期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
玉米萜类植保素代谢关键基因对小斑病侵染的防御响应分析 被引量:7
1
作者 李珂 马良 +1 位作者 杜鹏飞 王强 《西北植物学报》 CAS CSCD 北大核心 2015年第9期1776-1780,共5页
该研究选用小斑病差异抗性的玉米自交系Mo17(较抗)、‘郑58’(中抗)和‘吉419’(感),分别于接种小斑病病原菌玉蜀黍平脐孺胞(Cochliobolus heterostrophus)0、6、12、24、36和48h时采集接种叶片为材料,采用半定量和实时荧光定量PCR技术... 该研究选用小斑病差异抗性的玉米自交系Mo17(较抗)、‘郑58’(中抗)和‘吉419’(感),分别于接种小斑病病原菌玉蜀黍平脐孺胞(Cochliobolus heterostrophus)0、6、12、24、36和48h时采集接种叶片为材料,采用半定量和实时荧光定量PCR技术,检测倍半萜植保素Zealexin生物合成关键基因(TPS6、TPS11)、二萜植保素Kauralexin代谢关键基因An2以及茉莉酸合成关键基因AOC的表达模式,为阐明不同抗性品种对玉米小斑病的差异防御机制提供理论依据。结果显示:接种小斑病病原菌后,抗病自交系Mo17中TPS6、TPS11基因表达诱导不显著,An2基因表达迅速增加,AOC基因于接种12h后表达明显上调。‘郑58’中TPS6、TPS11基因被快速诱导,在接种24h时表达量达到最大,An2基因表达逐渐增加但差异不显著,AOC基因表达量于接种6h后显著增加;感病自交系‘吉419’中TPS6、TPS11、An2基因在接种24h后才显著上调,明显比抗性自交系缓慢,AOC基因表达先呈现递减的趋势然后上升,在24h表达量最高并持续到48h。研究表明,两类植保素代谢在玉米小斑病防御中具有不同的时间应答模式,但都受到茉莉酸介导。感病自交系中植保素代谢防御响应较慢,而抗病自交系中响应较快,符合其抗性差异。 展开更多
关键词 玉米 萜类植保素 关键基因 小斑病 防御响应
下载PDF
Gossypol: phytoalexin of cotton 被引量:11
2
作者 Xiu Tian Juxin Ruan +5 位作者 Jinquan Huang Xin Fang Yingbo Mao Lingjian Wang Xiaoya Chen Changqing Yang 《Science China(Life Sciences)》 SCIE CAS CSCD 2016年第2期122-129,共8页
Sesquiterpenoids are a class of 15-carbon secondary metabolites that play diverse roles in plant adaptation to environment. Cotton plants accumulate a large amount of sesquiterpene aldehydes (including gossypol) as ... Sesquiterpenoids are a class of 15-carbon secondary metabolites that play diverse roles in plant adaptation to environment. Cotton plants accumulate a large amount of sesquiterpene aldehydes (including gossypol) as phytoalexins against pathogens and herbivores. They are stored in pigment glands of aerial organs and in epidermal layers of roots. Several enzymes of goss- ypol biosynthesis pathway have been characterized, including 3-hydroxy-3-methylglutaryl coenzyme A reductase (HMGR) and farnesyl diphosphate synthase (FPS) that catalyze the formation of the precursor farnesyl diphosphate (FPP), (+)-6-cadinene synthase (CDN) which is the first enzyme committed to gossypol biosynthesis, and the downstream enzymes of CYP706B 1 and methyltransferase. Expressions of these genes are tightly regulated during cotton plants development and in- duced by jasmonate and fungi elicitors. The transcription factor GaWRKY1 has been shown to be involved in gossypol path- way regulation. Recent development of new genomic platforms and methods and releases of diploid and tetraploid cotton ge- nome sequences will greatly facilitate the elucidation of gossypol biosynthetic pathway and its regulation. 展开更多
关键词 COTTON secondary metabolism GOSSYPOL SESQUITERPENOID
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部