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干旱通过改变棉花(Gossypium hirsutum)雌蕊中的碳水化合物代谢来限制花粉管生长速度。

Drought limits pollen tube growth rate by altering carbohydrate metabolism in cotton (Gossypium hirsutum) pistils.

机构信息

College of Agriculture, Nanjing Agricultural University, Nanjing, Jiangsu Province 210095, PR China.

Institute of Industrial and Forage Crops, Hellenic Agricultural Organization, Larisa 41335, Greece.

出版信息

Plant Sci. 2019 Sep;286:108-117. doi: 10.1016/j.plantsci.2019.06.003. Epub 2019 Jun 5.

Abstract

It has been reported that drought stress (DS) reduces cotton yield by negatively affecting reproductive activities. Some studies have investigated the effects of DS on pollen physiology and biochemistry, but studies exploring the impact of drought on pistil biochemistry and its relationship with pollen tube growth rates in vivo are scarce. In order to investigate these objectives, a greenhouse study was conducted with a drought sensitive cotton cultivar, Yuzaomian 9110. Two water treatments were imposed at flowering stage, 1. control, where plants were irrigated with optimum quantity of water and 2. DS treatment, where plants were irrigated with 50% of the optimum quantity of water. Results indicated that stored starch content at the early stage of pollen tube growth (12:00 h) was 31.6% lower in drought-stressed pistils than control pistils, and it was highly correlated with pollen tube growth rate. The decline in starch accumulation of drought-stressed pistils could be attributed to the impeded transport of photosynthetic carbon assimilates. Moreover, decreased ADP-glucose pyrophosphorylase and soluble starch synthase activities also resulted in curtailing starch accumulation in drought-stressed pistils. Furthermore, pistil sucrose concentration was significantly higher in droughted plants relative to control plants at 12:00 and 18:00 h (during the rapid growth period), which was due to lower activities of sucrose synthase and acid invertase, and the down-regulated expressions of sucrose synthase genes, GhSusA, GhSusB and GhSusD, and acid invertase genes, GhINV1 and GhINV2, in drought-stressed pistils, limiting as a result the hydrolysis of sucrose into hexose. Drought-stressed pistils sampled at 18:00 h had lower α-amylase activity compared to control pistils, resulting in decreased starch decomposition, which, in conjunction with the decreased hydrolysis of sucrose, led to lower glucose and fructose contents in drought-stressed pistils at 18:00 h. Finally, lower pyruvate level in drought-stressed pistils could not produce enough acetyl-CoA in the tricarboxylic acid cycle to yield sufficient energy (ATP) for pollen tube growth. We conclude that DS disrupts the carbohydrate balance of pistil, reducing as a consequence carbon and energy supply for pollen tube elongation in the style, which will ultimately result in reproductive failure.

摘要

据报道,干旱胁迫(DS)通过对生殖活动产生负面影响而降低棉花产量。一些研究已经调查了 DS 对花粉生理学和生物化学的影响,但研究干旱对雌蕊生物化学及其与体内花粉管生长速率关系的研究却很少。为了研究这些目标,在温室中对一个干旱敏感的棉花品种豫早棉 9110 进行了研究。在开花期施加了两种水分处理,1. 对照,用适量的水灌溉植物,2. DS 处理,用 50%的最佳水量灌溉植物。结果表明,在花粉管生长的早期(12:00),干旱胁迫雌蕊中的储存淀粉含量比对照雌蕊低 31.6%,与花粉管生长速率高度相关。干旱胁迫雌蕊中淀粉积累的减少可能归因于光合作用碳同化产物运输受阻。此外,ADP-葡萄糖焦磷酸化酶和可溶性淀粉合酶活性的降低也导致干旱胁迫雌蕊中淀粉积累减少。此外,在 12:00 和 18:00(快速生长期间),干旱植株的雌蕊蔗糖浓度显著高于对照植株,这是由于蔗糖合酶和酸性转化酶活性降低,蔗糖合酶基因 GhSusA、GhSusB 和 GhSusD,以及酸性转化酶基因 GhINV1 和 GhINV2 的表达下调,导致蔗糖水解为己糖受到限制。与对照雌蕊相比,18:00 时取样的干旱胁迫雌蕊中的α-淀粉酶活性较低,导致淀粉分解减少,再加上蔗糖水解减少,导致干旱胁迫雌蕊中的葡萄糖和果糖含量在 18:00 时降低。最后,干旱胁迫雌蕊中的丙酮酸水平较低,无法在三羧酸循环中产生足够的乙酰辅酶 A 来为花粉管在花柱中的伸长提供足够的能量(ATP)。我们得出结论,DS 破坏了雌蕊的碳水化合物平衡,从而减少了为花粉管伸长提供的碳和能量,最终导致生殖失败。

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