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Transcriptomics-based identification and characterization of genes related to sugar metabolism in‘Hongshuijing’pitaya 被引量:2
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作者 Zhike Zhang Yemiao Xing +8 位作者 Muthusamy Ramakrishnan Canbin Chen Fangfang Xie qingzhu hua Jianye Chen Rong Zhang Jietang Zhao Guibing Hu Yonghua Qin 《Horticultural Plant Journal》 SCIE CAS CSCD 2022年第4期450-460,共11页
Sugar composition not only affects fruit flavor but is also an important determinant of fruit taste and consumer preference.In this study,changes in the sugar content and sugar-metabolizing enzymes were investigated f... Sugar composition not only affects fruit flavor but is also an important determinant of fruit taste and consumer preference.In this study,changes in the sugar content and sugar-metabolizing enzymes were investigated from different sections of various fruit development phases of‘Hongshuijing’pitaya(Hylocereus monacanthus).Genes related to sugar metabolism were also screened by transcriptome analyses.The results indicated that glucose was the major sugar in mature pitaya fruit,and was mainly regulated by vacuolar acid invertase(VAI)and sucrose synthase(SS)(degradative direction).Sugar accumulation varied in pulp between different sections of the pitaya fruit.VAI,neutral invertase(NI)and SS(degradative direction)are crucial enzymes for sugar accumulation in pitaya.The expression of 17 genes related to sucrose metabolism obtained from seven databases[NCBI non-redundant protein database(Nr),NCBI non-redundant nucleotide sequence database(Nt),EuKaryotic Orthologous Groups(KOG),The Protein Families(Pfam),Kyoto Encyclopedia of Genes and Genomes(KEGG),Swiss-prot,and Gene Ontology(GO)]were analyzed in different pitaya pulp sections.HpVAI1 had the highest relative expression level on the 29th day after pollination(DAP).Positive correlations were found between HpVAI1 expression and VAI activity;HpNI4 and NI activity;HpSS2,HpSS5,and SS activity(synthetic direction),indicating that HpVAI1,HpNI4,and HpSS2 and HpSS5 were involved in the regulation of VAI,NI,and SS(synthetic direction),respectively.HpVAI1 and HpNI4 regulated sucrose degradation and the accumulation of glucose and fructose,while HpSS2 and HpSS5 regulated sucrose synthesis.These results suggest that HpVAI1 plays a key role in sugar metabolism during fruit development of‘Hongshuijing’pitaya.The results of this study provide new information about sugar metabolism in pitaya fruit that could help improve fruit quality and the breeding of new cultivars. 展开更多
关键词 Hylocereus monacanthus Transcriptional analysis Sugar metabolism QRT-PCR Expression analysis
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植物性别决定基因及其表观遗传调控研究进展
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作者 罗兰莎 宋雯佩 +3 位作者 化青珠 李大卫 梁红 张宪智 《植物学报》 CAS CSCD 北大核心 2024年第2期278-290,共13页
雌雄异株植物的性别决定机制是繁殖生物学、进化与生态学等多个学科的前沿热点问题。近年来,一些重要经济作物如芦笋(Asparagus officinalis)、猕猴桃(Actinidia spp.)和杨树(Populus spp.)的性别决定机制已被揭示,并应用于性别特异性... 雌雄异株植物的性别决定机制是繁殖生物学、进化与生态学等多个学科的前沿热点问题。近年来,一些重要经济作物如芦笋(Asparagus officinalis)、猕猴桃(Actinidia spp.)和杨树(Populus spp.)的性别决定机制已被揭示,并应用于性别特异性产品开发和两性新品种培育。该文先从植物性染色体和性别决定基因两方面系统分析植物性别决定的遗传学基础,并深入讨论非编码RNA和DNA甲基化两类表观遗传调控途径在性别决定分子通路中的作用。在此基础上,提出后续有待开展植物性别决定基因间的比较研究,并深入解析植物性别决定中的表观遗传调控机制,以深化对雌雄异株植物性别决定分子机制的认识并扩展其在农业生产上的应用价值。 展开更多
关键词 雌雄异株植物 性染色体 性别决定基因 非编码RNA DNA甲基化
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