Hebrew
Albanian
Arabic
Armenian
Azerbaijani
Belarusian
Bengali
Bosnian
Catalan
Czech
Danish
Deutsch
Dutch
English
Estonian
Finnish
Français
Greek
Haitian Creole
Hebrew
Hindi
Hungarian
Icelandic
Indonesian
Irish
Italian
Japanese
Korean
Latvian
Lithuanian
Macedonian
Mongolian
Norwegian
Persian
Polish
Portuguese
Romanian
Russian
Serbian
Slovak
Slovenian
Spanish
Swahili
Swedish
Turkish
Ukrainian
Vietnamese
Български
中文(简体)
中文(繁體)

acetamide/arabidopsis

הקישור נשמר בלוח
מאמריםניסויים קלינייםפטנטים
עמוד 1 מ 20 תוצאות

The NtAMI1 gene functions in cell division of tobacco BY-2 cells in the presence of indole-3-acetamide.

רק משתמשים רשומים יכולים לתרגם מאמרים
התחבר הרשם
Tobacco (Nicotiana tabacum) Bright Yellow-2 (BY-2) cells can be grown in medium containing indole-3-acetamide (IAM). Based on this finding, the NtAMI1 gene, whose product is functionally equivalent to the AtAMI1 gene of Arabidopsis thaliana and the aux2 gene of Agrobacterium rhizogenes, was isolated

Occurrence and formation of indole-3-acetamide in Arabidopsis thaliana.

רק משתמשים רשומים יכולים לתרגם מאמרים
התחבר הרשם
An HPLC/GC-MS/MS technique (high-pressure liquid chromatography in combination with gas chromatography-tandem mass spectrometry) has been worked out to analyze indole-3-acetamide (IAM) with very high sensitivity, using isotopically labelled IAM as an internal standard. Using this technique, the
Acylamidohydrolases from higher plants have not been characterized or cloned so far. AtAMI1 is the first member of this enzyme family from a higher plant and was identified in the genome of Arabidopsis thaliana based on sequence homology with the catalytic-domain sequence of bacterial

The AMI1 gene family: indole-3-acetamide hydrolase functions in auxin biosynthesis in plants.

רק משתמשים רשומים יכולים לתרגם מאמרים
התחבר הרשם
Novel genes that function in the conversion of indole-3-acetamide (IAM) into indole-3-acetic acid (IAA), which were previously thought to exist only in the bacterial genome, have been isolated from plants. The finding of the AtAMI1 gene in Arabidopsis thaliana and the NtAMI1 gene in Nicotiana

Tryptophan-dependent indole-3-acetic acid biosynthesis by 'IAA-synthase' proceeds via indole-3-acetamide.

רק משתמשים רשומים יכולים לתרגם מאמרים
התחבר הרשם
Plants are suggested to produce their major growth promoting phytohormone, indole-3-acetic acid (IAA), via multiple redundantly operating pathways. Although great effort has been made and plenty of possible routes have been proposed based on experimental evidence, a complete pathway for IAA

Two homologous INDOLE-3-ACETAMIDE (IAM) HYDROLASE genes are required for the auxin effects of IAM in Arabidopsis.

רק משתמשים רשומים יכולים לתרגם מאמרים
התחבר הרשם
Indole-3-acetamide (IAM) is the first confirmed auxin biosynthetic intermediate in some plant pathogenic bacteria. Exogenously applied IAM or production of IAM by overexpressing the bacterial iaaM gene in Arabidopsis causes auxin overproduction phenotypes. However, it is still inconclusive whether

Arabidopsis amidase 1, a member of the amidase signature family.

רק משתמשים רשומים יכולים לתרגם מאמרים
התחבר הרשם
Amidase 1 (AMI1), a specific indole-3-acetamide amidohydrolase, is an Arabidopsis thaliana amidase signature enzyme that catalyzes the synthesis of indole-3-acetic acid from indole-3-acetamide. Amidase signature family members catalyze a diverse range of enzymatic reactions and are found widespread

Identification of Two Auxin-Regulated Potassium Transporters Involved in Seed Maturation.

