Suppr超能文献

柑橘ATP-柠檬酸裂解酶基因的全基因组鉴定及其在果实中的转录分析揭示了它们在柠檬酸利用中的可能作用。

Genome-wide identification of citrus ATP-citrate lyase genes and their transcript analysis in fruits reveals their possible role in citrate utilization.

作者信息

Hu Xiao-Mei, Shi Cai-Yun, Liu Xiao, Jin Long-Fei, Liu Yong-Zhong, Peng Shu-Ang

机构信息

Key Laboratory of Horticultural Plant Biology, Ministry of Education, Huazhong Agricultural University, Wuhan, 430070, People's Republic of China.

出版信息

Mol Genet Genomics. 2015 Feb;290(1):29-38. doi: 10.1007/s00438-014-0897-2. Epub 2014 Aug 13.

Abstract

ATP-citrate lyase (ACL, EC4.1.3.8) catalyzes citrate to oxaloacetate and acetyl-CoA in the cell cytosol, and has important roles in normal plant growth and in the biosynthesis of some secondary metabolites. We identified three ACL genes, CitACLα1, CitACLα2, and CitACLβ1, in the citrus genome database. Both CitACLα1 and CitACLα2 encode putative ACL α subunits with 82.5 % amino acid identity, whereas CitACLβ1 encodes a putative ACL β subunit. Gene structure analysis showed that CitACLα1 and CitACLα2 had 12 exons and 11 introns, and CitACLβ1 had 16 exons and 15 introns. CitACLα1 and CitACLβ1 were predominantly expressed in flower, and CitACLα2 was predominantly expressed in stem and fibrous roots. As fruits ripen, the transcript levels of CitACLα1, CitACLβ1, and/or CitACLα2 in cultivars 'Niuher' and 'Owari' increased, accompanied by significant decreases in citrate content, while their transcript levels decreased significantly in 'Egan No. 1' and 'Iyokan', although citrate content also decreased. In 'HB pummelo', in which acid content increased as fruit ripened, and in acid-free pummelo, transcript levels of CitACLα2, CitACLβ1, and/or CitACLα1 increased. Moreover, mild drought stress and ABA treatment significantly increased citrate contents in fruits. Transcript levels of the three genes were significantly reduced by mild drought stress, and the transcript level of only CitACLβ1 was significantly reduced by ABA treatment. Taken together, these data indicate that the effects of ACL on citrate use during fruit ripening depends on the cultivar, and the reduction in ACL gene expression may be attributed to citrate increases under mild drought stress or ABA treatment.

摘要

ATP-柠檬酸裂解酶(ACL,EC4.1.3.8)在细胞质中催化柠檬酸生成草酰乙酸和乙酰辅酶A,在植物正常生长及一些次生代谢产物的生物合成中发挥重要作用。我们在柑橘基因组数据库中鉴定出三个ACL基因,即CitACLα1、CitACLα2和CitACLβ1。CitACLα1和CitACLα2均编码假定的ACLα亚基,氨基酸同一性为82.5%,而CitACLβ1编码假定的ACLβ亚基。基因结构分析表明,CitACLα1和CitACLα2有12个外显子和11个内含子,CitACLβ1有16个外显子和15个内含子。CitACLα1和CitACLβ1主要在花中表达,CitACLα2主要在茎和须根中表达。随着果实成熟,‘纽荷尔’和‘温州蜜柑’品种中CitACLα1、CitACLβ1和/或CitACLα2的转录水平升高,同时柠檬酸含量显著降低,而在‘鄂柑一号’和‘伊予柑’中,尽管柠檬酸含量也降低,但其转录水平却显著下降。在酸含量随果实成熟而增加的‘HB柚’和无酸柚中,CitACLα2、CitACLβ1和/或CitACLα1的转录水平升高。此外,轻度干旱胁迫和脱落酸处理显著增加了果实中的柠檬酸含量。轻度干旱胁迫显著降低了这三个基因的转录水平,脱落酸处理仅使CitACLβ1的转录水平显著降低。综上所述,这些数据表明ACL在果实成熟过程中对柠檬酸利用的影响取决于品种,ACL基因表达的降低可能归因于轻度干旱胁迫或脱落酸处理下柠檬酸的增加。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验