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Drought-induced disturbance of carbohydrate metabolism in anthers and male abortion of two Gossypium hirsutum cultivars differing in drought tolerance

机译:干旱诱导的碳水化合物代谢在旱类耐受性不同中的两种Gossymium Hirsutum品种的男性流产

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Key message Cotton pollen abortion, under drought stress, was closely associated with changes in anther carbohydrate metabolism, and pollen abortion rate due to drought was higher in drought-sensitive cultivars than drought-tolerant cultivars. Cotton reproductive failure under drought stress is intrinsically connected with altered male fertility, however, studies investigating the effect of drought stress on cotton male fertility are nonexistent. Thus, a drought stress experiment was conducted with two cotton cultivars, differing in drought tolerance, to study pollen fertility and anthers' physiology. Results indicated that drought stress reduced pollen fertility of both cultivars due to decreases in anther starch and adenosine triphosphate (ATP) synthesis. Lower assimilate supply capacity in conjunction with impaired activities of ADP-glucose pyrophosphorylase and soluble starch synthase were the main reasons for the decreased starch levels in drought-stressed anthers. The decreased activities of sucrose synthetase and acid invertase were responsible for the higher sucrose level in drought-stressed anthers than well-watered anthers and the changing trend of sucrose was intensified by the decreased expressions of sucrose synthase genes (GhSusA, GhSusB, GhSusD) and acid invertase genes (GhINV1, GhINV2). However, despite sucrose degradation being limited in drought-stressed anthers, glucose level was higher in droughted anthers than well-watered ones, and that might be attributed to the down-regulated respiration since decreased anther ATP levels were detected in drought-stressed plants. Furthermore, compared to the drought-tolerant cultivar, pollen fertility was more suppressed by drought stress for the drought-sensitive cultivar, and that was attributed to the larger decrease in starch and ATP contents.
机译:关键消息棉花花粉流产,在干旱胁迫下,与花药碳水化合物代谢的变化密切相关,并且干旱敏感品种的干旱导致的花粉流产率高于耐旱品种。干旱胁迫下的棉繁殖衰竭与雄性生育的改变有本质上,但研究调查干旱胁迫对棉雄性生育能力的影响。因此,干旱胁迫实验用两种棉花品种进行,不同于耐旱性,研究花粉生育和花药的生理学。结果表明,由于花药淀粉和腺苷三磷酸(ATP)合成的降低,干旱胁迫降低了两种品种的肥力。较低的Assmilate供应能力与ADP-葡萄糖焦磷酸化酶和可溶性淀粉合酶的受损活动结合损伤,是干旱胁迫的花药中淀粉水平降低的主要原因。蔗糖合成酶和酸转化酶的活性降低,对干旱胁迫的花药中的蔗糖水平高于浇水的花药,并且通过蔗糖合成酶基因的表达减少(Ghsusa,Ghsusb,Ghsusd)和蔗糖的变化趋势酸转化酶基因(ghinv1,ghinv2)。然而,尽管蔗糖降解在干旱胁迫的花香中受到限制,但葡萄糖水平比浇水的花药较高,并且可能归因于下调的呼吸,因为在干旱的植物中检测到降低的花药ATP水平。此外,与耐旱培养品种相比,干旱敏感品种的干旱胁迫更抑制花粉生育率,并且归因于淀粉和ATP含量的较大减少。

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