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异源谷氧还蛋白的异位表达增强了田间种植玉米的耐旱性和籽粒产量。

Ectopic Expression of a Heterologous Glutaredoxin Enhances Drought Tolerance and Grain Yield in Field Grown Maize.

作者信息

Tamang Tej Man, Sprague Stuart A, Kakeshpour Tayebeh, Liu Sanzhen, White Frank F, Park Sunghun

机构信息

Department of Horticulture and Natural resources, Kansas State University, Manhattan, KS 66506, USA.

Department of Plant Pathology, Kansas State University, Manhattan, KS 66506, USA.

出版信息

Int J Mol Sci. 2021 May 19;22(10):5331. doi: 10.3390/ijms22105331.

Abstract

Drought stress is a major constraint in global maize production, causing almost 30-90% of the yield loss depending upon growth stage and the degree and duration of the stress. Here, we report that ectopic expression of () in field grown maize conferred tolerance to drought stress during the reproductive stage, which is the most drought sensitive stage for seed set and, consequently, grain yield. -expressing maize lines displayed higher seed set in the field, resulting in 2-fold and 1.5-fold increase in yield in comparison to the non-transgenic plants when challenged with drought stress at the tasseling and silking/pollination stages, respectively. -expressing lines showed higher relative water content, higher chlorophyll content, and less hydrogen peroxide accumulation than wild-type (WT) control plants under drought conditions. -expressing lines also exhibited at least 2-fold more pollen germination than WT plants under drought stress. Compared to the transgenic maize, WT controls accumulated higher amount of proline, indicating that WT plants were more stressed over the same period. The results present a robust and simple strategy for meeting rising yield demands in maize under water limiting conditions.

摘要

干旱胁迫是全球玉米生产的主要限制因素,根据生长阶段以及胁迫的程度和持续时间,会导致近30%-90%的产量损失。在此,我们报告,在田间种植的玉米中异位表达()赋予了生殖阶段对干旱胁迫的耐受性,生殖阶段是对结实乃至籽粒产量最敏感的干旱阶段。表达的玉米品系在田间表现出更高的结实率,在抽雄期和吐丝/授粉期受到干旱胁迫时,与非转基因植株相比,产量分别提高了2倍和1.5倍。在干旱条件下,表达的品系比野生型(WT)对照植株表现出更高的相对含水量、更高的叶绿素含量以及更少的过氧化氢积累。在干旱胁迫下,表达的品系的花粉萌发率也比WT植株至少高2倍。与转基因玉米相比,WT对照积累了更高量脯氨酸,表明WT植株在同一时期受到的胁迫更大。这些结果为在水分限制条件下满足玉米不断增长的产量需求提供了一种可靠且简单的策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7e03/8158702/bb346555c88a/ijms-22-05331-g001.jpg

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