Subscribe free to our newsletters via your
. Farming News .




FARM NEWS
Statistical model predicts performance of hybrid rice
by Staff Writers
Riverside CA (SPX) Aug 18, 2014


Shizhong Xu is a professor of genetics at UC Riverside. Image courtesy Xu Lab, UC Riverside.

Genomic prediction, a new field of quantitative genetics, is a statistical approach to predicting the value of an economically important trait in a plant, such as yield or disease resistance. The method works if the trait is heritable, as many traits tend to be, and can be performed early in the life cycle of the plant, helping reduce costs.

Now a research team led by plant geneticists at the University of California, Riverside and Huazhong Agricultural University, China, has used the method to predict the performance of hybrid rice (for example, the yield, growth-rate and disease resistance). The new technology could potentially revolutionize hybrid breeding in agriculture.

The study, published online this week in the Proceedings of the National Academy of Sciences, is a pilot research project on rice. The technology can be easily extended, however, to other crops such as maize.

"Rice and maize are two main crops that depend on hybrid breeding," said Shizhong Xu, a professor of genetics in the UC Riverside Department of Botany and Plant Sciences, who co-led the research project. "If we can identify many high-performance hybrids in these crops and use these hybrids, we can substantially increase grain production to achieve global food security."

Genomic prediction uses genome-wide markers to predict future individuals or species. These markers are genes or DNA sequences with known locations on a chromosome. Genomic prediction differs from traditional predictions in that it skips the marker-detection step. The method simply uses all markers of the entire genome to predict a trait.

"Classical marker-assisted selection only uses markers that have large effects on the trait," Xu explained. "It ignores all markers with small effects. But many economically important traits are controlled by a large number of genes with small effects. Because the genomic prediction model captures all these small-effect genes, predictability is vastly improved."

Without genomic prediction, breeders must grow all possible crosses in the field to select the best cross (hybrid). For example, for 1000 inbred parents, the total number of crosses would be 499500.

"It is impossible to grow these many crosses in the field," Xu said. "However, with the genomic prediction technology, we can grow only, say, 500 crosses, then predict all the 499500 potential crosses, and select the best crosses based on the predicted values of these hybrids."

Xu noted that genomic prediction is particularly useful for predicting hybrids because hybrid DNA sequences are determined by their inbred parents.

"More cost-saving can be achieved because we do not need to measure the DNA sequences of the hybrids," he said. "Knowing the genotypes of the parents makes it possible to immediately know the genotype of the hybrid. Indeed, there is no need to measure the genotype of the hybrid. It is fully predicted by the model."

When the researchers incorporated "dominance" and "epistasis" into their prediction model, they found that predictability was improved. In genetics, dominance describes the joint action of two different alleles (copies) of a gene. For example, if one copy of a gene has a value of 1 and the other copy has a value of 2, the joint effect of the two alleles may be 4, indicating that the two alleles are not additive. In this case, dominance has occurred. Epistasis refers to any type of gene-gene interaction.

"By incorporating dominance and epistasis, we took into account all available information for prediction," Xu said. "It led to a more accurate prediction of a trait value."

Genomic prediction can be used to predict heritable human diseases. For example, many cancers are heritable and genome prediction can be performed to predict disease risk for a person.

Xu was joined in the research by Qifa Zhang and his student Dan Zhu at Huazhong Agricultural University, China.

Next the research team, led by Xu and Zhang, will design a field experiment to perform hybrid prediction in rice.

.


Related Links
University of California - Riverside
Farming Today - Suppliers and Technology






Comment on this article via your Facebook, Yahoo, AOL, Hotmail login.

Share this article via these popular social media networks
del.icio.usdel.icio.us DiggDigg RedditReddit GoogleGoogle








FARM NEWS
Drought hits Central America's crops, cattle
Boaco, Nicaragua (AFP) Aug 07, 2014
The last raindrop fell three months ago, forcing Carlos Roman to take his cattle further and further away to find water and keep them alive in Nicaragua's northeastern farmlands. Nicaragua and the rest of Central America has been hit by a major drought that has killed thousands of cattle, dried up crops and forced cities to ration electricity. Costa Rica, Honduras and Guatemala have decl ... read more


FARM NEWS
DigitalGlobe Announces Launch of WorldView-3

NASA to Investigate Climate Impacts of Arctic Sea Ice Loss

TechDemoSat-1 video from orbit captures spectacular view of Earth and a flypast of the launcher

Study of Aerosols Stands to Improve Climate Models

FARM NEWS
Payload Integration Begins For Next Arianespace Soyuz Galileo Launch

Galileo's initial two Full Operational Capability satellites are fueled for launch

Boeing GPS IIF satellite launched by Air Force

GPS-guided shell in full-rate production

FARM NEWS
World's primary forests on the brink

Girl, 4, survives 11-day ordeal in bear-infested Siberian forest

New analysis links tree height to climate

Loss of Eastern Hemlock Affects Peak Flows after Extreme Storm Events

FARM NEWS
Bionic Liquids from Lignin

Regulations needed to identify potentially invasive biofuel crops

Spinach could lead to alternative energy more powerful than Popeye

Biofuels benefit energy security, Secretary Moniz says

FARM NEWS
MarLar Properties' Rehabbed Homes Add Solar and Geothermal

JinkoSolar Opens Solar Module Factory in Cape Town, South Africa

NOKERO unveils the Prima N202 at American Renewable Energy Day

Trina Solar to Develop 49.9MW Solar Power Plant in UK

FARM NEWS
Juwi Will Build 50-Megawatt Wind Farm in Uruguay

Moventas Exceed high torque density 3 MW gearbox to be piloted

Commercial wind projects reviewed offshore North Carolina

Japan's Marubeni gets capital for Westernmost Rough wind project

FARM NEWS
Australia approves huge India-backed mine

Beijing shuts large coal power plant to curb smog: report

Twenty-two dead in southwest China coal mine accident

FARM NEWS
The East is wed: China seeks brides for richer, for poorer

China issues draft property registration rules

China fishes for growth with world's largest aquarium

HK pro-government activists rally against Occupy protest




The content herein, unless otherwise known to be public domain, are Copyright 1995-2014 - Space Media Network. All websites are published in Australia and are solely subject to Australian law and governed by Fair Use principals for news reporting and research purposes. AFP, UPI and IANS news wire stories are copyright Agence France-Presse, United Press International and Indo-Asia News Service. ESA news reports are copyright European Space Agency. All NASA sourced material is public domain. Additional copyrights may apply in whole or part to other bona fide parties. Advertising does not imply endorsement, agreement or approval of any opinions, statements or information provided by Space Media Network on any Web page published or hosted by Space Media Network. Privacy Statement All images and articles appearing on Space Media Network have been edited or digitally altered in some way. Any requests to remove copyright material will be acted upon in a timely and appropriate manner. Any attempt to extort money from Space Media Network will be ignored and reported to Australian Law Enforcement Agencies as a potential case of financial fraud involving the use of a telephonic carriage device or postal service.