ImageVerifierCode 换一换
格式:PDF , 页数:7 ,大小:336.03KB ,
资源ID:10351662      下载积分:10 金币
快捷下载
登录下载
邮箱/手机:
温馨提示:
快捷下载时,用户名和密码都是您填写的邮箱或者手机号,方便查询和重复下载(系统自动生成)。 如填写123,账号就是123,密码也是123。
特别说明:
请自助下载,系统不会自动发送文件的哦; 如果您已付费,想二次下载,请登录后访问:我的下载记录
支付方式: 支付宝    微信支付   
验证码:   换一换

加入VIP,免费下载
 

温馨提示:由于个人手机设置不同,如果发现不能下载,请复制以下地址【https://www.docduoduo.com/d-10351662.html】到电脑端继续下载(重复下载不扣费)。

已注册用户请登录:
账号:
密码:
验证码:   换一换
  忘记密码?
三方登录: 微信登录   QQ登录   微博登录 

下载须知

1: 本站所有资源如无特殊说明,都需要本地电脑安装OFFICE2007和PDF阅读器。
2: 试题试卷类文档,如果标题没有明确说明有答案则都视为没有答案,请知晓。
3: 文件的所有权益归上传用户所有。
4. 未经权益所有人同意不得将文件中的内容挪作商业或盈利用途。
5. 本站仅提供交流平台,并不能对任何下载内容负责。
6. 下载文件中如有侵权或不适当内容,请与我们联系,我们立即纠正。
7. 本站不保证下载资源的准确性、安全性和完整性, 同时也不承担用户因使用这些下载资源对自己和他人造成任何形式的伤害或损失。

版权提示 | 免责声明

本文(脂肪氧合酶的研究及应用进展.pdf)为本站会员(精品资料)主动上传,道客多多仅提供信息存储空间,仅对用户上传内容的表现方式做保护处理,对上载内容本身不做任何修改或编辑。 若此文所含内容侵犯了您的版权或隐私,请立即通知道客多多(发送邮件至docduoduo@163.com或直接QQ联系客服),我们立即给予删除!

脂肪氧合酶的研究及应用进展.pdf

1、 4 3 J _ Vo l. 4 No. 3 2013 M 6 Journal of Food Safety and Quality Jun. , 2013 基金项目: n , 7 LOX1 1 2 min ? , LOX3 60 H , 11530 min , LOX2 5 min = b S14V , 7 J LOX A7 J. , K aQ 55 , K aQ pH6.0, K a i 8.0 mmol/L, 4) HW ?r LOXb 2.2.3 LOX的催化特性 bQ , Tappel , LOX b 1V13b n5 LOX 8 ; V B 8 , B _ 0B0V Ms0 ; s

2、0V V _ ; NV _ s i / b71 : n5 _0V 7 , HM 0$ ; s01Q , V1 , NV V ? O2M O21 , KV1$ LOX M , 3 _V , 7 LOX MM Fe3+, M 15b M , v LOX 00MQ L LOX QV _M 16, b _0V MM 0 ; 00 H8 s8WM ; V7 3r _ rbyN , V + V A LOX bM 0“ M1“10b 3 脂肪氧合酶的应用 3.1 脂肪氧合酶在食品中的应用 l x , V x , P , P 9 , 3 Y , : #Z 801 PV , V Vs0 ; _v= ;o , V

3、74 9,17,18b LOX b , 3 _V , _VYV ( - Ms , a=) , _VB a ? , TaP(a T T#7a aZ(Pa P?8, F J , Es7 $b c 11 , y7 b!P b Whitehead19 aYv , HPL # , 3-?a2-(E)- a 3-(Z)- -1-?a- a 2-(E)- -1-?b Gargouri20P , 3 9- _V , V 3 (P 3-(Z)- , J (b Marczy aLOX k HPL M8“!- , i 0.1 mol/L, 13-HPOD q 72%, - q 54% 21bMuller22 .x

4、3 13-HPOD, iI F := HPL T , !B 96%- , H .x , ! 3-(Z)- b Noordermeer 23 .aa LOX #, HPL, ! q50%- bN Kangsadan24 25VZ(4 | LOX, i 3 , 3 12-3 _V , H 3 15- 3 _V , i/ - 3-(Z)- , - b 3.2 脂肪氧合酶在植物生理中的应用 T 3 ?a 3a?a F 1T , Y ? , VYY= , Y0 a aT vb , V Fha F Q26b Fh1“l aaa T , sh ) S H , F = 4 , i3MEh8B S b Song

