Advances in Two-Line Heterosis Breeding in Rice via the Temperature-Sensitive Genetic Male Sterility System

Author:

Ali Jauhar,Dela Paz Madonna,Robiso Christian John

Abstract

AbstractHybrid rice technology is a viable strategy to increase rice production and productivity, especially in countries with limited cultivable land for agriculture and irrigation water, along with costlier chemical inputs. The three-line hybrid rice technology adoption rate is slowing down because of restricted heterosis per se, the availability of better combining ability in cytoplasmic male sterile lines, lower hybrid seed reproducibility, and limited market acceptability of hybrids. Two-line heterosis breeding could overcome these shortcomings. However, the wide-scale adoption and use of two-line hybrid rice technology are possible through systematic research and breeding efforts to develop temperature-sensitive genetic male sterile (TGMS) lines with low (<24 °C) critical sterility temperature point, which is discussed in this chapter. Research on the genetics, breeding, grain quality, and resistance to insect pests and diseases for TGMS line development and physiological characterization is also discussed. In addition, the identification and validation of natural sites for TGMS self-seed multiplication and hybrid rice seed production through GIS mapping and climatic data analytical tools are also tackled. The development of high-yielding two-line rice hybrids and improvement in hybrid rice seed reproducibility could help in their wide-scale adoption.

Funder

Bill and Melinda Gates Foundation

Publisher

Springer International Publishing

Reference120 articles.

1. Abeysekera SW, Abeysiriwardana DS, Dehideniyz E (2003) Characteristics associated with out-crossing rate of cytoplasmic male sterile (CMS) lines in rice under local conditions. Ann Sri Lanka Dept Agric 5:1–6

2. Ali J (1993) Studies on temperature sensitive genic male sterility and chemical induced sterility towards development of two line hybrids in rice (Oryza sativa L.). Dissertation, Indian Agricultural Research Institute, New Delhi, India

3. Ali J, Siddiq E (1999) Isolation and characterization of a reverse temperature sensitive genic male sterile mutant in rice. Indian J Genet 59(4):423–428

4. Ali J, Siddiq E, Zaman FU, Abraham MJ, Ahmed IM (1995) Identification and characterization of temperature sensitive genic male sterile sources in rice (Oryza sativa L.). Indian J Genet 55(3):243–259

5. Ali J, Dela Paz M, Marfori CM, Nicolas KL (2018) Environment sensitive genic male sterility (EGMS) based hybrid breeding in rice. In: Rao PV, Muralidharan K, Siddiq EA (eds) Modern breeding strategies for crop improvement. Proceedings of one-day dialogue on 10 July 2017, Professor Jayashankar Telangana State Agricultural University (PJTSAU), Rajendranagar, Hyderabad, India, p 250

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1. Conventional and new breeding approaches to enhance grain yield in rice;Oryza-An International Journal on Rice;2023-02-07

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