JA

作品数:454被引量:1197H指数:16
导出分析报告
相关领域:农业科学更多>>
相关作者:余增亮苍晶张达张超曾宪涛更多>>
相关机构:深圳市佳马钟表有限公司上海嘉安床上用品有限公司西北农林科技大学中国农业大学更多>>
相关期刊:更多>>
相关基金:国家自然科学基金国家高技术研究发展计划北京市自然科学基金国家现代农业产业技术体系建设项目更多>>
-

检索结果分析

结果分析中...
选择条件:
  • 学科=生物学x
条 记 录,以下是1-10
视图:
排序:
JAZ在园艺植物生长发育中的调控作用
《生物工程学报》2025年第2期530-545,共16页张欣欣 陶涛 李杭春 乔治 汤青林 魏大勇 杨洋 王志敏 
重庆市自然科学基金面上项目(CSTB2024NSCQ-MSX1020);现代农业产业技术体系(CARS-23-A08);重庆市农科院市级财政专项重大核心技术攻关项目(cqaas2023sjczhx002)。
茉莉酸(jasmonic acid,JA)是一种普遍存在的植物激素,对植物生长发育具有多种调节作用。茉莉酸ZIM结构域(jasmonate ZIM-domain,JAZ)蛋白是JA信号转导途径的关键调节因子,参与植物的多种生物学过程,如花青素积累、开花时间、次生代谢物...
关键词:园艺植物 JAZ蛋白 茉莉酸 生长发育 
The JA-to-ABA signaling relay promotes lignin deposition for wound healing in Arabidopsis
《Molecular Plant》2024年第10期1594-1605,共12页Huimin Xu Chaoqun Dong Ying Wu Shasha Fu Arfa Tauqeer Xinyun Gu Qianfang Li Xufang Niu Peng Liu Xiaoyue Zhang Chuanyou Li Meng Li Shuang Wu 
supported bygrants from the National Natural ScienceFoundation of China(32400270 and 32425050).
Plants are frequently exposed to herbivory and mechanical damage that result in wounding.Two fundamental strategies,regeneration and healing,are employed by plants upon wounding.How plants make different decisions and...
关键词:wound healing lignin deposition JA signaling ABA signaling RAP2.6 
The MYC2-PUB22-JAZ4 module plays a crucial role in jasmonate signaling in tomato被引量:4
《Molecular Plant》2024年第4期598-613,共16页Shaofang Wu Chaoyi Hu Changan Zhu Yanfen Fan Jie Zhou Xiaojia Xia Kai Shi Yanhong Zhou Christine H.Foyer Jingquan Yu 
funded by the National Natural Science Foundation of China Projects of International Cooperation and Exchange(32020103013);the National Natural Science Foundation of China(32302532);the Modern Agro-industry Technology Research System of China(CARS-25-02A).
Jasmonates(JAs),a class of lipid-derived stress hormones,play a crucial role across an array of plant physiological processes and stress responses.Although JA signaling is thought to rely predominantly on the degradat...
关键词:PUB22 JAZ COI1 MYC2 JA signaling Solanum lycopersicum 
BFP1:One of 700 Arabidopsis F-box proteins mediates degradation of JA oxidases to promote plant immunity
《Molecular Plant》2024年第3期375-376,共2页Claus Wasternack Bettina Hause 
supported by the Deutsche Forschungsgemeinschaft(DFG,German Research Foundation)grant no.400681449/GRK2498.
A switch off in jasmonate(JA)signaling by hydroxylation upon wounding was described in 2008(Miersch et al.,2008).This initiated the cloning of CYP450 enzymes involved in hydroxylation and carboxylation of JA and its a...
关键词:CONJUGATE initiated MEDIA 
Duality of jacalin-related lectin:Master regulator and chaperone
《Plant Communications》2024年第2期4-6,共3页Ganesh Alagarasan 
Lectins have chaperone-like activity with carbohydrate-binding sites,which are key in cellular homeostasis.However,the specific interactions between lectins and endoplasmic reticulum(ER)proteins during stress are uncl...
关键词:critical stress MASTER 
Botrytis cinerea-induced F-box protein 1 enhances disease resistance by inhibiting JAO/JOX-mediated jasmonic acid catabolism in Arabidopsis被引量:1
