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A geraniol synthase regulates plant defense via alternative splicing in tea plants 被引量:2
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作者 Hao Jiang Mengting Zhang +8 位作者 Feng Yu Xuehui Li Jieyang Jin youjia zhou Qiang Wang Tingting Jing Xiaochun Wan Wilfried Schwab Chuankui Song 《Horticulture Research》 SCIE CSCD 2023年第10期136-149,共14页
Geraniol is an important contributor to the pleasant floral scent of tea products and one of the most abundant aroma compounds in tea plants;however,its biosynthesis and physiological function in response to stress in... Geraniol is an important contributor to the pleasant floral scent of tea products and one of the most abundant aroma compounds in tea plants;however,its biosynthesis and physiological function in response to stress in tea plants remain unclear.The proteins encoded by the full-length terpene synthase(CsTPS1)and its alternative splicing isoform(CsTPS1-AS)could catalyze the formation of geraniol when GPP was used as a substrate in vitro,whereas the expression of CsTPS1-AS was only significantly induced by Colletotrichum gloeosporioides and Neopestalotiopsis sp.infection.Silencing of CsTPS1 and CsTPS1-AS resulted in a significant decrease of geraniol content in tea plants.The geraniol content and disease resistance of tea plants were compared when CsTPS1 and CsTPS1-AS were silenced.Down-regulation of the expression of CsTPS1-AS reduced the accumulation of geraniol,and the silenced tea plants exhibited greater susceptibility to pathogen infection than control plants.However,there was no significant difference observed in the geraniol content and pathogen resistance between CsTPS1-silenced plants and control plants in the tea plants infected with two pathogens.Further analysis showed that silencing of CsTPS1-AS led to a decrease in the expression of the defense-related genes PR1 and PR2 and SA pathway-related genes in tea plants,which increased the susceptibility of tea plants to pathogens infections.Both in vitro and in vivo results indicated that CsTPS1 is involved in the regulation of geraniol formation and plant defense via alternative splicing in tea plants.The results of this study provide new insights into geraniol biosynthesis and highlight the role of monoterpene synthases in modulating plant disease resistance via alternative splicing. 展开更多
关键词 SPLICING PLANT SUSCEPTIBILITY
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First report of Muyocopron laterale causing a new leaf disease of Camellia sinensis in China
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作者 Hao Jiang Mengting Zhang +3 位作者 youjia zhou Xuehui Li Jiaxun Li Chuankui Song 《Beverage Plant Research》 2022年第1期72-75,共4页
Tea plant(Camellia sinensis)diseases are one of the factors that reduce tea production yield and quality.Herein,a new leaf disease of tea plants was observed in tea plantations.A representative isolate was obtained fr... Tea plant(Camellia sinensis)diseases are one of the factors that reduce tea production yield and quality.Herein,a new leaf disease of tea plants was observed in tea plantations.A representative isolate was obtained from diseased leaf by the traditional fungus separation method.The isolate identified was confirmed as Muyocopron laterale based on morphological and molecular results and phylogenetic tree analysis.Pathogenicity tests were conducted on tea plant seedlings,and which is fulfilling Koch’s postulates.The disease was first identified in C.sinensis leaves caused by M.laterale in China.In the future,the results of this studies will enrich our knowledge and help control tea leaf disease. 展开更多
关键词 SINENSIS analysis CAMELLIA
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