רק משתמשים רשומים יכולים לתרגם מאמרים
התחבר הרשם
The seed is the most important plant reproductive unit responsible for the evolutionary success of flowering plants. Aside from its essential function in the sexual reproduction of plants, the seed also represents the most economically important agricultural product worldwide, providing energy,

Subcellular localization and tissue specific expression of amidase 1 from Arabidopsis thaliana.

רק משתמשים רשומים יכולים לתרגם מאמרים
התחבר הרשם
Amidase 1 (AMI1) from Arabidopsis thaliana converts indole-3-acetamide (IAM), into indole-3-acetic acid (IAA). AMI1 is part of a small isogene family comprising seven members in A. thaliana encoding proteins which share a conserved glycine- and serine-rich amidase-signature. One member of this

Phytoremediation of acetochlor residue by transgenic Arabidopsis expressing the acetochlor N-dealkylase from Sphingomonas wittichii DC-6.

רק משתמשים רשומים יכולים לתרגם מאמרים
התחבר הרשם
Transgenic engineering is an effective way for plants to obtain strong degradation or detoxification abilities to target pollutants. Acetochlor is an important and widely used herbicide, however, its residue is persistent in soil and is toxic to humans and rotation crops. In this study, the

The Thiol Reductase Activity of YUCCA6 Mediates Delayed Leaf Senescence by Regulating Genes Involved in Auxin Redistribution.

רק משתמשים רשומים יכולים לתרגם מאמרים
התחבר הרשם
Auxin, a phytohormone that affects almost every aspect of plant growth and development, is biosynthesized from tryptophan via the tryptamine, indole-3-acetamide, indole-3-pyruvic acid, and indole-3-acetaldoxime pathways. YUCCAs (YUCs), flavin monooxygenase enzymes, catalyze the conversion of
BACKGROUND Glutathione S-transferases (GSTs) are detoxifying enzymes present in all aerobic organisms. These enzymes catalyse the conjugation of glutathione with a variety of electrophilic compounds. In plants, GSTs catalyse the first step in the degradation of several herbicides, such as triazines
Growth and development, and auxin polar transport in Arabidopsis thaliana transformed with iaaH gene were studied under simulated microgravity conditions on a three-dimensional (3-D) clinostat. Simulated microgravity conditions on a 3-D clinostat did not affect the number of rosette leaves but

Indole-3-acetic acid production by endophytic Streptomyces sp. En-1 isolated from medicinal plants.

רק משתמשים רשומים יכולים לתרגם מאמרים
התחבר הרשם
Plant-associated actinobacteria are rich sources of bioactive compounds including indole-derived molecules such as phytohormone indole-3-acetic acid (IAA). In view of few investigations concerning the biosynthesis of IAA by endophytic actinobacteria, this study evaluated the potential of IAA
Salicylic acid (SA) plays an important signaling role in the resistance of many plants to pathogen invasion. Increases in endogenous SA levels have been associated with the hypersensitive response as well as systemic acquired resistance (SAR). SA also induces the expression of a subset of the
הצטרפו לדף הפייסבוק שלנו

המאגר השלם ביותר של צמחי מרפא המגובה על ידי המדע

  • עובד ב 55 שפות
  • מרפא צמחי מרפא מגובה על ידי מדע
  • זיהוי עשבי תיבול על ידי דימוי
  • מפת GPS אינטראקטיבית - תייגו עשבי תיבול במיקום (בקרוב)
  • קרא פרסומים מדעיים הקשורים לחיפוש שלך
  • חפש עשבי מרפא על פי השפעותיהם
  • ארגן את תחומי העניין שלך והתעדכן במחקר החדשות, הניסויים הקליניים והפטנטים

הקלד סימפטום או מחלה וקרא על צמחי מרפא שעשויים לעזור, הקלד עשב וראה מחלות ותסמינים שהוא משמש נגד.
* כל המידע מבוסס על מחקר מדעי שפורסם

Google Play badgeApp Store badge