References
Atkins IM, Norris MJ (1955
)
The influence of awns on yield and certain morphological characters of wheat.
Agronomy Journal
47, 218–220.
|
CrossRef |
Blum A (1985
)
Photosynthesis and transpiration in leaves and ears of wheat and barley varieties.
Journal of Experimental Botany
36, 432–440.
|
CrossRef |
Bonnett GD, Incoll LD (1992
)
The potential pre-anthesis and post-anthesis contribution of stem internodes to grain yields in crops of winter barley.
Annals of Botany
69, 219–225.
Bort J, Feberro A, Amaro T, Araus JL (1994
)
Role of awns in ear water use efficiency and grain weight in barley.
Agronomie
14, 133–139.
|
CrossRef |
Bort J, Brown RH, Araus JL (1996
)
Refixation of respiratory CO
2 in the ears of C
3 cereals.
Journal of Experimental Botany
47, 1567–1575.
|
CrossRef |
CAS |
Hay RKM, Walker AJ (1989) ‘Dry matter partitioning. An introduction to the physiology of crop yield.’ pp. 107-156. (Harlow and Longman Scientific & Technical: Harlow, England)
Isermann K (1978
)
Possible role of awns in transpiration and translocation of
14C-L-alanine in barley haulms.
Naturwissenschaften
65, 596–597.
|
CrossRef |
CAS |
Johnson RR, Frey NM, Moss DN (1974
)
Effect of water stress on photosynthesis and transpiration of flag leaves and spikes of barley and wheat.
Crop Science
14, 728–731.
|
CrossRef |
Johnson RR, Willmer CM, Moss DN (1975
)
Role of awns in photosynthesis, respiration, and transpiration of barley spikes.
Crop Science
15, 217–221.
|
CrossRef |
Kjack JL, Witters RE (1974
)
Physiological activity of awns in isolines of Atlas barley.
Crop Science
14, 243–248.
Kramer T, Didden FAM (1981
)
The influence of awns on grain yield and kernel weight in spring wheat (
Triticum aestivum).
Cereal Research Communications
9, 25–30.
Li X, Wang H, Li H, Zhang L, Teng N, Lin Q, Wang J, Kaung T, Li Z, Li B, Zhang A, Lin J (2006
)
Awns play a dominant role in carbohydrate production during the grain-filling stages in wheat (
Triticum aestivum).
Physiologia Plantarum
127, 701–709.
|
CrossRef |
CAS |
Lösch R, Jensen CR, Andersen MN (1992
)
Diurnal courses and factorial dependencies of leaf conductance and transpiration of differently potassium fertilized and watered field grown barley plants.
Plant and Soil
140, 205–224.
|
CrossRef |
Maddah Hosseini S, Poustini K (1998
)
Effect of source strength reduction on remobilization of stem water soluble carbohydrates in three six-rowed barley cultivars.
Iranian Journal of Agricultural Sciences
18, 29–38.
Maddah Hosseini S, Poustini K, Ahmadi A (2008
)
Effect of foliar application of BAP on source and sink strength in four six-rowed barley cultivars (
Hordeum vulgare L.).
Plant Growth Regulation
54, 231–239.
|
CrossRef |
CAS |
Martinez DE, Luquez VM, Bartoli CG, Guiamet JJ (2003
)
Persistence of photosynthetic components and photochemical efficiency in ears of water-stressed wheat (
Triticum aestivum).
Physiologia Plantarum
119, 519–525.
|
CrossRef |
CAS |
McKenzie H (1972
)
Adverse influence of awns on yield of wheat.
Canadian Journal of Plant Science
52, 81–87.
|
CrossRef |
Michael G, Seiler-Kelbitsch H (1972
)
Cytokinins content and kernel size of barley grain as affected by environment and genetic factors.
Crop Science
12, 162–165.
|
CrossRef |
Motzo R, Giunta F (2002
)
Awnedness affects grain yield and kernel weight in near-isogenic lines of durum wheat.
Australian Journal of Agricultural Research
53, 1285–1293.
|
CrossRef |
Northcote KH, Hubble GD, Isbell RF, Thompson CH, Bettenay E (1975) ‘A description of Australian soils.’ (CSIRO and Melbourne University Press: Melbourne)
Palta JA, Kobata T, Fillery IR, Turner NC (1994
)
Remobilisation of carbon and nitrogen in wheat as influenced by post-anthesis water deficits.
Crop Science
34, 118–124.
|
CrossRef |
Pons TL, Jordi W, Kupier D (2001
)
Acclimation of plants to light gradients in leaf canopies: evidence for a possible role of cytokinins transported in the transpiration stream.
Journal of Experimental Botany
52, 1563–1574.
|
CrossRef |
CAS |
Richards RA (1989) Breeding for drought resistance-physiological approaches. In ‘Drought resistance in cereals’. (Ed. FWG Baker) pp. 54–65. (CAB International: Wallingford, UK)
Schnyder H (1993
)
The role of carbohydrate storage and redistribution in the source–sink relations of wheat and barley during grain filling – a review.
New Phytologist
123, 233–245.
|
CrossRef |
Singal HR, Sheoran IS, Singh R (1986
)
In vitro enzyme activities and products of
14CO
2 assimilation in flag leaf and ear parts of wheat (
Triticum aestivum L.).
Photosynthesis Research
8, 113–122.
|
CrossRef |
CAS |
Weyhrich RA, Carver BF, Smith EL (1994
)
Effects of awns suppression on grain yield and agronomic traits in hard red winter wheat.
Crop Science
34, 965–969.
|
CrossRef |
Yang J, Zhang J, Wang Z, Zhu Q, Lijun L (2002
a)
Abscisic acid and cytokinins in the root exudates and leaves and their relationship to senescence and remobilization of carbon reserves in rice subjected to water stress during grain filling.
Planta
215, 645–652.
|
CrossRef |
CAS |
Yang J, Zhang J, Wang Z, Zhu Q, Lijun L (2002
b)
Correlation of cytokinin levels in the endosperms and roots with cell number and cell division activity during endosperm development in rice.
Annals of Botany
90, 369–377.
|
CrossRef |
CAS |
Zadoks IC, Chang TT, Konzak CF (1974
)
A decimal code for the growth stages of cereals.
Weed Research
14, 415–421.
|
CrossRef |
Ziegler-Jöns A (1989
)
Gas exchange of ears of cereals in response to CO
2 and light. I. Relative contribution of parts of ears of wheat, oat and barley to the gas exchange of the whole organ.
Planta
178, 84–91.