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根皮层气腔提高了玉米(Zea mays L.)的耐旱性。

Root cortical aerenchyma improves the drought tolerance of maize (Zea mays L.).

机构信息

Department of Horticulture, The Pennsylvania State University, University Park, PA 16802, USA.

出版信息

Plant Cell Environ. 2010 May;33(5):740-9. doi: 10.1111/j.1365-3040.2009.02099.x.

Abstract

Root cortical aerenchyma (RCA) reduces root respiration in maize by converting living cortical tissue to air volume. We hypothesized that RCA increases drought tolerance by reducing root metabolic costs, permitting greater root growth and water acquisition from drying soil. To test this hypothesis, recombinant inbred lines with high and low RCA were observed under water stress in the field and in soil mesocosms in a greenhouse. In the field, lines with high RCA had 30% more shoot biomass at flowering compared with lines with low RCA under water stress. Root length density in deep soil was significantly greater in the high RCA lines compared with the low RCA lines. Mid-day leaf relative water content in the high RCA lines was 10% greater than in the low RCA lines under water stress. The high RCA lines averaged eight times the yield of the low RCA lines under water stress. In mesocosms, high RCA lines had less seminal root respiration, deeper rooting, and greater shoot biomass compared with low RCA lines under water stress. These results support the hypothesis that RCA is beneficial for drought tolerance in maize by reducing the metabolic cost of soil exploration.

摘要

根皮层气腔(RCA)通过将活皮层组织转化为空气体积,从而降低玉米根系呼吸作用。我们假设 RCA 通过降低根系代谢成本,从而增加耐旱性,允许根系在干燥土壤中生长并吸收更多水分。为了验证这一假设,我们在田间和温室土壤中进行了根皮层气腔高、低的重组自交系的水分胁迫实验。在田间,水分胁迫下,根皮层气腔高的系比根皮层气腔低的系在开花时的地上部生物量多 30%。与根皮层气腔低的系相比,根皮层气腔高的系在深层土壤中的根长密度显著增加。在水分胁迫下,根皮层气腔高的系的中午叶片相对含水量比根皮层气腔低的系高 10%。水分胁迫下,根皮层气腔高的系的平均产量是根皮层气腔低的系的 8 倍。在土壤中,水分胁迫下,根皮层气腔高的系的根呼吸作用较弱,根系较深,地上部生物量较大。这些结果支持了 RCA 通过降低土壤探测的代谢成本,有利于玉米耐旱性的假设。

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