Biochar Administration to San Marzano Tomato Plants Cultivated Under Low-Input Farming Increases Growth, Fruit Yield, and Affects Gene Expression

scientific article published on 27 August 2020

Biochar Administration to San Marzano Tomato Plants Cultivated Under Low-Input Farming Increases Growth, Fruit Yield, and Affects Gene Expression is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.3389/FPLS.2020.01281
P932PMC publication ID7481538
P698PubMed publication ID32973840

P2093author name stringAndrea Scaloni
Maria Tartaglia
Mariapina Rocco
Mauro Marra
Simona Arena
P2860cites workAtSERPIN1 is an inhibitor of the metacaspase AtMC1-mediated cell death and autocatalytic processing in plantaQ38981272
Compost and biochar alter mycorrhization, tomato root exudation, and development of Fusarium oxysporum f. sp. lycopersiciQ41155516
Changes in oxidative processes and components of the antioxidant system during tomato fruit ripeningQ43908526
Putting the carbon back: black is the new green.Q50719739
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Qualitative analysis of volatile organic compounds on biocharQ59293468
Effect of Biochar Amendments on Mycorrhizal Associations and Fusarium Crown and Root Rot of Asparagus in Replant SoilsQ91403914
Analysis of Relative Gene Expression Data Using Real-Time Quantitative PCR and the 2−ΔΔCT MethodQ25938999
The heat shock protein/chaperone network and multiple stress resistanceQ28070209
TaNAC29, a NAC transcription factor from wheat, enhances salt and drought tolerance in transgenic ArabidopsisQ28607904
A handful of carbonQ29393085
Recent developments in biochar as an effective tool for agricultural soil management: a reviewQ31085365
Grape berry biochemistry revisited upon proteomic analysis of the mesocarp.Q33196949
Proteomic analysis of tomato fruits from two ecotypes during ripeningQ33245355
The ecology of climate change and infectious diseasesQ33446311
Patchwork sequencing of tomato San Marzano and Vesuviano varieties highlights genome-wide variationsQ35096655
Metabolic regulation underlying tomato fruit developmentQ36383147
Biochar Amendment Modifies Expression of Soybean and Rhizoctonia solani Genes Leading to Increased Severity of Rhizoctonia Foliar Blight.Q37653642
P275copyright licenseCreative Commons Attribution 4.0 InternationalQ20007257
P6216copyright statuscopyrightedQ50423863
P304page(s)1281
P577publication date2020-08-27
P1433published inFrontiers in Plant ScienceQ27723840
P1476titleBiochar Administration to San Marzano Tomato Plants Cultivated Under Low-Input Farming Increases Growth, Fruit Yield, and Affects Gene Expression
P478volume11

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