increasing yield.

Key words: Broomcorn millet, Agronomic trait, Lodging resistance, Paclobutrazol, Photosynthetic characters

Table 1

Effects of paclobutrazol on stem characteristics of broomcorn millet"

喷施时期
Spraying stage
处理
Treatment
主茎高
Height of main
stem (cm)
茎粗
Stem diameter
(cm)
节数
Node
number
分蘖期 清水(CK) 149.5a 0.44f 8.8ab
Tillering 150mg/L 138.4c 0.48d 9.1a
300mg/L 132.6d 0.53bc 8.9ab
600mg/L 123.9e 0.56b 9.0a
1200mg/L 107.3g 0.59a 9.0a
拔节期 150mg/L 141.7bc 0.47de 9.1a
Elongation 300mg/L 137.1c 0.50cd 8.8ab
600mg/L 130.0d 0.54bc 8.9ab
1200mg/L 118.8f 0.56b 9.1a
孕穗期 150mg/L 143.6b 0.46e 8.8ab
Booting 300mg/L 140.9bc 0.49cd 9.0a
600mg/L 137.5c 0.51c 8.9ab
1200mg/L 132.5d 0.52c 9.1a

Table 2

Effects of paclobutrazol on stem lodging indexes of broomcorn millet"

喷施时期
Spraying
stage
处理
Treatment
重心高度
Gravity
center
height
(cm)
茎鲜重
Fresh
weight
of stem
(g)
茎秆
弯折力
Bending
force of
stem (N)
茎秆倒
伏指数
Lodging
index of stem
[(cm·g)/N]
分蘖期 清水(CK) 87.37 64.92 128.15 44.33a
Tillering 150mg/L 83.04 53.6 158.54 28.15e
300mg/L 79.56 48.57 162.49 23.87f
600mg/L 75.34 46.81 167.63 21.42g
1200mg/L 68.38 44.43 158.02 18.84h
拔节期 150mg/L 85.02 58.02 142.67 34.63c
Elongation 300mg/L 82.26 53.37 148.96 29.42de
600mg/L 78.02 50.26 150.75 26.01ef
1200mg/L 71.28 47.74 143.30 23.78f
孕穗期 150mg/L 86.16 61.15 137.84 38.24b
Booting 300mg/L 84.54 58.36 143.51 34.35c
600mg/L 82.58 55.59 147.66 31.15d
1200mg/L 78.51 52.93 139.22 29.84de

Table 3

Effects of paclobutrazol on photosynthesis indices of broomcorn millet"

喷施时期
Spraying
stage
处理
Treatment
SPAD Pn
[μmol/(m2·s)]
Tr
[mmol/(m2·s)]
Ci
[μmol/(m2·s)]
分蘖期
Tillering
清水
(CK)
14.13f 12.75g 2.83e 131.85a
150mg/L 17.77cd 16.56cd 3.41c 114.41d
300mg/L 19.86a 18.43a 4.13a 93.53h
600mg/L 18.64bc 17.64bc 3.75b 102.77f
1200mg/L 17.36cd 15.82d 3.37c 119.02bc
拔节期 150mg/L 17.39cd 16.05d 3.20cd 117.21c
Elongation 300mg/L 19.14b 17.80b 3.93ab 98.63g
600mg/L 18.23c 16.95c 3.43c 105.34e
1200mg/L 16.51de 15.27e 3.09d 122.45b
孕穗期 150mg/L 16.40de 15.16e 3.02d 120.10b
Booting 300mg/L 18.06c 16.78c 3.71b 101.29f
600mg/L 16.95d 15.64d 3.30c 117.38c
1200mg/L 15.36e 14.01f 2.96d 128.53ab

Table 4

Effects of paclobutrazol on yield and its components of broomcorn millet"