5、 27 vF h8 SQ , ?CF- c 0?d 4 H ) (Fusarium) ) (Alternaria) 3b 3.3 脂肪氧合酶在工业中的应用 _V“ V 3 , 9 V ap a!4a oY9 4 , = 3 , = E b b 3T vF 3 , v# , #c J F%V aPa MbyN , 9|b Borrelli32V , LOX l . aYxY i , 74 F , Yl M T33,34b 6Bt , LOX LOX 8 Vrh Q , h . M , V7 % , h J n35b H LOX$ i01ZEB , 1 %F V4b LOX % T , 8 b ,

6、 LOX ?T 3“d , 71 xT31, LOX L V1y0 , ?b 3V1802 J _ 4 , T , s0 , s0B% , % ivv9F , 7 S 1 P , s ir , P y8 36b 6 , LOX b 31aVad= ?8 DNAaRNAa / 31b ?WQ , Z 3T37b 5 脂肪氧合酶的提取 4 | ZE1 4Ea E# E 34,5,27,38b 5.1 水浸提法 4E Y Ab|vx , B HW , | bA YAb 4E q Vr 85%, Ac bNZEVe , h TV , yNY A9 b328x5F , s , Y A9 6.71106U

7、/g , 1 8.61105U/mLY Ab 5.2 盐析法 E 1 ZE , “ - s , V HHP ) ?A LOX bN , Cs0 3/ m, Vs0 U LOX 2aF#% T , 7ZEeHoF “d , !9z e ZE , i P 6T , “ ? LCKv C LN11b | ZEb 2 jS , # , d , . 7 J J. J S , 2013, 34(3): 198201. Liu FG, Jin BQ, Niu LY, et al. Lipoxygenase activity of fresh corn J. Food Sci, 2013, 34(3): 19

8、8201. 15 Borowski T, Broclawik E. Catalytic reaction mechanism of li-poxygenase: a density functional theory study J. J Phys Chem B, 2003, 107: 46394646. 16 Schiffer SH. Hydrogen tunneling and protein motion in enzyme reactions J. Accounts Chem Res, 2006, 39: 93100. 17 Frazier PJ, Leigh DFA, Daniels

9、 NWR, et al. The effect of lipox-ygenase action on the mechanical development of wheat flour doughs J. J Sci Food Agr, 2006, 4(24): 421436. 18 Addo K, Burton D, Stuart MR, et al. Soybean flour lipoxygenase lsozyme mutant effects on bread dough volatiles J. J Food Sci, 2006, 3(58): 583585. 19 Whitehe

10、ad IM, Muller BL, Dean C. Industrial use of soybean li-poxygenase for the production of natural green note flavor com-pounds J. Cereal Food World, 1995, 40(4):193197. 20 Gargouri M, Legoy M. Biosynthesis and analysis 3Z-nonenal J. Biotechnol Lett, 1998, 20(1): 2326. 21 Marczy JS, Nemeth AS, Samu Z,

11、et al. Production of hexanal from hydrolyzed sunflower oil by lipoxygenase and hydroperox-ide lyase enzymes J. Biotechnol Lett, 2002, 24:16731675 22 Muller B, Gautier A, Dean C, et al. Process for the enzymatic preparation of aliphatic alcohols and aldehydes from linoleic acid, linolenic acid, or a

12、natural precursor P. US, 5,464,761. 1995-11-7. 23 Noordermeer MA, Goot W, Kooij AJ, et al. Development of a biocatalytic process for the production of C6-Aldehydes from vegetable oils by soybean lipoxygenase and recombinant hydro-peroxidelyase J. J Agr Food Chem, 2002, 50(15): 4270 4274. 24 Boonprab

13、K, Matsui K, Akakabe Y, et al. Hydrope-roxy-arachidonic acid mediated n-hexanal and (Z)-3-and (E)-2-nonenal formation in Laminaria angustata J. Phytochemi-stry, 2003, 64(3): 809 818. 25 . s B# b D. 2v , 2011. Chen ST. The study of purification of soybean lipoxygenase and its catalysis of polyunsatur

14、ated fatty acids D. Jiangnan Univer-sity, 2011. 26 , . v 4 # ? D. 2v , 2008. Chen YJ. The synthesis and applied of lipoxygenase inhibitor phloretin D. Jiangnan University, 2008 27 Song WY, Wang GL, Chen LL, et al. A receptor-like protein ki-nase encoded by the rice desease resistance gene Xa21 J. Sc

