Chloroplast Structure after Water Shortage and High Temperature in Two Lines of Zea mays L. that Differ in Drought Resistance

Botanical Gazette Pub Date : 1991-06-01 DOI:10.1086/337878
Z. Ristić, D. Cass
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引用次数: 32

Abstract

Chloroplast structure in mesophyll cells from more xeromorphic drought-resistant (Polj 17) and less xeromorphic drought-sensitive (F-2) lines of Zea mays L. was studied in response to water stress and a combination of water and high-temperature stress. In the drought-resistant line water stress partly affected chloroplast structure; membranes of the chloroplast envelope were disrupted only in some chloroplasts, but grana were well preserved. Water stress and high-temperature stress affected chloroplasts to a greater extent but did not severely alter their structure. Grana were still visible, and only in some chloroplasts were they less distinguishable. Water shortage in the drought-sensitive line caused swelling of thylakoids and disappearance of outer membranes of the chloroplast envelope in many chloroplasts. Addition of temperature stress increased chloroplast disruption. The most striking difference was in the structural characteristics of chloroplasts after rehydration. Chloroplasts from the drought-resistant line appeared close to normal. In contrast, chloroplasts from the drought-sensitive line showed signs of additional deterioration in their structure. Differences in chloroplast structure under stress conditions between lines were likely the result of intraspecific differences in leaf dehydration, and possibly the result of intraspecific differences in the sensitivity of chloroplast membranes to high temperature.
两种抗旱性不同的玉米品系缺水高温后叶绿体结构
研究了玉米多旱抗旱株系(Polj 17)和少旱抗旱株系(F-2)叶肉细胞叶绿体结构对水分胁迫和水高温联合胁迫的响应。在抗旱系中,水分胁迫部分影响叶绿体结构;只有部分叶绿体的叶绿膜被破坏,但颗粒保存完好。水分胁迫和高温胁迫对叶绿体的影响较大,但对叶绿体结构的影响较小。颗粒仍然可见,只有在一些叶绿体中它们不太容易分辨。干旱敏感系缺水导致许多叶绿体类囊体肿胀,叶绿体包膜外膜消失。温度胁迫增加了叶绿体的破坏。最显著的差异是复水化后叶绿体的结构特征。抗旱系的叶绿体表现接近正常。相比之下,来自干旱敏感系的叶绿体在结构上显示出进一步恶化的迹象。胁迫条件下叶绿体结构的差异可能是由于叶片脱水的种内差异,也可能是由于叶绿体膜对高温敏感性的种内差异。
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