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1.
J Plant Physiol ; 252: 153243, 2020 Sep.
Artigo em Inglês | MEDLINE | ID: mdl-32758793

RESUMO

The low-auxin-sensitivity tomato mutant, dgt, despite displaying reduced plant growth, has been linked to greater resistance to N deficiency. This led us to test the role of auxin resistance of dgt in NH4+ toxicity and N deficiency, compared to wild type tomato (cv. Micro-Tom, MT), grown in hydroponic media. A completely randomized design with three replications in a 2 × 4 factorial scheme was adopted, corresponding to the two tomato genotypes (MT and dgt), involving four nutritional treatments: NO3- (5 mM); NH4+ (5 mM); NO3- (5 mM) plus exogenous auxin (10 µM IAA); and N omission. The results show that NH4+ was toxic to MT but not to dgt. Under N deficiency, MT displayed a lower shoot NO3- content, a lower photosynthetic rate, and a decrease in both shoot and root dry weight. However, in dgt, no difference was observed in shoot NO3- content and photosynthetic rate between plants grown on NO3- or under N deficiency. In addition, dgt showed an increase in shoot dry weight under N deficiency. We highlight the role of auxin resistance in the adaptation of plants to NH4+ toxicity and N deficiency.


Assuntos
Compostos de Amônio/toxicidade , Genótipo , Ácidos Indolacéticos/farmacologia , Nitrogênio/deficiência , Reguladores de Crescimento de Plantas/farmacologia , Solanum lycopersicum/metabolismo , Solanum lycopersicum/genética , Mutação
2.
Biol Res ; 51(1): 43, 2018 Nov 03.
Artigo em Inglês | MEDLINE | ID: mdl-30390705

RESUMO

BACKGROUND: CircRNAs are widespread in plants and play important roles in response to abiotic stresses. Low nitrogen (LN) promotes the growth of plant root system, allowing it to explore more nitrogen. However, whether circRNAs involved in the response to LN stress and the regulation of LN-promoted root growth in wheat remains unclear. METHODS: Two wheat varieties (LH9 and XN979) with contrasting root phenotypes to LN stress were used as materials to identify circRNAs under control and LN conditions by using high-throughput sequencing technology. RESULTS: Six differentially expressed circRNAs (DECs) involved in the common response to LN stress and 23 DECs involved in the regulation of LN-promoted root growth were successfully identified. GO analysis of the DEC-host genes involved in the regulation of LN-promoted root growth showed that GO terms related to biological regulation, responses to stimuli and signalling were significantly enriched. Moreover, seven DECs were predicted to have miRNA binding sites and may serve as miRNA sponges to capture miRNAs from their target genes. CONCLUSIONS: LN stress altered the expression profiles of circRNAs in wheat. This is the first report of LN stress responsive circRNAs in plants. Our results provided new clues for investigating the functions of circRNAs in response to LN stress and in the regulation of LN-promoted wheat root growth.


Assuntos
Regulação da Expressão Gênica de Plantas/fisiologia , Nitrogênio/metabolismo , Raízes de Plantas/crescimento & desenvolvimento , RNA/isolamento & purificação , Estresse Fisiológico/fisiologia , Triticum/crescimento & desenvolvimento , RNA/metabolismo , RNA Circular , Triticum/fisiologia
3.
Biol. Res ; 51: 43, 2018. tab, graf
Artigo em Inglês | LILACS | ID: biblio-983944

RESUMO

BACKGROUND: CircRNAs are widespread in plants and play important roles in response to abiotic stresses. Low nitrogen (LN) promotes the growth of plant root system, allowing it to explore more nitrogen. However, whether circRNAs involved in the response to LN stress and the regulation of LN-promoted root growth in wheat remains unclear. METHODS: Two wheat varieties (LH9 and XN979) with contrasting root phenotypes to LN stress were used as materials to identify circRNAs under control and LN conditions by using high-throughput sequencing technology. RESULTS: Six differentially expressed circRNAs (DECs) involved in the common response to LN stress and 23 DECs involved in the regulation of LN-promoted root growth were successfully identified. GO analysis of the DEC-host genes involved in the regulation of LN-promoted root growth showed that GO terms related to biological regulation, responses to stimuli and signalling were significantly enriched. Moreover, seven DECs were predicted to have miRNA binding sites and may serve as miRNA sponges to capture miRNAs from their target genes. CONCLUSIONS: LN stress altered the expression profiles of circRNAs in wheat. This is the first report of LN stress responsive circRNAs in plants. Our results provided new clues for investigating the functions of circRNAs in response to LN stress and in the regulation of LN-promoted wheat root growth.


Assuntos
Estresse Fisiológico/fisiologia , Triticum/crescimento & desenvolvimento , RNA/isolamento & purificação , Raízes de Plantas/crescimento & desenvolvimento , Regulação da Expressão Gênica de Plantas/fisiologia , Nitrogênio/metabolismo , Triticum/fisiologia , RNA/metabolismo , RNA Circular
4.
J Agric Food Chem ; 63(3): 1042-52, 2015 Jan 28.
Artigo em Inglês | MEDLINE | ID: mdl-25588121

RESUMO

In comparison to the exponential increase of genotyping methods, phenotyping strategies are lagging behind in agricultural sciences. Genetic improvement depends upon the abundance of quantitative phenotypic data and the statistical partitioning of variance into environmental, genetic, and random effects. A metabolic phenotyping strategy was adapted to increase sample throughput while saving reagents, reducing cost, and simplifying data analysis. The chemical profiles of stem extracts from maize plants grown under low nitrogen (LN) or control trial (CT) were analyzed using optimized protocols for direct-injection electrospray ionization mass spectrometry (DIESI-MS). Specific ions significantly decreased or increased because of environmental (LN versus CT) or genotypic effects. Biochemical profiling with DIESI-MS had a superior cost-benefit compared to other standard analytical technologies (e.g., ultraviolet, near-infrared reflectance spectroscopy, high-performance liquid chromatography, and gas chromatography with flame ionization detection) routinely used for plant breeding. The method can be successfully applied in maize, strawberry, coffee, and other crop species.


Assuntos
Meio Ambiente , Metabolômica , Fenótipo , Extratos Vegetais/química , Extratos Vegetais/genética , Espectrometria de Massas por Ionização por Electrospray/métodos , Agricultura/métodos , Cruzamento , Genótipo , Nitrogênio/administração & dosagem , Zea mays/química , Zea mays/genética , Zea mays/crescimento & desenvolvimento
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