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point decrease » point increase (Expand Search)
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100801
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100802
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100803
Image_8_Phosphate-Starvation-Inducible S-Like RNase Genes in Rice Are Involved in Phosphate Source Recycling by RNA Decay.JPEG
Published 2020“…In this study, we first carried out a phylogenetic analysis of eight rice and five Arabidopsis RNS genes and identified mono-specific class I and dicot-specific class I RNS genes, suggesting the possibility of functional diversity between class I RNS family members in monocot and dicot species through evolution. …”
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100804
Amelioration of Huntington’s disease phenotype in astrocytes derived from iPSC-derived neural progenitor cells of Huntington’s disease monkeys
Published 2019“…Expression of <i>mHTT</i> in differentiated astrocytes induced cytosolic mHTT aggregates and nuclear inclusions, suppressed the expression of <i>SOD2</i> and <i>PGC1</i>, reduced ability to uptake glutamate, decreased 4-aminopyridine (4-AP) response, and shifted I/V plot measured by electrophysiology, which are consistent with previous reports on HD astrocytes and patient brain samples. …”
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100805
Image_2_Phosphate-Starvation-Inducible S-Like RNase Genes in Rice Are Involved in Phosphate Source Recycling by RNA Decay.JPEG
Published 2020“…In this study, we first carried out a phylogenetic analysis of eight rice and five Arabidopsis RNS genes and identified mono-specific class I and dicot-specific class I RNS genes, suggesting the possibility of functional diversity between class I RNS family members in monocot and dicot species through evolution. …”
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100806
Table_2_Phosphate-Starvation-Inducible S-Like RNase Genes in Rice Are Involved in Phosphate Source Recycling by RNA Decay.DOCX
Published 2020“…In this study, we first carried out a phylogenetic analysis of eight rice and five Arabidopsis RNS genes and identified mono-specific class I and dicot-specific class I RNS genes, suggesting the possibility of functional diversity between class I RNS family members in monocot and dicot species through evolution. …”
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100807
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100808
DataSheet_1_Shifting sensitivity of septoria tritici blotch compromises field performance and yield of main fungicides in Europe.docx
Published 2022“…<p>Septoria tritici blotch (STB; Zymoseptoria tritici) is a severe leaf disease on wheat in Northern Europe. …”
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100809
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100810
Table_1_Phosphate-Starvation-Inducible S-Like RNase Genes in Rice Are Involved in Phosphate Source Recycling by RNA Decay.DOCX
Published 2020“…In this study, we first carried out a phylogenetic analysis of eight rice and five Arabidopsis RNS genes and identified mono-specific class I and dicot-specific class I RNS genes, suggesting the possibility of functional diversity between class I RNS family members in monocot and dicot species through evolution. …”
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100811
Image_7_Phosphate-Starvation-Inducible S-Like RNase Genes in Rice Are Involved in Phosphate Source Recycling by RNA Decay.JPEG
Published 2020“…In this study, we first carried out a phylogenetic analysis of eight rice and five Arabidopsis RNS genes and identified mono-specific class I and dicot-specific class I RNS genes, suggesting the possibility of functional diversity between class I RNS family members in monocot and dicot species through evolution. …”
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100812
DataSheet_6_Integrated physiological and weighted gene co-expression network analysis reveals the hub genes engaged in nitrate-regulated alleviation of ammonium toxicity at the see...
Published 2022“…In this study, we integrated physiological and weighted gene co-expression network analysis (WGCNA) to identify the hub genes involved in nitrate alleviation of ammonium toxicity at the wheat seedling stage. Five NH<sub>4</sub><sup>+</sup>/NO<sub>3</sub><sup>-</sup> ratio treatments, including 100/0 (N<sub>a</sub>), 75/25 (N<sub>r1</sub>), 50/50 (N<sub>r2</sub>), 25/75 (N<sub>r3</sub>), and 0/100 (N<sub>n</sub>) were tested in this study. …”
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100813
DataSheet_4_Integrated physiological and weighted gene co-expression network analysis reveals the hub genes engaged in nitrate-regulated alleviation of ammonium toxicity at the see...
Published 2022“…In this study, we integrated physiological and weighted gene co-expression network analysis (WGCNA) to identify the hub genes involved in nitrate alleviation of ammonium toxicity at the wheat seedling stage. Five NH<sub>4</sub><sup>+</sup>/NO<sub>3</sub><sup>-</sup> ratio treatments, including 100/0 (N<sub>a</sub>), 75/25 (N<sub>r1</sub>), 50/50 (N<sub>r2</sub>), 25/75 (N<sub>r3</sub>), and 0/100 (N<sub>n</sub>) were tested in this study. …”
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100814
DataSheet_2_Integrated physiological and weighted gene co-expression network analysis reveals the hub genes engaged in nitrate-regulated alleviation of ammonium toxicity at the see...
Published 2022“…In this study, we integrated physiological and weighted gene co-expression network analysis (WGCNA) to identify the hub genes involved in nitrate alleviation of ammonium toxicity at the wheat seedling stage. Five NH<sub>4</sub><sup>+</sup>/NO<sub>3</sub><sup>-</sup> ratio treatments, including 100/0 (N<sub>a</sub>), 75/25 (N<sub>r1</sub>), 50/50 (N<sub>r2</sub>), 25/75 (N<sub>r3</sub>), and 0/100 (N<sub>n</sub>) were tested in this study. …”
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100815
DataSheet_1_Integrated physiological and weighted gene co-expression network analysis reveals the hub genes engaged in nitrate-regulated alleviation of ammonium toxicity at the see...
Published 2022“…In this study, we integrated physiological and weighted gene co-expression network analysis (WGCNA) to identify the hub genes involved in nitrate alleviation of ammonium toxicity at the wheat seedling stage. Five NH<sub>4</sub><sup>+</sup>/NO<sub>3</sub><sup>-</sup> ratio treatments, including 100/0 (N<sub>a</sub>), 75/25 (N<sub>r1</sub>), 50/50 (N<sub>r2</sub>), 25/75 (N<sub>r3</sub>), and 0/100 (N<sub>n</sub>) were tested in this study. …”
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100816
DataSheet_3_Integrated physiological and weighted gene co-expression network analysis reveals the hub genes engaged in nitrate-regulated alleviation of ammonium toxicity at the see...
Published 2022“…In this study, we integrated physiological and weighted gene co-expression network analysis (WGCNA) to identify the hub genes involved in nitrate alleviation of ammonium toxicity at the wheat seedling stage. Five NH<sub>4</sub><sup>+</sup>/NO<sub>3</sub><sup>-</sup> ratio treatments, including 100/0 (N<sub>a</sub>), 75/25 (N<sub>r1</sub>), 50/50 (N<sub>r2</sub>), 25/75 (N<sub>r3</sub>), and 0/100 (N<sub>n</sub>) were tested in this study. …”
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100817
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100818
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100819
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100820