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The novel gene BrYL1,encoding an inosine monophosphate dehydrogenase,is involved in chloroplast development in Chinese cabbage
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作者 Shuangjuan Yang Wenhua Zhao +9 位作者 Zhaojun Wang Xiaochun Wei Yanyan Zhao Zhiyong Wang Henan Su Wenjing Zhang Haohui Yang Lin Li Yuxiang Yuan Xiaowei Zhang 《Horticultural Plant Journal》 2025年第6期2281-2284,共4页
Purines are building blocks for DNA and RNA,found as the energy currency of cells(ATP and GTP),used as signaling molecules(cGMP,cAMP and ATP),and served as precursors for synthesizing primary products such as polysacc... Purines are building blocks for DNA and RNA,found as the energy currency of cells(ATP and GTP),used as signaling molecules(cGMP,cAMP and ATP),and served as precursors for synthesizing primary products such as polysaccharides,sucrose,and phospholipids as well as secondary products(Stasolla et al.,2003;Pareek et al.,2020).Thus,the synthesis of purines is a critical pathway in the cells of all living organisms.Purines can be synthesized through two pathways:de novo and salvage(Stasolla et al.,2003).Recent investigations revealed that purine synthesis is vital for the proper development of chloroplasts in plants.In Arabidopsis,CIA1 encodes the enzyme glutamine phosphoribosyl pyrophosphate amidotransferase,which catalyzes the first committed step of purine de novo biosynthesis,the loss-of-function mutant cia1 shows small,pale-green mosaic leaves(Hung et al.,2004).In rice,both VAL1 and GARS encode glycinamide ribonucleotide synthetase that mediates the second step in purine biosynthesis. 展开更多
关键词 inosine monophosphate dehydrogenase signaling molecules cgmpcamp gene chloroplast development secondary products stasolla Chinese cabbage bryl primary products
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