Biostimulant activity of chitosan in horticulture

被引:250
作者
Pichyangkura, Rath [1 ]
Chadchawan, Supachitra [2 ]
机构
[1] Chulalongkorn Univ, Dept Biochem, Fac Sci, Bangkok 10330, Thailand
[2] Chulalongkorn Univ, Dept Bot, Ctr Excellence Environm & Plant Physiol, Fac Sci, Bangkok 10330, Thailand
关键词
Chitosan; Hydrogen peroxide; Defense; Stress; Growth; DIFFERENT MOLECULAR-WEIGHTS; POSTHARVEST GRAY MOLD; FRAGARIA X ANANASSA; HYDROGEN-PEROXIDE; BOTRYTIS-CINEREA; SHELF-LIFE; ANTIMICROBIAL ACTIVITY; REACTIVE OXYGEN; TOMATO PLANTS; ABSCISIC-ACID;
D O I
10.1016/j.scienta.2015.09.031
中图分类号
S6 [园艺];
学科分类号
0902 ;
摘要
Chitosan is formed from chitin, a co-polymer of N-acetyl-D-glucosamine and D-glucosamine, when over 80% of the acetyl groups of the N-acetyl-D-glucosamine residues are removed. Chitosan-based materials exhibit various interesting properties, which make them applicable in many fields, including agriculture, where they are used as biostimulants. Chitosan induces several defensive genes in plants, such as pathogenesis-related genes, like glucanase and chitinase. It also induces many enzymes in the reactive oxygen species scavenging system, such as superoxide dismutase, catalase and peroxidase. The signal transduction pathway from chitosan that elicits its responses involves hydrogen peroxide and nitric oxide signals, and it may also directly control gene expression by interacting with chromatin. Chitosan has been used both as a biostimulant to stimulate plant growth, and abiotic stress tolerance, and as to induce pathogen resistance; however, these responses are complex and they depend on different chitosan-based structures and concentrations as well as the plant species and developmental stage. This review gathers information on chitosan provided by recent research, especially when it is used as plant biostimulant in horticulture. (C) 2015 Elsevier B.V. All rights reserved.
引用
收藏
页码:49 / 65
页数:17
相关论文
共 154 条
[51]   Effect of chitosan coating in preventing deterioration and preserving the quality of fresh-cut papaya 'Maradol' [J].
Gonzalez-Aguilar, Gustavo A. ;
Valenzuela-Soto, Elisa ;
Lizardi-Mendoza, Jaime ;
Goycoolea, Francisco ;
Martinez-Tellez, Miguel A. ;
Villegas-Ochoa, Monica A. ;
Monroy-Garcia, Imelda N. ;
Ayala-Zavala, J. Fernando .
JOURNAL OF THE SCIENCE OF FOOD AND AGRICULTURE, 2009, 89 (01) :15-23
[52]  
Gornik Krzysztof, 2008, Journal of Fruit and Ornamental Plant Research, V16, P333
[53]   Seed priming with chitosan improves maize germination and seedling growth in relation to physiological changes under low temperature stress [J].
Guan, Ya-jing ;
Hu, Jin ;
Wang, Xian-ju ;
Shao, Chen-xia .
JOURNAL OF ZHEJIANG UNIVERSITY-SCIENCE B, 2009, 10 (06) :427-433
[54]   LOCALIZATION OF FUNGAL COMPONENTS IN THE PEA-FUSARIUM INTERACTION DETECTED IMMUNOCHEMICALLY WITH ANTI-CHITOSAN AND ANTI-FUNGAL CELL-WALL ANTISERA [J].
HADWIGER, LA ;
BECKMAN, JM ;
ADAMS, MJ .
PLANT PHYSIOLOGY, 1981, 67 (01) :170-175
[55]   Anatomy of a nonhost disease resistance response of pea to Fusarium solani: PR gene elicitation via DNase, chitosan and chromatin alterations [J].
Hadwiger, Lee A. .
FRONTIERS IN PLANT SCIENCE, 2015, 6
[56]   Multiple effects of chitosan on plant systems: Solid science or hype [J].
Hadwiger, Lee A. .
PLANT SCIENCE, 2013, 208 :42-49
[57]   Effect of calcium dips and chitosan coatings on postharvest life of strawberries (Fragaria x ananassa) [J].
Hernández-Muñoz, P ;
Almenar, E ;
Ocio, MJ ;
Gavara, R .
POSTHARVEST BIOLOGY AND TECHNOLOGY, 2006, 39 (03) :247-253
[58]   Effect of chitosan coating combined with postharvest calcium treatment on strawberry (Fragaria x ananassa) quality during refrigerated storage [J].
Hernandez-Munoz, Pilar ;
Almenar, Eva ;
Del Valle, Valeria ;
Velez, Dinoraz ;
Gavara, Rafael .
FOOD CHEMISTRY, 2008, 110 (02) :428-435
[59]   Mode of action of chitosan coating on anthracnose disease control in papaya [J].
Hewajulige, Ilmi Ganga Namali ;
Sultanbawa, Yasmina ;
Wijeratnam, R. Shanthi Wilson ;
Wijesundara, Ravindra L. C. .
PHYTOPARASITICA, 2009, 37 (05) :437-444
[60]   An octadecanoid pathway mutant (JL5) of tomato is compromised in signaling for defense against insect attack [J].
Howe, GA ;
Lightner, J ;
Browse, J ;
Ryan, CA .
PLANT CELL, 1996, 8 (11) :2067-2077