Assessment of early maturity based on per cent reduction in yield by advancing date of harvest in groundnut (Arachis hypogaea L.)


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EARLY MATURITY IN GROUNDNUT

Authors

  • CHUNI LAL Directorate of Groundnut Research, P.B. No. 5, Junagadh-362 001, Gujarat
  • K HARIPRASANNA Directorate of Groundnut Research, P.B. No. 5, Junagadh-362 001, Gujarat

https://doi.org/10.56739/jor.v30i1.142728

Keywords:

Groundnut, Early harvesting, Early maturity, Yield reduction

Abstract

Breeding of short duration groundnut (Arachis hypogaea L.) varieties with enhanced productivity is a priority area in the semi-arid tropical regions to evade the end-season moisture deficit stress and for summer cultivation where the harvesting of groundnut coincides with the on-set of monsoon. Eighteen advanced breeding lines were evaluated during rainy and summer seasons for productive capacity and earliness in maturity by estimating the relative reduction in yield and associated traits due to advanced harvesting by 10 or 20 days over normal harvest. During rainy season the test genotypes were also compared with two popular varietiesJL 24 and HNG 10 as checks. Harvesting the genotypes 20 days ahead of normal harvest lead to considerable loss in pod and kernel yield, the reduction being larger in summer. When harvesting was advanced by 10 days the relative yield reduction was considerably lower in some of the genotypes (1-4% pod and 3-4% kernel yield reduction during rainy season), and six genotypes recorded superior yield coupled with earliness in comparison to the best check. The genotypes PBS 11029, PBS 21031, PBS 30076, PBS 11066, PBS 15004 and PBS 28008 were found early in maturity during rainy season and PBS 21031 during summer asthey registered negligible lossin yield when harvesting was advanced. The proposed concept of least reduction in yield and its component traits when harvested early coupled with high productivity may be used as a field technique forscreening large number of advanced breeding linesto identify early and high productive genotypes.

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References

Bagnall D J and King R W 1991. Response of peanut (Arachis hypogaea L.) to temperature, photoperiod and irradiance. 2. Effect on peg and pod development. Field Crops Research, 26:279-293. DOI: https://doi.org/10.1016/0378-4290(91)90005-G

Chuni Lal, Hariprasanna K, Rathnakumar A L and Samdur M Y 2006. High yielding water-use efficient Spanish groundnut genotypes for rainfed production system. Indian Journal of Agricultural Sciences, 76(3):148-150.

Cofflet T A, Wynne J C and Monteverde-Penso E J 1993. Genotype × environment interaction effects on cultivar development. Oleagineux, 48: 133-137.

Danesha S C, David L J, Barbara B S, Turner B S, Dharmasri L C and Brandenburg R L 2009. Influence of digging date and fungicide program on canopy defoliation and pod yield of peanut (Arachis hypogaea L.). Peanut Science, 36:77-84. DOI: https://doi.org/10.3146/PS07-011.1

Gorbet D W, Knauft D A and Norden A J 1992. Registration of 'Marc I' peanut. Crop Science, 32:279. DOI: https://doi.org/10.2135/cropsci1992.0011183X003200010059x

Holbrook C C, Kvein C S and Branch W D 1989. Genetic control of peanut maturity as measured by hull-scrap method. Oleagineux, 44:359-364.

Khalfaoui J L 1990. Herpdite de la precocite extreme dans le cas d'un croisement entre deux varietes d' arachide Spanish. Oleagineux, 45:419-436.

Kvein C K and Ozias-Akins P 1991. Lack of monocarpic senescence in 'Florunner' peanut. Peanut Science, 18:86-90. DOI: https://doi.org/10.3146/i0095-3679-18-2-6

Mouli C and Kale D M 1989. Earlymaturing mutantsin groundnut cultivar 'Phule- Pragati (JL 24)'. Current Science, 58:690-692.

Nigam S N, Dwivedi S L, Nagbhushanam G V S and Gibbons R W 1988. Inheritance of period from seedling emergence to first

flowering in peanut (Arachis hypogaea L.). Journal of Oilseeds Research, 5:101-106.

Norden A J, Gorbet D W, Knauft D A and Martin F G 1986. Genotype × environment interactions in peanut multi-line populations. Crop Science, 26:46-48. DOI: https://doi.org/10.2135/cropsci1986.0011183X002600010010x

Reddy P S 1986. Genetics, Breeding and Varieties. In: Reddy P S (Ed.) Groundnut. Indian Council of Agricultural Research, New Delhi, India, pp. 200-317.

Vasudeva Rao M J, Nigam S N and Huda A K S 1992. The thermal time concept as a criterion for earliness in peanut. Peanut Science, 19:7-10. DOI: https://doi.org/10.3146/i0095-3679-19-1-2

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Submitted

2023-09-21

Published

2013-07-24

How to Cite

CHUNI LAL, & K HARIPRASANNA. (2013). Assessment of early maturity based on per cent reduction in yield by advancing date of harvest in groundnut (Arachis hypogaea L.): EARLY MATURITY IN GROUNDNUT. Journal of Oilseeds Research, 30(1). https://doi.org/10.56739/jor.v30i1.142728