Crops ›› 2016, Vol. 32 ›› Issue (2): 118-123.doi: 10.16035/j.issn.1001-7283.2016.02.022

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Effects of Potassium Fertilizer on the Related Enzymes Activity of Starch Synthesis in Tubers of High Starch Potato Varieties

Wang Jinming,Shi Ying,Liang Xiaoli,Zhao Yuanyuan,Huang Yue   

  1. College of Agriculture,Northeast Agricultural University,Harbin 150030,Heilongjiang,China
  • Received:2016-01-06 Revised:2016-02-26 Online:2016-04-15 Published:2018-08-26
  • Contact: Ying Shi

Abstract:

The effects of different potassium levels on the starch synthesis enzymes in the tuber development of high starch potato varieties were studied with new high-starch varieties Kexin 22 and Dongnong 310 in Northeastern China. The results showed that with the development of growth stage, the potato tuber under different levels of potassium fertilizer, adenosine diphosphate glucose pyrophosphorylase (AGPase),granule bound starch synthase (GBSS), soluble starch synthase (SSS), starch branching enzyme (SBE) showed a change of firstly increasing, reaching the maximum value then declining after a single peak. Effects of adding potassium fertilizer on the activity of AGPase and GBSS were relatively large in the starch synthesis of Dongnong 310 and Kexin 22 tubers, and the influence to SBE and SSS was small.

Key words: Potassium level, Potato, High starch varieties, Starch-synthesis related enzymes

Fig.1

Dynamic changes of AGPase activity in different treatments"

Fig.2

Dynamic changes of GBSS activity in different treatments"

Fig.3

Dynamic changes of SSS activity in different treatments"

Fig.4

Dynamic changes of SBE activity in different treatments"

Table 1

Comparison of maximum enzyme activities of AGPase,GBSS,SSS and SBE in potato tubers under different treatments"


Enzyme
处理
Treatments
品种Varieties
东农310
Dongnong 310
克新22号
Kexin 22
AGPase 1 5.34dD 5.22dD
2 6.13cC 5.59cCD
3 6.28cBC 5.88cC
4 6.97bB 6.66bB
5 7.75aA 7.38aA
GBSS 1 3.59dC 3.63eD
2 4.19cdC 4.13dCD
3 4.63cBC 4.75cBC
4 5.50bAB 5.31bB
5 6.53aA 6.31aA
SSS 1 4.38dC 4.56bB
2 4.75cdBC 4.66bAB
3 5.00bcABC 5.06abAB
4 5.38abAB 5.34aAB
5 5.53aA 5.56aA
SBE 1 0.43dB 0.46bA
2 0.47cB 0.46bA
3 0.46cdB 0.49abA
4 0.53bA 0.53aA
5 0.57aA 0.55aA
[1] 王彦宏, 刘福刚, 廉华 , 等. 马铃薯高淀粉栽培研究进展. 中国马铃薯, 2010,24(1):50-53.
[2] 郑义, 陆维忠, 马鸿翔 . 植物淀粉生物合成的研究进展.江苏农业科学, 2009(6):13-16.
[3] Sweetlove L, Muller-Rober B, Willmitzer L , et al. The contribution of adenosine 5′-diphosphoglucose pyrophosphorylase to the controlof starch synthesis in potato tubers. Planta, 1999,209:330-337.
doi: 10.1007/s004250050640
[4] Muller-Rober B, Kossmann J, Hannag L C , et al. One of two different ADP-glucose pyrophosphorylase genes from potato responds strongly to elevated levels of sucrose. Molecular and General Genetics, 1990,224:136-146.
[5] 陈江, 王燕, 黄斌全 , 等. 不同类型玉米籽粒淀粉积累、相关酶活及基因表达差异分析. 核农学报, 2012,26(2):217-230.
[6] 邹铁祥, 戴廷波, 姜东 . 氮素和钾素对小麦籽粒淀粉合成关键酶活性的影响. 中国农业科学, 2008,41(11):3858-3864.
[7] 杨华, 郑顺林, 李佩华 , 等. 氮营养水平对秋马铃薯块茎发育中淀粉合成关键酶的影响. 四川农业大学学报, 2013,31(1):9-14.
[8] 刘克礼 . 作物栽培学.北京: 中国农业出版社, 2008.
[9] 徐德钦, 郭志平 . 增施钾肥对马铃薯产量品质和相关生理指标的影响. 上海交通大学学报(农业科学版), 2010,28(4):379-384.
[10] 程方民, 蒋德安, 吴平 , 等. 早籼稻籽粒灌浆过程中淀粉合成酶的变化及温度效应特征. 作物学报, 2001,27(2):201-206.
[11] Douglas C D, Tsung M K, Frederick C F . Enzymes of sucrose and hexose metabolism in developing kernels of two inbreds of maize. Plant Physiology, 1988,86(4):1013-1019.
doi: 10.1104/pp.86.4.1013
[12] Nakamura Y, Yuki K, Park S Y , et al. Carbohydrate metabolism in the developing endosperm of rice grains. Plant Cell Physiology, 1989,30(6):833-839.
doi: 10.1093/oxfordjournals.pcp.a077813
[13] 李太贵, 沈波, 陈能 , 等. Q酶在水稻籽粒垩白形成中作用的研究. 作物学报, 1997,23(3):338-344.
[14] 赵法茂, 齐霞, 肖军 , 等. 测定淀粉分支酶活性方法的改进. 植物生理学通讯, 2007,43(6):1167-1169.
[15] 成善汉, 柳俊, 谢从华 . 马铃薯腺苷二磷酸葡萄糖焦磷酸化酶研究进展. 中国马铃薯, 2001,15(6):349-353.
[16] 王自布, 黄燕芳, 吴坤 , 等. 籽粒淀粉合成酶与淀粉合成关系的研究进展. 生物技术进展, 2013,3(5):336-341.
[17] 王文静, 王鹏, 王国杰 . 不同类型冬小麦灌浆期淀粉合成相关酶活性研究. 华北农学报, 2007,22(2):75-78.
doi: 10.3321/j.issn:1000-7091.2007.02.020
[18] 高松洁, 郭天财, 吴雪峰 . 小麦淀粉合成关键酶与淀粉主要理化特性研究进展. 河南农业大学学报, 2002,36(4):313-318.
[19] 张玲, 谢崇华, 李伟 , 等. 氮钾对杂交水稻B优827籽粒淀粉含量及淀粉合成酶活性的影响. 中国水稻科学, 2008,22(5):551-554.
[20] 柳洪鹃, 姚海兰, 史春余 , 等. 施钾时期对甘薯济徐23块根淀粉积累与品质的影响及酶学生理机制. 中国农业科学, 2014,47(1):43-52.
doi: 10.3864/j.issn.0578-1752.2014.01.005
[21] 陆国权, 唐忠厚, 黄华宏 . 不同施钾水平甘薯直链淀粉含量和糊化特性的基因型差异. 浙江农业学报, 2005,17(5):280-283.
[22] 杨建昌, 彭少兵, 顾世梁 , 等. 水稻灌浆期子粒中3个与淀粉合成有关酶活性变化. 作物学报, 2001,27(2):157-164.
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