15、ience, 1995, 270: 18041806. 28 3 , y , Z , . v _V J. % , 2005, 22(1): 7477. Cai K, Zhou JD, Fang Y, et al. Synthesis of linoleic acid hydro-peroxide catalyzed by soybean lipoxygenase J. Fine Chem, 2005, 22(1): 7477. 29 Cuperus FP, Derksen JTP. High value-added applications from vernolic acid. Progre

16、ss in new crops M. Alexandria VA: ASHS Press, 1996. 30 Grechkin AN, Kuramshin RA, Latypov SK, et al. Hydroperox-ides of -ketols, novel products of the plant lipoxygenase path-way J. Eur J Biochem, 1991, 199(2): 451457. 31 Luquet MP, Pourplanche C, Podevin M, et al. A new possibility for the direct u

17、se of soybean lipoxygenase on concentrated trig-lycerides J. Enzyme Microb Technol, 1993, 15(10): 842848. 32 Borrelli GM, De Leonardis A M, Platani,C, et al. Distribution along durum wheat kemel of the components involved in semo-lina color J. J Cereal Sci, 2008, 6: 19. 33 Leenhardt, F. Lyana, B. Ro

18、cka, E. et al, Genetic variability of carotenoid concentration, and lipoxygenase and peroxidase activ-ities among cultivated wheat species and bread wheat varieties J. Agronomy, 2006, 25: 170176. 34 Trufanov VA, Permyakova MD, Pshenichnikova TA, et al. The effect of inter-cultivar substitution of wh

19、eat. Triticum aestivum L. chromosomes on lipoxygenase activity and its correlation with the technological properties of flour J. Appl Biochem Micro, 2007, 43: 9197. 35 , -v M , f . # l J. J ? J. v , 1998, 18(2): 5254. Wang D, Xu Y, Zhang KC, et al. Lipase catalyzed synthesis of sorbitan esters in no

20、n-aqueous phase J. J Wuxi Univ Light Ind, 1998, 18(2): 5254. 37 , . d M ? Q J. , Y , . / rT# s J. S J , 2012, 12(15): 111115. Cao YM, Qu CM, Chen F, et al. Effects of high hydrostatic pressure (HHP) on the inactivation of lipoxygenase (LOX) in soymilk J. J Chin Inst Food Sci Technol, 2012, 12(15): 1

21、11115. 46 f , m , g) , . F( y XHVrs B#s J. 3 , 2012, 28(4): 440456. Zhang C, Zhou XW, Lu FX, et al. Cloning and expression of li-poxygenase gene from Anabaena sp.PCC 7120 and purifica-tion,characterization of the recombinatant enzyme J. Chin J Biotechnol, 2012, 28(4): 440456. 47 c , , f , . Y EF j )

22、 Hq J. j , 2012, 26(2): 324329. Zhang DL, Zhong W, Zhang C, et al. Optimization of conditions for lipoxygenase production from recombinant Bacillus subtilis by Response surface methodology J. J Nucl Agr Sci, 2012, 28(4): 440456. 48 RYY , 1 , f , . F y ) Hq# ZE J. J S , 2012, 33(23): 160-165. Guo FF,

23、 Ying Q, Zhang C, et al. Optimization of conditions for disruption of recombinant E. coli cells and determination of li-poxygenase activity J. Food Sci, 2012, 33(23):160-165. 49 Mara EGL, Pedro MC, Gustavo AM. Expression of a lipoxyge-nase encoding gene (BoLOX1) during postharvest senescence of broc

24、coli J. Postharvest Biol Tec, 2012, 64: 146153. 50 Mara NP, Luisa H, Carlos S, et al. Martnez-Rivas. molecular cloning functional characterization and transcriptional regulation of a 9-lipoxygenase gene from olive J. Phytochemistry, 2012, 74: 5868. (责任编辑: 赵静) 作者简介 闫静芳, 本科, 主要研究方向为生物工程。 E-mail: 王昱沣, 博士, 副教授, 主要研究方向为食品功能因子及生物分离。 E-mail:

本站链接:文库   一言   我酷   合作


客服QQ:2549714901微博号:道客多多官方知乎号:道客多多

经营许可证编号: 粤ICP备2021046453号世界地图

道客多多©版权所有2020-2025营业执照举报