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MdATG18a overexpression improves tolerance to nitrogen deficiency and regulates anthocyanin accumulation through increased autophagy in transgenic apple
Author(s) -
Sun Xun,
Jia Xin,
Huo Liuqing,
Che Runmin,
Gong Xiaoqing,
Wang Ping,
Ma Fengwang
Publication year - 2018
Publication title -
plant, cell and environment
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.646
H-Index - 200
eISSN - 1365-3040
pISSN - 0140-7791
DOI - 10.1111/pce.13110
Subject(s) - arabidopsis , anthocyanin , genetically modified crops , autophagy , transgene , biology , biochemistry , sugar , nitrate reductase , nitrogen deficiency , microbiology and biotechnology , gene , chemistry , mutant , botany , enzyme , nitrogen , apoptosis , organic chemistry
Abstract Nitrogen (N) availability is an essential factor for plant growth. Recycling and remobilization of N have strong impacts on crop yield and quality under N deficiency. Autophagy is a critical nutrient‐recycling process that facilitates remobilization under starvation. We previously showed that an important AuTophaGy (ATG) protein from apple, MdATG18a, has a positive role in drought tolerance. In this study, we explored its biological role in response to low‐N. Overexpression of MdATG18a in both Arabidopsis and apple improved tolerance to N‐depletion and caused a greater accumulation of anthocyanin. The increased anthocyanin concentration in transgenic apple was possibly due to up‐regulating flavonoid biosynthetic and regulatory genes ( MdCHI , MdCHS , MdANS , MdPAL , MdUFGT , and MdMYB1 ) and higher soluble sugars concentration. MdATG18a overexpression enhanced starch degradation with up‐regulating amylase gene ( MdAM1 ) and up‐regulated sugar metabolism related genes ( MdSS1 , MdHXKs , MdFK1 , and MdNINVs ). Furthermore, MdATG18a functioned in nitrate uptake and assimilation by up‐regulating nitrate reductase MdNIA2 and 3 high‐affinity nitrate transporters MdNRT2.1/2.4/2.5. MdATG18a overexpression also elevated other important MdATG genes expression and autophagosomes formation under N‐depletion, which play key contributions to above changes. Together, these results demonstrate that overexpression of MdATG18a enhances tolerance to N‐deficiencies and plays positive roles in anthocyanin biosynthesis through greater autophagic activity.