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Plant function and evolutionary biology

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Production and Distribution of Assimilate in Chickpea (Cicer arietinum L.)

BK Singh and RK Pandey
7(6) pp.727 - 735


20 articles found in Crossref database.

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Plant and Soil. 2013 365(1-2). p.347
Gas exchange by pods and subtending leaves and internal recycling of CO2 by pods of chickpea (Cicer arietinum L.) subjected to water deficits
Ma Qifu, Behboudian M.H., Turner Neil C., Palta Jairo A.
Journal of Experimental Botany. 2001 52(354). p.123
Effect of leaf and flower removal on seed yield of lentil [Lens esculenta(L.)]
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The Journal of Agricultural Science. 1983 100(2). p.493
Ontogenic changes in enzymes of carbon metabolism in relation to carbohydrate status in developing mungbean reproductive structures
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Phytochemistry. 2000 53(5). p.539
Photosynthesis: Photoreactions to Plant Productivity (1993)
Singh Randhir
Variation in pod production and abortion among chickpea cultivars under terminal drought
Leport L., Turner Neil C., Davies S.L., Siddique K.H.M.
European Journal of Agronomy. 2006 24(3). p.236
Vegetative and reproductive growth of salt-stressed chickpea are carbon-limited: sucrose infusion at the reproductive stage improves salt tolerance
Khan Hammad A., Siddique Kadambot H.M., Colmer Timothy D.
Journal of Experimental Botany. 2017 68(8). p.2001
Floral Position and Subtending Leaves Influence Crossing Success in Chickpea (Cicer arietinum L.)
Nitesh S. D., Talwade Amar, Gurumurthy S., Shiv Ramakrishnan R., Hazra K. K., Katiyar M.
National Academy Science Letters. 2023 46(2). p.77
Influence of source and sink removal on seed yield of chickpea (Cicer arietinum L.)
Pandey R.K.
Field Crops Research. 1984 8 p.159
Tansley Review No. 27 The control of carbon partitioning in plants
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New Phytologist. 1990 116(3). p.341
Shading, Defoliation and Light Enrichment Effects on Chickpea in Northern Latitudes
Li L., Gan Y. T., Bueckert R., Warkentin T. D.
Journal of Agronomy and Crop Science. 2010 196(3). p.220
Photosynthesis (1989)
Singh Randhir
Gas exchange by pods and subtending leaves and internal recycling of CO 2 by pods of chickpea ( Cicer arietinum L.) subjected to water deficits
Ma Qifu, Behboudian M.H., Turner Neil C., Palta Jairo A.
Journal of Experimental Botany. 2001 52(354). p.123
The effects of developmental stage and source leaf position on integration and sectorial patterns of carbohydrate movement in an annual plant, Perilla frutescens (Lamiaceae)
Preston Katherine A.
American Journal of Botany. 1998 85(12). p.1695
Differences in the Growth and Development of Chickpea Seedling Roots (Cicer arietinum)
Vincent C., Gregory P. J.
Experimental Agriculture. 1986 22(3). p.233
Response of chickpea grown on ando-soil to vesicular-arbuscular mycorrhizal infection in relation to the level of phosphorus application
Hirata Hiroshi, Masunaga Toshihisa, Koiwa Hiromichi
Soil Science and Plant Nutrition. 1988 34(3). p.441
Advances in Agronomy Volume 87 (2005)
Turner Neil C., Davies S.L., Plummer J.A., Siddique K.H.M.
Distribution of 14CO2 during ontogeny of chickpea (Cicer arietinum) grown at two moisture levels
HOODA R.S., SHEORAN I. S., SINGH RANDHIR
Annals of Applied Biology. 1989 114(2). p.367
Photosynthesis is Reduced, and Seeds Fail to Set and Fill at Similar Soil Water Contents in Grass Pea (Lathyrus sativus L.) Subjected to Terminal Drought
Kong H., Palta J. A., Siddique K. H. M., Stefanova K., Xiong Y.‐C., Turner N. C.
Journal of Agronomy and Crop Science. 2015 201(4). p.241
Integrated physiological units in plants
Watson Maxine A.
Trends in Ecology & Evolution. 1986 1(5). p.119

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