Agriculture Reference
In-Depth Information
Jones HG (1992) Plants and microclimate. In: A Quantitative Approach to Environmental Plant
Physiology. 2nd ed. Cambridge University Press, London, 46-77
Josa R, Hereter A (2005) Effects of tillage systems in dryland farming on near surface water con-
tent during late winter period. Soil Till Res 82:173-183
Justine SHFW, Armstrong W (1987) The anatomical characteristics of roots and plant response to
soil flooding. New Phytol 106:465-495
Kajala K, Covshoff S, Karki S (2011) Strategies for engineering a two-celled C4 photosynthetic
pathway into rice. Journal of Experimental Botany 62:3001-3010
Kalra N, Aggarwal PK (1996) Evaluating the growth response for wheat under varying INPUTS
and changing climate options using wheat growth simulator—WTGROWS. Climate Variabil-
ity and Agriculture. Narosa Publishing House, New Delhi. 320-338
Keppler F, Hamilton JTG, Brass M, Rockmann T (2006) Methane emissions from terrestrial plants
under aerobic conditions. Nature 439:187-191
Kesheng S, Zhen L (1997) Effect of rice cultivars and fertilizer management on methane emission
in a rice paddy in Beijing. Nutrient Cycling Agroecosyst 49:139-146
Kirk GJD, Van DL (1997) Changes in rice root architecture, porosity, and oxygen and proton re-
lease under phosphorus deficiency. New Phytol 135:191-200
Kludze HK, DeLaune RD, Patrick Jr. WH (1993) Aerenchyma formation and methane and oxygen
exchange in rice. Soil Sci Soc Am J 57:382-385
Kroeze C, Aerts, Breemen N, Dam D, Hoek K, Hofschreuder P, Hoosbeek M, Klein J, Kros H,
Oene H, Oenema O, Tietema A, Veeren R, Vries W (2003) Uncertainties in the fate of nitrogen
I: an overview of sources of uncertainty illustrated with a Dutch case study. Nutrient Cycling
in Agroecosystem 66:43-69
Kudo Y, Nakajima T, Miyaki T, Oyaizu H (1997) Methanogen flora of paddy soils in Japan. FEMS
Microbiol Ecol 22:39-48
Kumar U, Jain MC, Pathak H, Kumar S, Majumdar D (2000) Nitrous, oxide emissions from dif-
ferent fertilizers and its mitigation by nitrification inhibitors in irrigated rice. Biol Fertil Soils
32:474-478
Lakshmanan A, Geetalakshhmi V, Nogother US (2009) Facultative methylotrophs: An ecofriendly
biofertilizer for growth promotion & methane oxidation in rice field. Clima Rice Technical
Brief 3:1-4
Lal R (2004) Carbon emission from farm opérations. Environment International 30:981-990
Lal R (2006) Enhancing crop yields in the developing countries through restoration of the soil
organic carbon pool in agricultural lands. Land Degr Devel 17:197-209
Lal R (2010) Beyond Copenhagen: mitigating climate change and achieving food security through
soil carbon sequestration. Food Sec 2:169-177
Lal R (2011) Sequestering carbon in soils of agro-ecosystems. Food Policy 36:S33 S39
Li C, Frolking S, Frolking TA (1992) A model of nitrous oxide evolution from soil driven by rain-
fall events: 1. Model structure and sensitivity. J of Geophy Res 97:9759-9776
Li C, Frolking S, Butterbach-Bahl K (2005a) Carbon sequestration in arable soils is likely to
increase nitrous oxide emissions, offsetting reductions in climate radiative forcing. Climatic
Change 72:321-338
Li C, Frolking S, Xiao X, Moore III B, Boles S, Qiu J, Huang Y, Salas W, Sass R (2005b) Modeling
impacts of farming management alternatives on CO 2 , CH 4 , and N 2 O emissions: A case study
for water management of rice agriculture of China. Global Biogeochemical Cycles 19
Li X, Zhang X, Xu H, Cai Z, Yagi K (2009) Methane and nitrous oxide emissions from rice paddy
soil as influenced by timing of application of hydroquinone and dicyandiamide. Nutrient Cy-
cling in Agroecosyst 85:31-40
Lipton DS, Blanchar RW, Blevins DG (1987) Citrate, malate, and succinate concentration in exu-
dates from P-sufficient and P-stressed Medicago sativa seedlings. Plant Physiol 85:315-317
Lu Y, Wassmann R, Neue HU, Huang C (1999) Impact of phosphorus supply on root exudation,
aerenchyma formation and methane emission of rice plants. Biogeochemistry 47:203-218
Lueders T, Friedrich MW (2002) Effects of amendment with ferrihydrite and gypsum on the
structure and activity of methanogenic populations in rice field soil. Appl Environ Microbiol
68:2484-2494
Search WWH ::




Custom Search