Genetic gain for rice yield in rainfed environments in India.

Drought Genetic gain Rice Yield potential

Journal

Field crops research
ISSN: 0378-4290
Titre abrégé: Field Crops Res
Pays: Netherlands
ID NLM: 101147219

Informations de publication

Date de publication:
01 Jan 2021
Historique:
entrez: 4 1 2021
pubmed: 5 1 2021
medline: 5 1 2021
Statut: ppublish

Résumé

The complexity of genotype × environment interactions under drought reduces heritability, which determines the effectiveness of selection for drought tolerance and development of drought tolerant varieties. Genetic progress measured through changes in yield performance over time is important in determining the efficiency of breeding programmes in which test cultivars are replaced each year on the assumption that the new cultivars will surpass the older cultivars. The goal of our study was to determine the annual rate of genetic gain for rice grain yield in a drought-prone rainfed system in a series of multi-environment trials conducted from 2005 to 2014 under the Drought Breeding Network of Indian sites in collaboration with the International Rice Research Institute (IRRI). Our results show a positive trend in grain yield with an annual genetic yield increase of about 0.68 % under irrigated control, 0.87 % under moderate reproductive stage drought stress and 1.9 % under severe reproductive stage drought stress due to breeding efforts. The study also demonstrates the effectiveness of direct selection for grain yield under both irrigated control as well as managed drought stress screening to improve yield in typical rainfed systems. IRRI's drought breeding programme has exhibited a significant positive trend in genetic gain for grain yield over the years under both drought stress as well as favorable irrigated control conditions. Several drought tolerant varieties released from the programme have outperformed the currently grown varieties under varied conditions in the rainfed environments on farmers' fields.

Identifiants

pubmed: 33390645
doi: 10.1016/j.fcr.2020.107977
pii: S0378-4290(20)31261-2
pmc: PMC7722510
doi:

Types de publication

Journal Article

Langues

eng

Pagination

107977

Informations de copyright

© 2020 The Authors.

Déclaration de conflit d'intérêts

The authors declare that they have no known competing financial interests or personal relationships that could have appeared to influence the work reported in this paper.

Références

Theor Appl Genet. 2011 Jan;122(1):225-38
pubmed: 20835813
Rice (N Y). 2018 Apr 9;11(1):18
pubmed: 29629479
Theor Appl Genet. 2017 Jan;130(1):223-245
pubmed: 27796431
Theor Appl Genet. 2014 Dec;127(12):2599-617
pubmed: 25307935
Sci Rep. 2018 Jun 18;8(1):9245
pubmed: 29915310
J Exp Bot. 2014 Nov;65(21):6265-78
pubmed: 25205576
J Exp Bot. 2014 Nov;65(21):6191-204
pubmed: 24596174
Genetics. 2004 Aug;167(4):1529-36
pubmed: 15342495
Plant Soil. 2017;417(1):377-392
pubmed: 31258196
Rice (N Y). 2012 Dec;5(1):31
pubmed: 27234249
Water Resour Econ. 2019 Jan;25:27-41
pubmed: 31608207
Theor Appl Genet. 2014 May;127(5):1009-18
pubmed: 24553961
J Exp Bot. 2017 May 17;68(11):2641-2666
pubmed: 28830098

Auteurs

Arvind Kumar (A)

International Rice Research Institute (IRRI), DAPO Box 7777, Metro Manila, Philippines.
IRRI South Asia Regional Center (ISARC), Varanasi, India.

Anitha Raman (A)

International Rice Research Institute (IRRI), DAPO Box 7777, Metro Manila, Philippines.

Shailesh Yadav (S)

International Rice Research Institute (IRRI), DAPO Box 7777, Metro Manila, Philippines.

S B Verulkar (SB)

Indira Gandhi Krishi Vishwavidyalaya (IGKV), Raipur, India.

N P Mandal (NP)

Central Rainfed Upland Rice Research Station (CRURRS), ICAR-NRRI, Hazaribagh, India.

O N Singh (ON)

National Rice Research Institute (NRRI), Cuttack, India.

P Swain (P)

National Rice Research Institute (NRRI), Cuttack, India.

T Ram (T)

National Rice Research Institute (NRRI), Cuttack, India.

Jyothi Badri (J)

Indian Institute of Rice Research (IIRR), Hyderabad, India.

J L Dwivedi (JL)

Narendra Dev University of Agriculture and Technology (NDUAT), Ayodhya, India.

S P Das (SP)

ICAR Research Complex for NEH Region, Tripura Centre, Lembucherra, India.

S K Singh (SK)

Banaras Hindu University (BHU), Varanasi, India.

S P Singh (SP)

Bihar Agricultural University (BAU), Sabour, India.

Santosh Kumar (S)

ICAR-Research Complex for Eastern Region, Patna, India.

Abhinav Jain (A)

International Rice Research Institute (IRRI), DAPO Box 7777, Metro Manila, Philippines.
Barwale Foundation, Hyderabad, India.

R Chandrababu (R)

Tamil Nadu Agricultural University (TNAU), Coimbatore, India.

S Robin (S)

Tamil Nadu Agricultural University (TNAU), Coimbatore, India.

H E Shashidhar (HE)

University of Agricultural Sciences (UAS), Bangalore, India.

S Hittalmani (S)

University of Agricultural Sciences (UAS), Bangalore, India.

P Satyanarayana (P)

Regional Rice Research Station, Maruteru, Acharya NG Ranga Agricultural University, (ANGRAU), Guntur, India.

Challa Venkateshwarlu (C)

International Rice Research Institute, South Asia Hub, ICRISAT, Patancheru, Hyderabad, India.

Janaki Ramayya (J)

International Rice Research Institute, South Asia Hub, ICRISAT, Patancheru, Hyderabad, India.

Shilpa Naik (S)

International Rice Research Institute, South Asia Hub, ICRISAT, Patancheru, Hyderabad, India.

Swati Nayak (S)

International Rice Research Institute (IRRI), New Delhi, India.

Manzoor H Dar (MH)

International Rice Research Institute (IRRI), New Delhi, India.

S M Hossain (SM)

International Rice Research Institute (IRRI), Bhubaneshwar, India.

Amelia Henry (A)

International Rice Research Institute (IRRI), DAPO Box 7777, Metro Manila, Philippines.

H P Piepho (HP)

Universitaet Hohenheim, Biostatistics Unit, 70593, Stuttgart, Germany.

Classifications MeSH