Barthod S, Epron D. 2005. Variations of construction cost associated to leaf area renewal in saplings of two co-occurring temperate tree species (Acer platanoides L. and Fraxinus excelsior L.) along a light gradient. Ann For Sci, 62: 545–551. Baruch Z, Goldstein G. 1999. Leaf construction cost, nutrient concentration, and net CO2 assimilation of native and invasive species in Hawaii. Oecologia, 121: 183–192.Begum M, Juraimi A S, Amartalingam R, Man A B, Rastan S O B S. 2006. The effects of sowing depth and ?ooding on the emergence, survival, and growth of Fimbristylis miliaceae (L.) Vahl. Weed Biol Manag, 6: 157–164.Breda J J N. 2003. Ground-based measurements of leaf area index: A review of methods, instruments and current controversies. J Exp Bot, 54: 243–247. Chapin F S. 1989. The cost of tundra plant structures: Evaluation of concepts and currencies. Am Nat, 133: 1–19.Davis M A, Grime J P, Thompson K. 2000. Fluctuating resources in plant communities: A general theory of invasibility. J Ecol, 88: 528–534.Eamus D, Prichard H. 1998. A cost-benefit analysis of leaves of four Australian savanna species. Tree Physiol, 18: 537–545.Feng Y, Fu G, Zheng Y. 2008. Specific leaf area relates to the differences in leaf construction cost, photosynthesis, nitrogen allocation, and use efficiencies between invasive and noninvasive alien congeners. Planta, 228: 383–390. Galon L, Agostinetto D. 2009. Comparison of empirical models for predicting yield loss of irrigated rice (Oryza sativa) mixed with Echinochloa spp. Crop Prot, 28: 825–830.Grif?n K L, Thomas R B, Strain B R. 1993. Effects of nitrogen supply and elevated carbon dioxide on construction cost in leaves of Pinus taeda (L.) seedlings. Oecologia, 95: 575–580. Grif?n K L. 1994. Calorimetric estimates of construction cost and their use in ecological studies. Funct Ecol, 8: 551–562.Grotkopp E, Rejmanek M. 2007. High seedling relative growth rate and speci?c leaf area are traits of invasive species: Phylogenetically independent contrasts of woody angiosperms. Am J Bot, 94: 526–532.Holm L G, Plucknett D L, Pancho J V, Herberger J P. 1991. The World’s Worst Weeds: Distribution and Biology. Florida: The University Press of Hawaii.Jackson M L. 1958. Soil Chemical Analysis. New Jersey: Prentice Hall Inc: 498.Kumar V, Bellinder R R, Brainard D C, Malik R K, Gupta R K. 2008. Risks of herbicide-resistant rice in India: A review. Crop Prot, 27: 320–329.Lambers H, Poorter H. 1992. Inherent variation in growth rate between higher plants: A search for physiological causes and ecological consequences. Adv Ecol Res, 23: 188–261.Mcbrayer J F, Cromack Jr K. 1980. Effect of snowpack on oak-litter breakdown and nutrient release in a Minnesota forest. Pedobiologia, 20: 47–54.Nagel J M, Griffin K G. 2001. Construction cost and invasive potential: Comparing Lythrum salicaria (Lythraceae) with co-occurring native species along pond banks. Am J Bot, 88: 2252–2258.Nagel J M, Huxman T E, Griffin K L, Smith S D. 2004. CO2 enrichment reduces the energetic cost of biomass construction in an invasive desert grass. Ecology, 85: 100–106.Nagel J M, Wang X, Lewis J D, Howard A, Fung H A, Tissue D T, Grif?n K L. 2005. Atmospheric CO2 enrichment alters energy assimilation, investment and allocation in Xanthium strumarium. New Phytol, 166: 513–523.Osunkoya O O, Bayliss D, Panetta F D, Vivian-Smith G. 2010. Leaf trait co-ordination in relation to construction cost, carbon gain and resource-use efficiency in exotic invasive and native woody vine species. Ann Bot, 106: 371–380.Pons T L, Westbeek M H M. 2004. Analysis of differences in photosynthetic nitrogen-use efficiency between four contrasting species. Physiol Plant, 