详细信息
HrCYP90B1 modulating brassinosteroid biosynthesis in sea buckthorn (Hippophae rhamnoides L.) against fruit fly (Rhagoletis batava obseuriosa Kol.) infection ( SCI-EXPANDED收录) 被引量:9
文献类型:期刊文献
英文题名:HrCYP90B1 modulating brassinosteroid biosynthesis in sea buckthorn (Hippophae rhamnoides L.) against fruit fly (Rhagoletis batava obseuriosa Kol.) infection
作者:Liu, Jianfeng[1] Wang, Zhaoyu[1] Zhao, Jie[1] Zhao, Lin[1] Wang, Lei[2] Su, Zhi[3] Wei, Jianrong[1]
第一作者:Liu, Jianfeng
通信作者:Wei, JR[1]
机构:[1]Hebei Univ, Sch Life Sci, Inst Life Sci & Green Dev, Baoding 071002, Peoples R China;[2]Hebei Res Ctr Geoanal, Baoding 071051, Peoples R China;[3]Chinese Acad Forestry, Desert Forest Expt Ctr, Dengkou 015200, Peoples R China
年份:2021
卷号:41
期号:3
起止页码:444-459
外文期刊名:TREE PHYSIOLOGY
收录:;Scopus(收录号:2-s2.0-85102911022);WOS:【SCI-EXPANDED(收录号:WOS:000637330800008)】;
基金:This work was supported by the National Natural Science Foundation of China (No. 31370647), the Desert Forest Experimental Center, Chinese Academy of Forestry (No. CAFYBB2017MB025) and the Natural Science Foundation of Hebei Province (No. C2020201001).
语种:英文
外文关键词:brassinosteroid (BR); HrCYP90B1; overexpression; Rhagoletis batava obseuriosa Kol. (RBO); sea buckthorn; VIGS treated
摘要:Sea buckthorn is an important ecological and economic tree species, and its berries have been severely damaged by sea buckthorn fruit fly, Rhagoletis batava obseuriosa Kol. (Diptera: Tephritidae) (RBO). Brassinosteroid (BR) is widely involved in stress tolerance of plant. However, limited knowledge exists regarding the molecular mechanisms underlying insect resistance. Here, we found that BR content was much higher in sea buckthorn fruits with RBO infection than non-infection, and the damage rates of fruit with BR treatment were significantly lower than that of non-treatment. It indicated that BR could enhance RBO resistance in sea buckthorn. Several BR biosynthesis-related HrCYPs genes (CYP85A1/85A2/90A1/90B1/90C1/90D1/92A6/724B/734A1) were obtained and identified based on transcriptome analysis, of which the most up-regulated gene in fruits was HrCYP90B1 under RBO and mechanical damage. Overexpression of HrCYP90B1 in Arabidopsis thaliana showed BR and salicylic acid (SA) content was significantly increased, and the substrate campesterol (CR) of HrCYP90B1 content decreased. Further studies revealed that silencing HrCYP90B1 by virus-induced gene silencing resulted in decrease of BR, SA and defense-related enzymes contents, and increase of CR content. Silencing HrCYP90B1 also caused suppression of SA and activation of jasmonic acid pathways, enabling enhanced RBO susceptibility and more damage of fruits. Taken together, we obtained evidence that HrCYP90B1 was a positive regulator in RBO resistance improvement in sea buckthorn, which will provide comprehensive insights into the tree defense system of sea buckthorn to pest infection.
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