喷施时期
Spraying
stage
处理
Treatment
主穗重
Weight of
main
spike (g)
主穗粒重
Grain weight
of main
spike (g)
千粒重
1000-grain
weight
(g)
产量
Yield
(kg/hm2)
分蘖期 清水(CK) 6.31i 4.56h 5.66ab 3357.53f
Tillering 150mg/L 6.93e 5.01de 5.61ab 3548.23c
300mg/L 7.88a 6.58a 5.73a 3863.04a
600mg/L 7.27cd 5.43c 5.74a 3621.99c
1200mg/L 6.66gh 4.87fg 5.66ab 3455.75de
拔节期 150mg/L 6.72fg 4.93efg 5.59b 3479.64d
Elongation 300mg/L 7.50b 5.72b 5.67ab 3731.86b
600mg/L 7.03d 5.10d 5.60ab 3587.61c
1200mg/L 6.64gh 4.83g 5.46c 3463.59d
孕穗期 150mg/L 6.56h 4.88g 5.57b 3421.44e
Booting 300mg/L 7.24c 5.43c 5.73a 3636.32c
600mg/L 6.72ef 5.07def 5.61ab 3475.07de
1200mg/L 6.60gh 4.76g 5.66ab 3444.18de
[1] 陈国秋. 适宜辽西地区种植的糜子品种研究. 现代农业科技, 2008(1):110-113.
[2] 柴岩, 万富世. 中国小杂粮产业发展报告. 北京: 中国农业科学技术出版社, 2007.
[3] 张立媛, 琦明玉, 李志光, 等. 赤峰地区不同光温敏型糜子开花习性研究. 种子, 2019, 38(10):71-76.
[4] 王宇先, 李清泉, 赵蕾, 等. 谷子矮化处理对倒伏性状及产量的影响. 黑龙江农业科学, 2016(11):23-25.
[5] 田伯红. 禾谷类作物抗倒伏性的研究力法与谷子抗倒性评价. 植物遗传资源学报, 2013, 14(2):265-269.
[6] Donald C M. The breeding of crop ideotypes. Euphytica, 1968, 17(3):385-403.
doi: 10.1007/BF00056241
[7] 吕鹏, 张吉旺, 刘伟, 等. 施氮时期对高产夏玉米光合特性的影响. 生态学报, 2013, 33(2):576-585.
[8] 张秋英, 李发东, 刘孟雨. 冬小麦叶片叶绿素含量及光合速率变化规律的研究. 中国生态农业学报, 2005, 13(3):95-99.
[9] 杜长玉, 李东明, 庞全国. 大豆连作对植株营养水平、叶绿素含量、光合速率及其产物影响的研究. 大豆科学, 2003, 22(2):146-150.
[10] 董博, 张绪成, 张东伟, 等. 水氮互作对春小麦叶片叶绿素含量及光合速率的影响. 干旱地区农业研究, 2012, 30(6):88-93.
[11] 杨虎, 戈长水, 应武, 等. 遮荫对水稻冠层叶片SPAD值及光合、形态特性参数的影响. 植物营养与肥料学报, 2014, 20(3):580-587.
[12] 李翠, 赵伟洁, 张大爱, 等. 水分胁迫对糜子物质生产及光合特性的影响. 西北农林科技大学学报, 2014, 42(1):89-95.
[13] 冯晓敏, 张永清. 水分胁迫对糜子植株苗期生长和光合特性的影响. 作物学报, 2012, 38(8):1513-1521.
[14] 崔雯雯, 高小丽, 马瑞瑞, 等. 连作对糜子抽穗后光合特性和干物质积累的影响. 西北农林科技大学学报, 2013, 41(9):55-61.
[15] 张盼盼, 陈凌, 王君杰, 等. 覆膜方式对旱地糜子光合特性及产量的影响. 干旱地区农业研究, 2014, 32(6):149-153.
[16] Bandara P M S, Tanino K K. Paclobutrazol enhances minituber production in Norland potatoes. Journal of Plant Growth Regulation, 1995, 14(3):151-155.
