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272774

Detection and Introgression of Lr46 Gene-Conferring Partial Resistance to Leaf Rust (<i>Puccinia triticina</i>) in Wheat

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Last updated: 22 Jan 2023

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Abstract

Detection and introgression of slow leaf rust resistance gene, Lr46 in seven parental wheat cultivars, i.e., Gemmeiza-9, Gemmeiza-11, Gemmeiza-12, Misr-1, Misr-2, Sakha-94 and Giza-171 and their F1 and F2 crosses was carried out at Bahteem Agricultural Research Station, Qaliobia governorate, Egypt. These tested cultivars varied in their reactions to leaf rust disease. The cultivars Misr-1, Misr-2, Sakha-94, and Giza-171 showed slow rust reaction meanwhile, Gemmeiza-9, Gemmeiza-11 and Gemmeiza-12 cultivars were fast rusting. Values of area under disease progress curve (AUDPC) run in a parallel line with its disease severity. Lr46 gene was found in cultivars Misr-1, Misr-2, Sakha-94, and Giza-171 and absent in cultivars Gemmeiza-9, Gemmeiza-11, Gemmeiza-12 cultivars at 300 pb. Qualitative analysis of the obtained data showed that there were no segregations in the crosses Lr46×Misr-1, Lr46×Misr-2, Lr46×Sakha94 and Lr46×Giza-171 in the F2 plants, indicating the presence of the Lr46 in these cultivars. While, segregation was found in the crosses Lr46×Gemmeiza-9, Lr46×Gemmeiza-11, Lr46×Gemmeiza-12, indicating that these cultivars do not carry Lr46 gene. Additionally, the heritability was above 94%, suggesting that the selection of genotypes resistant to leaf rust in the first generations (F2) was feasible. However, this selection is more successful in later generations because the dominance effect is critical for the expression of this trait. Molecular detection proved that Lr46 gene was inserted into Gemmeiza-9, Gemmeiza-11 and Gemmeiza-12 to have slow rust resistance in F2 plants. This saves effort and time as it is possible to rely on molecular marker assisted selection in the early selection of plants carrying this gene. Mean of the yield components, plant height, number of spikes/plant, number of kernels/plant, 100-kernel weight, and grain yield/plant of the three F2 crosses was higher than those of their parents. So, plant breeders should not rely on complete rust resistance, but should consider partial resistance, particularly slow rusting resistance genes.

DOI

10.21608/ejp.2022.165456.1071

Keywords

Wheat, <i>Triticum aestivum</i>, leaf rust, <i>Puccinia triticina</i>, <i>Lr</i>46 Gene, slow rusting, partial resistance

Authors

First Name

Reda

Last Name

Omara

MiddleName

I.

Affiliation

Plant Pathology Research Institute, Agricultural Research Center, 12619, Giza, Egypt.

Email

redaomara43@gmail.com

City

Cairo

Orcid

0000-0002-9776-0238

First Name

Ola

Last Name

Mabrouk

MiddleName

I.

Affiliation

Plant Pathology Research Institute, Agricultural Research Center, 12619, Giza, Egypt.

Email

ola_pathology@yahoo.com

City

El obour

Orcid

0000-0002-5715-6714

First Name

Ahmed

Last Name

Mostafa

MiddleName

M.

Affiliation

Field Crop Research Institute, Agricultural Research Center, 12619, Giza, Egypt.

Email

ahmed.mostafa_1982@yahoo.com

City

Giza

Orcid

-

First Name

Walaa

Last Name

Abdelghany

MiddleName

R.

Affiliation

Plant Pathology Research Institute, Agricultural Research Center, 12619, Giza, Egypt.

Email

walaa.rabie@arc.sci.eg

City

Giza

Orcid

-

Volume

50

Article Issue

2

Related Issue

36189

Issue Date

2022-12-01

Receive Date

2022-09-26

Publish Date

2022-12-06

Page Start

88

Page End

101

Print ISSN

1110-0230

Online ISSN

2090-2522

Link

https://ejp.journals.ekb.eg/article_272774.html

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https://ejp.journals.ekb.eg/service?article_code=272774

Order

272,774

Type

Original Article

Type Code

1,256

Publication Type

Journal

Publication Title

Egyptian Journal of Phytopathology

Publication Link

https://ejp.journals.ekb.eg/

MainTitle

-

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Article

Created At

22 Jan 2023