Barley Inflorescence Architecture
Author:
Publisher
Springer International Publishing
Link
http://link.springer.com/content/pdf/10.1007/978-3-319-92528-8_12
Reference249 articles.
1. Abebe T, Wise RP, Skadsen RW (2009) Comparative transcriptional profiling established the awn as the major photosynthetic organ of the barley spike while the lemma and the palea primarily protect the seed. Plant Genome 2:247–259
2. Åberg E, Wiebe G (1945) Ash content of barley awns and kernels as influenced by location, season and variety. J Agron 37:583–586
3. Aharoni A, Dixit S, Jetter R, Thoenes E, van Arkel G et al (2004) The SHINE clade of AP2 domain transcription factors activates wax biosynthesis, alters cuticle properties, and confers drought tolerance when overexpressed in arabidopsis. Plant Cell 16:2463–2480
4. Alqudah AM, Schnurbusch T (2014) Awn primordium to tipping is the most decisive developmental phase for spikelet survival in barley. Funct Plant Biol 41:424–436
5. Alqudah AM, Sharma R, Pasam RK, Graner A, Kilian B et al (2014) Genetic dissection of photoperiod response based on GWAS of pre-anthesis phase duration in spring barley. PLoS ONE 9:e113120
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