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KIF26B plays an important role in kidney development. We engineered mice lacking the C‐terminal region of KIF26B and found severe kidney defects, including bilateral renal agenesis, similar to full Kif26b knockout mice. The mutation disrupted nephron progenitor condensation and reduced Gdnf‐Wnt11 signaling, showing that the KIF26B C‐terminal region is ...
Yuta Yamamura +19 more
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Retraction: Responses of Rapid Viscoanalyzer Profile and Other Rice Grain Qualities to Exogenously Applied Plant Growth Regulators under High Day and High Night Temperatures. [PDF]
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In a murine model of myocardial ischemia and reperfusion (MI/R), the CD36 azapeptide ligand MPE‐298 reduces cardiac injury and transiently lowers left ventricular long‐chain fatty acids (LCFAs) accumulation 3 h after reperfusion, accompanied by a decrease of oxidative stress and inflammation‐associated genes' expression in the heart and adipose tissue.
Jade Gauvin +12 more
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Oilseed rape : managment inputs : canopy structure and plant growth regulators.
Rawlinson, C. J., Child, R. D.
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Plant hormones, plant growth regulators
Orvosi Hetilap, 2014Plants seem to be rather defenceless, they are unable to do motion, have no nervous system or immune system unlike animals. Besides this, plants do have hormones, though these substances are produced not in glands. In view of their complexity they lagged behind animals, however, plant organisms show large scale integration in their structure and ...
György, Végvári, Edina, Vidéki
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On the action of plant growth regulators
Biochimica et Biophysica Acta, 1952Abstract A plant growth regulator 2-methyl 4-chlorophenoxy acetic acid “MCPA” is interacted with a range of surface-active compounds, spread as monolayers on a Langmuir trough, to investigate factors involved in its mode of action within the plant. By using quaternary ammonium salt C 18 H 37 N + (CH 3 ) 3 }Cl − , it is deduced that “MCPA” interacts ...
R C, BRIAN, E K, RIDEAL
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Castanospermine?a plant growth regulator
Journal of Chemical Ecology, 1988Castanospermine, 1,6,7,8-tetrahydroxyoctahydroindolizine, has been shown to be a potent dicot phytotoxin. The effective concentration to inhibit root length elongation of dicot roots by 50% is 300 ppb, while the effective concentration against monocot roots is 200 ppm, i.e., 10(3) times less effective.
K L, Stevens, R J, Molyneux
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