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Sairocarpus breweri
Known as:
Antirrhinum breweri
, Antirrhinum vexillo-calyculatum subsp. breweri
, Antirrhinum vexillocalyculatum subsp. breweri
National Institutes of Health
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Highly Cited
2012
Highly Cited
2012
Natural variation in a homolog of Antirrhinum CENTRORADIALIS contributed to spring growth habit and environmental adaptation in cultivated barley
J. Comadran
,
B. Kilian
,
+14 authors
R. Waugh
Nature Genetics
2012
Corpus ID: 13646257
As early farming spread from the Fertile Crescent in the Near East around 10,000 years before the present, domesticated crops…
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2012
2012
Mineral element composition in Antirrhinum subsection Streptosepalum (Plantaginaceae) in Western Europe (Iberian Peninsula)
M. García-Barriuso
,
A. Crespí
,
C. Nabais
,
S. Bernardos
,
F. Amich
2012
Corpus ID: 55058207
Antirrhinum rothmaleri (Pinto da Silva) Amich, Bernardos & Garcia-Barriuso is a restricted and threatened endemic plant that…
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Highly Cited
2010
Highly Cited
2010
The Skp1-like protein SSK1 is required for cross-pollen compatibility in S-RNase-based self-incompatibility.
Lan Zhao
,
J. Huang
,
Zhonghua Zhao
,
Qun Li
,
T. L. Sims
,
Yongbiao Xue
The Plant Journal
2010
Corpus ID: 205386088
The self-incompatibility (SI) response occurs widely in flowering plants as a means of preventing self-fertilization. In these…
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2005
2005
Untersuchungen an dem Antirrhinum-Wildsippen-Sortiment von E. Baur
J. Hackbarth
,
P. Michaelis
,
G. Scheller
Zeitschrift für Induktive Abstammungs- und…
2005
Corpus ID: 21564994
Im Verlaufe seiner Untersuchungen am LSwenm/iulehen hat te sich E. BAUR als vordringlichste Aufgabe die Bearbeitung der Frage des…
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Highly Cited
2004
Highly Cited
2004
Characterization of Antirrhinum Petal Development and Identification of Target Genes of the Class B MADS Box Gene DEFICIENSw⃞
M. Bey
,
K. Stüber
,
+4 authors
S. Zachgo
The Plant Cell Online
2004
Corpus ID: 11088463
The class B MADS box transcription factors DEFICIENS (DEF) and GLOBOSA (GLO) of Antirrhinum majus together control the…
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2004
2004
Position effect of the excision frequency of the Antirrhinum transposon Tam3: implications for the degree of position-dependent methylation in the ends of the element
K. Kitamura
,
S. Hashida
,
T. Mikami
,
Y. Kishima
Plant Molecular Biology
2004
Corpus ID: 32282544
We identified eight independent Tam3 copies residing in the same Antirrhinum majus genome. All the copies showed excision at 15…
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2004
2004
Studien an Mutablen Genen
F. Mechelke
,
H. Stubbe
Zeitschrift für Induktive Abstammungs- und…
2004
Corpus ID: 28025365
I. Einleitung. Die Mutante gramini/olia von Antirrhinum majus wurde erstmalig in Kulturen yon E. BACR (1918) gefunden, und zwar…
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1961
1961
Somatic flower-color variations and morphological changes induced by C-14 in the snapdragon, Antirrhinum maju.
N. Williams
,
N. Scully
Genetics
1961
Corpus ID: 19796202
The genetic and morphological effects of radiocarbon when incorporated into plants of the common snapdragon were investigated…
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1936
1936
Erbliche, durch Radiumbestrahlung erzeugte Zell- und Gewebe-Entartung beim Löwenmaul (Antirrhinum majus)
E. Stein
Die Naturwissenschaften
1936
Corpus ID: 40548507
Erbliche, durch Radiumbestrahlung erzeugte Zellund Gewebe-Entartung beirn L6wenmaul (Antirrhinum majus). Von EMMY STEIN, ]3erlin…
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1933
1933
Artumgrenzung und Artbildung in der GattungAntirrhinum, SektionAntirrhinastrum
E. Baur
Zeitschrift für Induktive Abstammungs- und…
1933
Corpus ID: 42729148
Die Gattung Antirrhinum zerfallt in drei Sektionen: Antirrhinastrum, Asarina und Orontium. Diese drei Sektionen sind…
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