Mitochondrial Zea mays Brittle1-1 Is a Major Determinant of the Metabolic Fate of Incoming Sucrose and Mitochondrial Function in Developing Maize Endosperms

被引:8
作者
Bahaji, Abdellatif [1 ]
Jose Munoz, Francisco [1 ]
Maria Segui-Simarro, Jose [2 ]
Camacho-Fernandez, Carolina [2 ]
Rivas-Sendra, Alba [2 ]
Parra-Vega, Veronica [2 ]
Ovecka, Miroslav [1 ,3 ]
Li, Jun [1 ,4 ]
Maria Sanchez-Lopez, Angela [1 ]
Almagro, Goizeder [1 ]
Baroja-Fernandez, Edurne [1 ]
Pozueta-Romero, Javier [1 ]
机构
[1] CSIC, Inst Agrobiotecnol, Gobierno Navarra, Navarra, Spain
[2] Univ Politecn Valencia, COMAV Inst Conservat & Improvement Valencian Agro, Valencia, Spain
[3] Palacky Univ, Dept Cell Biol, Ctr Reg Hana Biotechnol & Agr Res, Fac Sci, Olomouc, Czech Republic
[4] Qingdao Agr Univ, Coll Agron & Plant Protect, Qingdao, Peoples R China
关键词
ADP glucose; dual targeting; mitochondrial carrier family; mitochondrial retrograde signaling; starch; sucrose synthase; Zea mays; ADP-GLUCOSE TRANSPORT; INTRACELLULAR-LOCALIZATION; ADENYLATE TRANSLOCATOR; DEVELOPMENTAL ANALYSIS; BACTERIAL EXPRESSION; BIOCHEMICAL-ANALYSIS; STARCH ACCUMULATION; SYNTHASE ACTIVITY; ARABIDOPSIS; IDENTIFICATION;
D O I
10.3389/fpls.2019.00242
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Zea mays Brittle1-1 (ZmBT1-1) is an essential component of the starch biosynthetic machinery in maize endosperms, enabling ADPglucose transport from cytosol to amyloplast in exchange for AMP or ADP. Although ZmBT1-1 has been long considered to be an amyloplast-specific marker, evidence has been provided that ZmBT1-1 is dually localized to plastids and mitochondria (Bahaji et al., 2011b). The mitochondria' localization of ZmBT1-1 suggested that this protein may have as-yet unidentified function(s). To understand the mitochondrial ZmBT1-1 function(s), we produced and characterized transgenic Zmbt1-1 plants expressing ZmBT1-1 delivered specifically to mitochondria. Metabolic and differential proteomic analyses showed down-regulation of sucrose synthase (SuSy)-mediated channeling of sucrose into starch metabolism, and up-regulation of the conversion of sucrose breakdown products generated by cell wall invertase (CWI) into ethanol and alanine, in Zmbt1-1 endosperms compared to wild-type. Electron microscopic analyses of Zmbt1-1 endosperm cells showed gross alterations in the mitochondrial ultrastructure. Notably, the protein expression pattern, metabolic profile, and aberrant mitochondrial ultrastructure of Zmbt1-1 endosperms were rescued by delivering ZmBT1-1 specifically to mitochondria. Results presented here provide evidence that the reduced starch content in Zmbt1-1 endosperms is at least partly due to (i) mitochondrial dysfunction, (ii) enhanced CWI-mediated channeling of sucrose into ethanol and alanine metabolism, and (iii) reduced SuSy-mediated channeling of sucrose into starch metabolism due to the lack of mitochondrial ZmBT1-1. Our results also strongly indicate that (a) mitochondria' ZmBT1-1 is an important determinant of the metabolic fate of sucrose entering the endosperm cells, and (b) plastidic ZmBT1-1 is not the sole ADPglucose transporter in maize endosperm amyloplasts. The possible involvement of mitochondrial ZmBT1-1 in exchange between intramitochondrial AMP and cytosolic ADP is discussed.
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页数:16
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