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Genome-Wide Identification and Evolutionary Analysis of the SRO Gene Family in Tomato

SCI

机构:

来源:FRONTIERS IN GENETICS年份:2021

关键词: SRO gene family; tomato; biotic; abiotic stresses; bioinformatics; phylogenetic

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Transcriptome profiling based on Illumina- and SMRT-based RNA-seq reveals circadian regulation of key pathways in flower bud development in walnut

SCI

机构:

来源:PLOS ONE年份:2021
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A Single-Nucleotide Mutation in a GLUTAMATE RECEPTOR-LIKE Gene Confers Resistance to Fusarium Wilt in Gossypium hirsutum

SCI

机构:

来源:ADVANCED SCIENCE年份:2021

关键词: disease‐ resistant genes; Fusarium wilt; GLUTAMATE RECEPTOR‐ LIKE genes; Gossypium hirsutum

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Yield Comparisons between Cotton Variety Xin Nong Mian 1 and Its Transgenic ScALDH21 Lines under Different Water Deficiencies in a Desert-Oasis Ecotone

SCI

机构:

来源:AGRONOMY-BASEL年份:2021

关键词: irrigation strategy; ScALDH21; transgenic cotton; water deficiency; yield and fiber quality

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Metabolomics analysis of grains of wheat infected and noninfected with Tilletia controversa Kuhn

SCI

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来源:SCIENTIFIC REPORTS年份:2021
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Identification of Candidate Olfactory Genes in Scolytus schevyrewi Based on Transcriptomic Analysis

SCI

机构:

来源:FRONTIERS IN PHYSIOLOGY年份:2021

关键词: Scolytus schevyrewi; transcriptome; olfactory genes; expression analysis; antennae

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Litoribacter populi sp. nov., isolated from the soil of a Populus euphratica forest

SCI

机构:

来源:ARCHIVES OF MICROBIOLOGY年份:2021

关键词: Litoribacter; Soil; Populus euphratica; Cyclobacteriaceae

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Genomic signatures of vegetable and oilseed allopolyploid Brassica juncea and genetic loci controlling the accumulation of glucosinolates

SCI

机构:

来源:PLANT BIOTECHNOLOGY JOURNAL年份:2021

关键词: Brassica juncea; allopolyploid; structural variations; copy number variation; glucosinolates

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Soil potassium regulation by changes in potassium balance and iron and aluminum oxides in paddy soils subjected to long-term fertilization regimes

SCI

机构:

来源:SOIL & TILLAGE RESEARCH年份:2021

关键词: Potassium balance; Iron and aluminum oxides; Long-term fertilization; Paddy soil

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Salt-responsive transcriptome analysis of triticale reveals candidate genes involved in the key metabolic pathway in response to salt stress

SCI

机构:

来源:SCIENTIFIC REPORTS年份:2020