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A Na <sub>2</sub> CO <sub>3</sub> -responsive chitinase gene from <i>Chinese wildrye</i> improve pathogen resistance and saline-alkali stress tolerance in transgenic tobacco and maize

2019-07-18

Abstract excerpt

Salinity and microbial pathogens are the major limiting factors for crop production. Although the manipulation of many genes could improve plant performance under either of these stresses, few genes have reported that could improve both pathogen resistance and saline-alkali stress tolerance. In this study, we identified a new chitinase gene CHI TINASE 2 ( LcCHI2 ) that encodes a class II chitinase from a Chines...

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Literature Corpus work
589209d1-a462-597d-8321-469a1e033bf9
DOI
10.1101/707281
Open publication

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A Na <sub>2</sub> CO <sub>3</sub> -responsive chitinase gene from <i>Chinese wildrye</i> improve pathogen resistance and saline-alkali stress tolerance in transgenic tobacco and maizeDOI 10.1101/707281
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