122: 68–78.Poorter H. 1994. Construction cost and payback time of biomass: A whole plant perspective. In: Roy J, Garnier E. A Whole-Plant Perspective on Carbon-Nitrogen Interactions. The Hague: SPB Academic Physiology: 111–127.Poorter H, Bergkotte M. 1992. Chemical composition of 24 wild species differing in relative growth rate. Plant Cell Environ, 15: 221–229.Poorter H, Villar R. 1997. The fate of acquired carbon in plants: Chemical composition and construction costs. In: Bazzaz F, Grace J. Plant Resource Allocation. CA, San Diego USA: Academic Press: 39–72.P'yankov V I, Ivanov L A, Lambers H. 2011. Plant construction cost in the boreal species differing in their ecological strategies. Russ J Plant Physiol, 48: 67–73.Rao A N, Johnson D E, Sivaprasad B, Ladha J K, Mortimer A M. 2007. Weed management in direct-seeded rice. Adv Agron, 93: 153–255.Reich P B, Walters M B, Ellsworth D S. 1997. From tropics to tundra: Global convergence in plant functioning. Proc Natl Acad Sci USA, 94: 13730–13734.Schieving F, Poorter H. 1999. Carbon gain in a multispecies canopy: The role of speci?c leaf area and photosynthetic nitrogen-use efficiency in the tragedy of the commons. New Phytol, 143: 201–211.Shipley B. 2006. Net assimilation rate, speci?c leaf area and leaf mass ratio: Which is most closely correlated with relative growth rate? A meta-analysis. Funct Ecol, 20: 565–574.Singh A, Sharma G P, Raghubanshi A S. 2008. Dynamics of the functional groups in the weed flora of dryland and irrigated agroecosystems in the Gangetic plains of India. Weed Biol Manag, 8: 250–259.Singh S, Ladha J K, Gupta R K, Bhushana L, Rao A N. 2008. Weed management in aerobic rice systems under varying establishment methods. Crop Prot, 27: 660–671.Singh V, Singh H, Sharma G P, Raghubanshi A S. 2011. Eco-physiological performance of two invasive weed congeners (Ageratum conyzoides L. and Ageratum houstonianum Mill.) in the Indo-Gangetic plains of India. Environ Monit Assess, 178: 415–422.Song L, Ni G Y, Chen B M, Peng S L. 2007. Energetic cost of leaf construction in the invasive weed Mikania micrantha H.B.K. and its co-occurring species: Implications for invasiveness. Bot Stud, 48: 331–338. Song L Y, Li C H, Peng S L. 2010. Elevated CO2 increases energy-use efficiency of invasive Wedelia trilobata over its indigenous congener. Biol Invasions, 12: 1221–1230.SPSS. 1997. SPSS Base 7.5: Application Guide. Chicago: 389.Subhas C, Jitendra P. 2001. Effect of rice (Oryza sativa) culture, nitrogen and weed control on nitrogen competition between scented rice and weeds. Ind J Agron, 46: 68–74.Tilman D. 1999. The ecological consequences of changes in biodiversity: A search for general principles. Ecology, 80: 1455–1474.Timsina J, Connor D J. 2001. Productivity and management of rice-wheat cropping systems: Issues and challenges. Field Crop Res, 69: 93–132.Varshney J G. 2007. Vision-2025. ICAR Report. New Delhi.Williams K, Percival F, Merino J, Mooney H A. 1987. Estimation of tissue construction cost from heat of combustion and organic nitrogen content. Plant Cell Environ, 10: 725–734.Yaduraju N T. 2006. Herbicide resistant crops in weed management. In: The Extended Summaries, Golden Jubilee National Symposium on Conservation Agriculture and Environment. Varanasi: Banaras Hindu University: 297–298.Zheng Y L, Feng Y L, Liu W X, Liao Z Y. 2009. Growth, biomass allocation, morphology, and photosynthesis of invasive Eupatorium adenophorum and its native congeners grown at four irradiances. Plant Ecol, 203: 263–271.Zhu S D, Cao K F. 2010. Contrasting cost-bene?t strategy between lianas and trees in a tropical seasonal rain forest in southwestern China. Oecologia, 163: 591–599. |