《Molecular Plant》2024年第2期297-311,共15页Min Zhang Weiwei Li Tingyu Zhang Yueyan Liu Lijing Liu 
This work was supported by the Natural Science Foundation of China(32000224,to L.L.);the Natural Science Foundation of Shandong Province(ZR2021QC142,to W.L.).
Jasmonic acid(JA)is a crucial phytohormone that regulates plant immunity.The endogenous JA level is determined by the rates of its biosynthesis and catabolism in plants.The activation of JA biosynthesis has been well ...
关键词:plant immunity BFP1 JAO/JOXs JA catabolism ubiquitination-mediated degradation 
The proteome landscape of the root cap reveals a role for the jacalin-associated lectin JAL10 in the salt-induced endoplasmic reticulum stress pathway被引量:1
《Plant Communications》2023年第6期179-196,共18页Krishna Kodappully Das Ankita Mohapatra Abin Panackal George Sreenivas Chavali Katja Witzel Eswarayya Ramireddy 
supported by IISER Tirupati and by an Early Career Research award from the Science and Engineering Research Board,Department of Science and Technology,Govt.of India(ECR/2016/001071)to E.R.K.K.D.acknowledges the CSIR-JRF fellowship and Bi-nationally supervised doctoral degree scholarship from DAAD(91730390)for her PhD.A.M.and A.P.G.acknowledge funding from IISER Tirupati for graduate studies.S.C.acknowledges funding from IISER Tirupati and the Ramalingaswami Re-entry Fellowship(BT/RLF/Re-entry/05/2018)Department of Biotechnology,Government of India.
Rapid climate change has led to enhanced soil salinity,one of the major determinants of land degradation,resulting in low agricultural productivity.This has a strong negative impact on food security and environmental ...
关键词:Arabidopsis root cap cell-type specific proteomics salt stress ER stress jacalin-associated lectin 
WRKY类转录因子在植物激素ABA、SA和JA信号转导中的作用被引量:3
《黑龙江农业科学》2023年第10期138-144,共7页邓江霞 张国良 李边豪 黄志炜 赵宏亮 张叶 
全国重大农业技术协同推广计划项目(2021-ZYXT-02-1);植物分子遗传国家重点实验室开放课题(2009);江苏省现代农业重点研发计划重点项目(BE2021323)。
WRKY转录因子是植物最大的基因家族之一,参与植物的生物胁迫及非生物胁迫响应,调控相应基因的表达。ABA、SA及JA的信号转导受WRKY转录因子的调控,为了详细了解WRKY转录因子在各植物激素信号转导途径中的调控机制,本文针对WRKY转录因子对...
关键词:WRKY转录因子 ABA SA JA 
植物中ABA和JA对盐胁迫的响应被引量:1
《生物过程》2023年第1期33-38,共6页王佳敏 
土壤盐碱化是农业发展面临的重大难题,改良土壤难度大,花费多,很难解决大规模的农产品抗盐问题。研究植物的耐盐机制为研发耐盐植物提供理论依据,植物激素在植物对盐胁迫响应中起重要作用。本文通过查阅资料,总结了已经明确了的植物对...
关键词:土壤盐碱化 盐胁迫 脱落酸 茉莉酸 
A regulatory GhBPE-GhPRGL module maintains ray petal length in Gerbera hybrida
《Molecular Horticulture》2022年第1期116-132,共17页Rui Jiang Weichao Yuan Wei Yao Xuefeng Jin Xiaojing Wang Yaqin Wang 
This work was supported by Laboratory of Lingnan Modern Agriculture Project(NZ2021009);Natural Science Foundation of Guangdong Province(2021A1515012479);National Key R&D Program of China(2018YFD1000404);National Natural Science Foundation of China(31672188);Guangdong Basic and Applied Basic Research Foundation(2021A1515111227).
The molecular mechanism regulating petal length in flowers is not well understood.Here we used transient transformation assays to confirm that GhPRGL(proline-rich and GASA-like)—a GASA(gibberellic acid[GA]stimulated ...
关键词:GhBPE-GhPRGL GA JA ray petal elongation Gerbera hybrida 
检索报告 对象比较 聚类工具 使用帮助 返回顶部