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首页> 外文期刊>Crop and Pasture Science >Pollen grain expression of a gene controlling differences in osmoregulation in wheat leaves: a simple breeding method
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Pollen grain expression of a gene controlling differences in osmoregulation in wheat leaves: a simple breeding method

机译:控制小麦叶片渗透调节差异的基因的花粉粒表达:一种简单的育种方法

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摘要

The possibility that a gene conditioning differences in osmoregulation in wheat leaves (or) is also expressed in pollen grains was investigated in order to differentiate heterozygous and homozygous lines for use in backcross breeding. The difference in osmoregulation in leaves was expressed as a difference in solute accumulation which was calculated from responses of osmotic potential and relative water content to reductions in water potential caused by droughting plants in pots. A corresponding allelic difference was found in pollen grains. It was demonstrated by a difference in relative size, and solute accumulation, after stressing using polyethelene glycol solution. The response occurred only after addition of a small quantity of potassium chloride, and the maximum response occurred at concentrations of approximately ≥0.2 mM (at least to 10 mM). This suggests that or may condition high affinity potassium transport. Single-gene control was confirmed using pollen responses, and pollen grain expression was further demonstrated by the use of pollen responses, to identify alleles and thus manipulate leaf responses in a backcross breeding study. Because the differences in pollen grain size may be readily observed without measurement using a microscope with relatively low magnification, and because the pollen grains are easily sampled at flowering, the pollen response is suitable as a routine test in plant breeding involving pedigree or backcross methods.
机译:为了区分用于回交育种的杂合和纯合品系,研究了在花粉粒中也表达小麦叶片(或)的渗透调节基因差异的条件。叶片渗透压调节的差异表示为溶质积聚的差异,该差异是根据渗透势和相对含水量对盆栽植物干旱造成的水势下降的响应计算得出的。在花粉粒中发现了相应的等位基因差异。在使用聚乙二醇溶液加压后,相对尺寸和溶质积聚的差异证明了这一点。仅在添加少量氯化钾后才发生反应,最大反应发生在浓度约≥0.2 mM(至少10 mM)时。这表明或可能限制高亲和力钾转运。使用花粉应答证实了单基因控制,并且通过使用花粉应答进一步证实了花粉粒表达,以鉴定等位基因并因此在回交育种研究中操纵叶应答。由于花粉粒大小的差异很容易观察到,而无需使用相对低倍的显微镜进行测量,并且由于花粉粒易于在开花时取样,因此花粉响应适合作为涉及系谱或回交方法的植物育种的常规测试。

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