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1
Cysteine metabolism in cultured tobacco cells.
Plant Physiol. 1980 Jan;65(1):151-5. doi: 10.1104/pp.65.1.151.
2
Cysteine transport into cultured tobacco cells.
Plant Physiol. 1977 Dec;60(6):807-11. doi: 10.1104/pp.60.6.807.
3
Mechanisms of h(2)s production from cysteine and cystine by microorganisms isolated from soil by selective enrichment.
Appl Environ Microbiol. 1991 May;57(5):1413-7. doi: 10.1128/aem.57.5.1413-1417.1991.
4
Emission of Hydrogen Sulfide by Leaf Tissue in Response to l-Cysteine.
Plant Physiol. 1982 Aug;70(2):430-6. doi: 10.1104/pp.70.2.430.
5
Characterization of L-cysteine desulfhydrase from Prevotella intermedia.
Oral Microbiol Immunol. 2009 Dec;24(6):485-92. doi: 10.1111/j.1399-302X.2009.00546.x.
8
Developmental changes in the potential for h(2)s emission in cucurbit plants.
Plant Physiol. 1983 Feb;71(2):269-75. doi: 10.1104/pp.71.2.269.
9
Compartmentation of Sulfur Metabolites in Tobacco Cells : USE OF EFFLUX ANALYSIS.
Plant Physiol. 1981 Oct;68(4):937-40. doi: 10.1104/pp.68.4.937.

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1
Effect of hydrogen sulfide (HS) on the growth and development of tobacco seedlings in absence of stress.
BMC Plant Biol. 2024 Mar 2;24(1):162. doi: 10.1186/s12870-024-04819-w.
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Ammonia borane positively regulates cold tolerance in Brassica napus via hydrogen sulfide signaling.
BMC Plant Biol. 2022 Dec 14;22(1):585. doi: 10.1186/s12870-022-03973-3.
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Hydrogen sulfide (HS) signaling in plant development and stress responses.
aBIOTECH. 2021;2(1):32-63. doi: 10.1007/s42994-021-00035-4. Epub 2021 Mar 1.
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Something smells bad to plant pathogens: Production of hydrogen sulfide in plants and its role in plant defence responses.
J Adv Res. 2020 Sep 17;27:199-209. doi: 10.1016/j.jare.2020.09.005. eCollection 2021 Jan.
7
Hydrogen Sulfide: A Gaseous Molecule in Postharvest Freshness.
Front Plant Sci. 2018 Aug 27;9:1172. doi: 10.3389/fpls.2018.01172. eCollection 2018.
8
Transcriptome profiling and identification of functional genes involved in HS response in grapevine tissue cultured plantlets.
Genes Genomics. 2018 Dec;40(12):1287-1300. doi: 10.1007/s13258-018-0723-z. Epub 2018 Aug 2.
9
Atmospheric H2S and SO2 as sulfur source for Brassica juncea and Brassica rapa: impact on the glucosinolate composition.
Front Plant Sci. 2015 Oct 28;6:924. doi: 10.3389/fpls.2015.00924. eCollection 2015.
10
Physiological Implications of Hydrogen Sulfide in Plants: Pleasant Exploration behind Its Unpleasant Odour.
Oxid Med Cell Longev. 2015;2015:397502. doi: 10.1155/2015/397502. Epub 2015 May 11.

本文引用的文献

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Light-dependent Emission of Hydrogen Sulfide from Plants.
Plant Physiol. 1978 Feb;61(2):184-9. doi: 10.1104/pp.61.2.184.
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Cysteine transport into cultured tobacco cells.
Plant Physiol. 1977 Dec;60(6):807-11. doi: 10.1104/pp.60.6.807.
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Sulfate transport in cultured tobacco cells.
Plant Physiol. 1975 Feb;55(2):303-7. doi: 10.1104/pp.55.2.303.
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The effects of amino acids and ammonium on the growth of plant cells in suspension culture.
Plant Physiol. 1970 Apr;45(4):372-5. doi: 10.1104/pp.45.4.372.
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Regulation of sulfate uptake by amino acids in cultured tobacco cells.
Plant Physiol. 1969 Sep;44(9):1253-9. doi: 10.1104/pp.44.9.1253.
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Protein measurement with the Folin phenol reagent.
J Biol Chem. 1951 Nov;193(1):265-75.
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A DIRECT MICRODETERMINATION FOR SULFIDE.
Anal Biochem. 1965 Apr;11:126-32. doi: 10.1016/0003-2697(65)90051-5.
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Metabolic pools and the synthesis of macromolecules.
Biochim Biophys Acta. 1959 Jan;31(1):236-45. doi: 10.1016/0006-3002(59)90460-3.

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