Iron deficiency triggered transcriptome changes in bread wheat

Autor: Jiazhen Gong, Meng Wang, Navreet K. Bhullar
Jazyk: angličtina
Rok vydání: 2020
Předmět:
YSL
YELLOW STRIPE LIKE

Iron deficiency
RNA sequencing
Transcriptomic profiles
Wheat
Biofortification
ZIFL
ZINC INDUCED FACILITATOR-LIKE

Biochemistry
bHLH
BASIC HELIX-LOOP-HELIX

Transcriptome
0302 clinical medicine
HMA
HEAVY METAL-ASSOCIATED

KAT
3-KETOACYL-COA THIOLASE

SAM
S-adenosyl-L-methionine

Nicotianamine
GO
Gene ontology

bZIP
BASIC LEUCINE ZIPPER

0303 health sciences
epiHMA
3-epihydroxymugineic acid

TOM
TRANSPORTER OF MUGINEIC ACID

food and beverages
MFS
MAJOR FACILITATOR SUPERFAMILY

030220 oncology & carcinogenesis
OPT
OLIGOPEPTIDE TRANSPORTER

HC
high confidence

AEC
AUXIN EFFLUX CARRIER

DMA
deoxymugineic acid

3-HMA
3-hydroxymugineic acid

PYE
POPEYE

FDR
false discovery rate

DEGs
differentially expressed genes

lcsh:Biotechnology
OPCL
4-COUMARATE COA LIGASE

Biophysics
03 medical and health sciences
Genetics
IHW
independent hypothesis weighting

VIT
VACUOLAR IRON TRANSPORTER

SAMS
S-ADENOSYL-L-METHIONINE SYNTHETASE

OPR
12-OXOPHYTODIENOATE REDUCTASE

SLC40A1
SOLUTE CARRIER FAMILY 40 MEMBER 1

PSs
phytosiderophores

medicine.disease
AOS
ALLENE OXIDE SYNTHASE

IRT1
IRON-REGULATED TRANSPORTER

chemistry
FRO
FERRIC REDUCTASE OXIDASE

FIT
FER-LIKE IRON DEFICIENCY-INDUCED TRANSCRIPTION FACTOR

AOC
ALLENE OXIDE CYCLASE

GSH
GLUTATHIONE

DMAS
DEOXYMUGINEIC ACID SYNTHASE

MATE
MULTI ANTIMICROBIAL EXTRUSION PROTEIN

chemistry.chemical_compound
Structural Biology
MRP
MULTIDRUG RESISTANCE PROTEIN

Jasmonate
MA
mugineic acid

ERF
ETHYLENE-RESPONSIVE FACTOR

JMT
JASMONATE O-METHYLTRANSFERASE

JAs
jasmonates

ABC
ATP-BINDING CASSETTE

SWEET
SUGARS WILL EVENTUALLY BE EXPORTED TRANSPORTERS

FAD
FATTY ACID DESATURASE

NA
nicotianamine

Computer Science Applications
AQP
AQUAPORIN

ILR3
IAA‐LEUCINE RESISTANT3

ZIP
ZINC/IRON PERMEASE

NRT1/PTR
NITRATE TRANSPORTER 1/PEPTIDE TRANSPORTER

Iron
Fe

LOX
LIPOXYGENASE

Research Article
Biotechnology
PDR
PLEIOTROPIC DRUG RESISTANCE

PRI
POSITIVE REGULATOR OF IRON DEFICIENCY RESPONSE

PT
peptide transport

ACC
1-aminocyclopropane-1-carboxylate

NRAMP
NATURAL RESISTANCE ASSOCIATED MACROPHAGE PROTEIN

Biology
IDEF
IDE BINDING FACTOR

lcsh:TP248.13-248.65
medicine
IREG/FPN
IRON REGULATED PROTEIN/FERROPORTIN

DPA
days post anthesis

epiHDMA
3-epihydroxy-2′-deoxymugineic acid

NAAT
NICOTIANAMINE AMINOTRANSFERASE

GCN
gene co-expression network

Gene
Transcription factor
ComputingMethodologies_COMPUTERGRAPHICS
030304 developmental biology
IDE
iron deficiency-responsive cis-acting element

NAS
NICOTIANAMINE SYNTHASE

Major facilitator superfamily
MT
METALLOTHIONEIN

NAC
NO APICAL MERISTEM (NAM)/ARABIDOPSIS TRANSCRIPTION ACTIVATION FACTOR (ATAF)/CUP-SHAPED COTYLEDON (CUC)

PLA
PHOSPHOLIPASE A1

AVA
avenic acid
Zdroj: Computational and Structural Biotechnology Journal, Vol 18, Iss, Pp 2709-2722 (2020)
Computational and Structural Biotechnology Journal, 18
Computational and Structural Biotechnology Journal
ISSN: 2001-0370
DOI: 10.3929/ethz-b-000446016
Popis: A series of complex transport, storage and regulation mechanisms control iron metabolism and thereby maintain iron homeostasis in plants. Despite several studies on iron deficiency responses in different plant species, these mechanisms remain unclear in the allohexaploid wheat, which is the most widely cultivated commercial crop. We used RNA sequencing to reveal transcriptomic changes in the wheat flag leaves and roots, when subjected to iron limited conditions. We identified 5969 and 2591 differentially expressed genes (DEGs) in the flag leaves and roots, respectively. Genes involved in the synthesis of iron ligands i.e., nicotianamine (NA) and deoxymugineic acid (DMA) were significantly up-regulated during iron deficiency. In total, 337 and 635 genes encoding transporters exhibited altered expression in roots and flag leaves, respectively. Several genes related to MAJOR FACILITATOR SUPERFAMILY (MFS), ATP-BINDING CASSETTE (ABC) transporter superfamily, NATURAL RESISTANCE ASSOCIATED MACROPHAGE PROTEIN (NRAMP) family and OLIGOPEPTIDE TRANSPORTER (OPT) family were regulated, indicating their important roles in combating iron deficiency stress. Among the regulatory factors, the genes encoding for transcription factors of BASIC HELIX-LOOP-HELIX (bHLH) family were highly up-regulated in both roots and the flag leaves. The jasmonate biosynthesis pathway was significantly altered but with notable expression differences between roots and flag leaves. Homoeologs expression and induction bias analysis revealed subgenome specific differential expression. Our findings provide an integrated overview on regulated molecular processes in response to iron deficiency stress in wheat. This information could potentially serve as a guideline for breeding iron deficiency stress tolerant crops as well as for designing appropriate wheat iron biofortification strategies.
Computational and Structural Biotechnology Journal, 18
ISSN:2001-0370
Databáze: OpenAIRE