doi: 10.1007/BF00210917
[17] 蔡国红, 杨泉, 李洪波, 等. 蔗糖、多效唑、ABA、KT对淮山薯试管珠芽诱导的影响. 热带作物学报, 2010, 31(9):1458-1463.
[18] 闫凯莉, 韩石, 谭廷钢, 等. 15%多效唑可湿性粉剂对水稻生长、产量及品质的影响. 热带农业科学, 2016, 36(2):73-76.
[19] 陈晓光, 王振林, 彭佃亮, 等. 种植密度与喷施多效唑对冬小麦抗倒伏能力和产量的影响. 应用生态学报, 2011, 22(6):1465-1470.
[20] 郝玉波, 于洋, 钱春荣, 等. 化控剂对东北春玉米抗倒伏性能及产量形成的影响. 黑龙江农业科学, 2017(10):1-3.
[21] 苏文潘, 罗燕春, 金刚, 等. 保水剂与多效吐联合施用对木薯光合特性的影响. 南方农业学报, 2012, 43(9):1277-1280.
[22] 杨利艳, 杨武德. 多效唑对荞麦生长、生理及产量影响的研究. 山西农业大学(自然科学版), 2005, 25(4):328-330.
[23] 余凯凯, 宋喜娥, 高虹, 等. 不同施肥水平下多效唑对马铃薯光合及叶绿素荧光参数的影响. 核农学报, 2016, 30(1):154-163.
[24] 邱瑾, 陈平, 钟然, 等. 多效唑对水仙生长和光合特性的影响. 厦门大学学报(自然科学版), 2005, 44(6):851-855.
[25] 尹燕雷, 王传增, 唐海霞, 等. 多效唑对石榴光合特性的影响. 分子植物育种, 2019, 17(22):7494-7499.
[26] 杨振芳, 顾万荣, 魏提, 等. 化控对不同种植密度下东北春玉米光合特性及产量的影响. 玉米科学, 2015, 23(5):66-74.
[27] 鱼冰星, 王宏富, 原向阳, 等. 多效唑和乙烯利对‘张杂谷10号’光合特性及产量的影响. 中国农业大学学报, 2019, 24(9):17-26.
[28] 郭芳, 牛俊义, 高珍妮. 品种密度互作对胡麻抗倒伏特性的影响. 甘肃农业大学学报, 2016, 51(3):72-76.
[29] 拓秀朋, 郑险峰, 周建斌. 不同化学及营养调控措施配合对旱地冬小麦生长及产量的影响. 干旱地区农业研究, 2008, 26(3):63-67.
[30] 聂萌恩, 柳青山, 白文斌, 等. 喷施多效唑对谷子农艺性状及抗倒伏力的影响. 中国农学通报, 2019, 35(33):35-41.
[31] 张喜娟, 李红娇, 李伟娟, 等. 北方直立穗型粳稻抗倒性的研究. 中国农业科学, 2009, 42(7):2305-2313.
[32] 张永清, 裴红宾, 刘良全, 等. 烯效唑浸种对谷子植株生长发育的效应. 作物学报, 2009, 35(11):2127-2132.
[33] 贺笑, 庞春花, 张永清, 等. 多效唑和矮壮素浸种对藜麦幼苗生长的影响. 河南农业科学, 2018, 47(1):26-31.
[34] 宫庆涛, 张坤鹏, 武海斌. 多效唑可湿性粉剂对花生生长及产量的影响. 山西农业科学, 2015, 43(1):25-27.
[35] 董志新. 多效唑对大豆化学调控诱导效应的研究. 石河子大学学报, 1996(2):11-16.
[36] 徐世宏, 阮伟江, 吴登, 等. 多效唑在玉米上的应用试验. 广西农业科学, 1992(6):264-266.
[37] 史关燕, 杨成元, 李会霞, 等. 多效唑喷施浓度及时期对谷子性状及品质的影响. 农学学报, 2015, 5(8):31-35.
[38] 鱼冰星, 王宏富, 杨净, 等. 不同生育时期喷施多效唑对谷子光合特性及产量的影响. 山西农业科学, 2018, 46(1l):1823-1826,1830.
[39] 郭瑞锋, 梁海燕, 李海, 等. 多效唑拌种对糜子抗倒性及产量的影响. 山西农业科学, 2015, 43(6):740-743.
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