Chemical composition of the cuticular membrane in guava fruit (Psidium guajava L.) affects barrier property to transpiration
文献类型: 外文期刊
第一作者: Huang, Hua
作者: Huang, Hua;Lian, Qiaoqiao;Shan, Youxia;Li, Fengjun;Chang, Sui Kiat;Jiang, Yueming;Wang, Ling;Lian, Qiaoqiao;Shan, Youxia;Li, Fengjun
作者机构:
关键词: Guava fruit; Chemical composition; Cuticular waxes; Cutin monomers; Barrier properties; Transpiration
期刊名称:PLANT PHYSIOLOGY AND BIOCHEMISTRY ( 影响因子:4.27; 五年影响因子:4.816 )
ISSN: 0981-9428
年卷期: 2020 年 155 卷
页码:
收录情况: SCI
摘要: The cuticular membrane covering almost all aerial plant organs has a primary function in limiting uncontrolled water loss. The guava fruits were collected and this work was done to study the potential contribution of cuticular chemical composition to fruit transpiration after harvest. The detailed cuticular chemical composition, based on gas chromatography together with mass spectrometry, and the transpiration rate determined gravimetrically in guava fruit were characterized in the present study. The predominant wax mixtures were fatty acids and primary alcohols with homologous series of C-16-C-33, as well as various pentacyclic triterpenoids with abundant amounts of ursolic acid, maslinic acid and uvaol. The most prominent cutin compounds were C-16 and C-18-type monomers dominated by 9(10),16-diOH-hexadecanoic acid and 9,10-epoxy-omega-OH-octadecanoic acid, respectively. Relatively high water permeability with a value of 5.1 x 10(-4) m s(-1) was detected for guava fruit. The lower efficiency of the cuticle as barrier to transpiration in guava fruit, as compared to that of other reported fruits, leaves, and petals, was seemingly related to the relatively short average chain-length of acyclic compounds in wax mixtures. These findings provide useful insights linking the chemical composition of the cuticular membrane that covers plant organs to putative physiological roles.
分类号:
- 相关文献
作者其他论文 更多>>
-
Deep placement of controlled-release and common urea achieves the win-win of enhancing maize productivity and decreasing environmental pollution
作者:Wu, Peng;Yu, Jinyu;Wang, Qinhe;Liu, Zeyu;Huang, Hua;Wu, Qi;Zhang, Guangxin;Sun, Min;Gao, Zhiqiang;Xue, Jianfu;Wu, Peng;Yang, Kejun;Wu, Peng;Ren, Liangqi;Zhang, Peng;Jia, Zhikuan;Liu, Enke;Bangura, Kemoh;Xue, Jianfu
关键词:Deep fertilization; Fertilizer management strategy; Greenhouse gas; Maize productivity; NH3
-
Role of the plum cuticle layer in influencing fruit texture and permeation during the salting process
作者:Liu, Dongjie;Zhou, Haoyu;Wang, Qin;Xiao, Gengsheng;Huang, Hua;Huang, Hua;Wang, Qin;Lin, Dehui;Liu, Shuxiang;Qin, Wen
关键词:Plum; Cuticle; Salting; Permeation; Water loss
-
Identification of stay-green candidate gene TaTRNH1-3B and development of molecular markers related to chlorophyll content and yield in wheat (Triticum aestivum L.)
作者:Jin, Xiu-Juan;Yan, Xue;Guo, Feng;Wang, Ling;Lu, Juan;Tang, Xiao-Sha;Hao, Hui-Fang;Islam, Md Ashraful;Li, Ning;Yang, Jin-Wen;Sun, Dai-Zhen;Cao, Ya-Ping;Jing, Rui-Lian
关键词:Wheat; Senescence-associated co-expressed genes; Stay-green-associated differentially expressed; genes; TaTRNH1-3B; TaTRNH1-3B-Nla III-CAPS
-
Dietary fiber from burdock root ameliorates functional constipation in aging rats by regulating intestinal motility
作者:Mo, Liya;Wang, Ling;Ma, Kaiyang;Song, Qiqi;Ma, Kaiyang;Li, Ying;Song, Jiangfeng
关键词:dietary fiber; burdock root; functional constipation; the aging; nutritional strategy
-
Delay of pericarp browning by chondroitin sulfate attributes of enhancing antioxidant activity and membrane integrity in litchi fruit after harvest
作者:Huang, Hua;Liu, Hailun;Yu, Jiaying;Yu, Jiaying
关键词:Pericarp browning; Chondroitin sulfate; ROS homeostasis; Antioxidant activity; Shelf life
-
The tomato SBP-box protein SlCNR negatively regulates genes involved in fruit cutin deposition
作者:Chen, Di;Zhang, Qiaoli;Hu, Tingting;Sun, Zongyan;Wang, Tingyu;Chen, Xue;Nie, Rongrong;Fu, Daqi;Zhu, Hongliang;Zhu, Benzhong;Qu, Guiqin;Huang, Hua;Sun, Zongyan;Qin, Guozheng
关键词:
-
Enhancing Folate Content in Japonica Rice Through Co-expression of OsADCS and OsGTPCHI Indica Alleles
作者:Lai, Changkai;Hu, Shikai;Jiao, Guiai;Wang, Ling;Shao, Gaoneng;Zhao, Fengli;Xie, Lihong;Wei, Xiangjin;Lue, Yusong;Sheng, Zhonghua;Tang, Shaoqing;Hu, Peisong;Lai, Changkai;Lai, Changkai
关键词:biofortification; endosperm-specific expression; OsADCS; OsGTPCHI; folate content; grain; Oryza sativa