共 37 条
[1]
Adriana G.K., Mercau J.L., Slafer G.A., Sadras V.O., Simulated yield advantages of extending post flowering development at the expense of a shorter pre flowering development in soybean, Field Crops Research, 101, pp. 321-330, (2007)
[2]
Ali M., Gupta S., Basu P.S., Higher levels of warming in North India will affect crop productivity, Hindu Survey of Indian Agriculture, pp. 44-48, (2009)
[3]
Bhatia V.S., Jumrani K., A maximin-minimax approach for classifying soybean genotypes for drought tolerance based on yield potential and loss, Plant Breeding, 136, pp. 691-700, (2016)
[4]
Bhatia V.S., Jumrani K., Pandey G.P., Developing drought tolerance in soybean using physiological approaches, Soybean Research, 12, pp. 1-19, (2014)
[5]
Bhatia V.S., Jumrani K., Pandey G.P., Evaluation of the usefulness of senescing agent potassium iodide as a screening tool for tolerance to terminal drought in soybean, Plant Knowledge Journal, 3, pp. 23-30, (2014)
[6]
Bhatia V.S., Singh P., Wani S.P., Chauhan G.S., Kesava Rao A.V.R., Mishra A.K., Srinivas K., Analysis of potential yields and yield gaps of rain fed soybean in India using CROPGRO-Soybean model, Agriculture and Forest Meteorology, 148, pp. 1252-1265, (2008)
[7]
Boyer J.S., Westgate M.E., Grain yield with limited water, Journal of Experimental Botany, 55, pp. 2385-2394, (2004)
[8]
Cross R.H., McKay S.A.B., Mc Hughen A.G., Bonham-Smith P.C., Heat stress effects on reproduction and seed set in Linum usitatissimum L. (flax), Plant, Cell and Environment, 26, pp. 1013-1020, (2003)
[9]
Djanaguiraman M., Prasad P.V.V., Boyle D.L., Schapaugh W.T., Soybean pollen anatomy, viability and pod set under high temperature stress, Journal of Agronomy and Crop Science, 199, pp. 171-177, (2013)
[10]
Djanaguiraman M., Prasad P.V.V., Schapaugh W.T., High day or nighttime temperature alters leaf assimilation, reproductive success, and phosphatidic acid of pollen grain in soybean (Glycine max (L.) Merr.), Crop Science, 53, pp. 1594-1604, (2013)