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RGA1通过改善糖类和能量的代谢与分配来缓解弱光抑制的花粉管伸长。

RGA1 alleviates low-light-repressed pollen tube elongation by improving the metabolism and allocation of sugars and energy.

作者信息

Li Hubo, Feng Baohua, Li Juncai, Fu Weimeng, Wang Wenting, Chen Tingting, Liu Lianmeng, Wu Zhihai, Peng Shaobing, Tao Longxing, Fu Guanfu

机构信息

National Key Laboratory of Rice Biology, China National Rice Research Institute, Hangzhou, China.

Crop Production and Physiology Center (CPPC), College of Plant Science and Technology, Huazhong Agricultural University, Wuhan, China.

出版信息

Plant Cell Environ. 2023 Apr;46(4):1363-1383. doi: 10.1111/pce.14547. Epub 2023 Jan 26.

Abstract

Low-light stress compromises photosynthetic and energy efficiency and leads to spikelet sterility; however, the effect of low-light stress on pollen tube elongation in the pistil remains poorly understood. The gene RGA1, which encodes a Gα-subunit of the heterotrimeric G-protein, enhanced low-light tolerance at anthesis by preventing the cessation of pollen tube elongation in the pistil of rice plants. In this process, marked increases in the activities of acid invertase (INV), sucrose synthase (SUS) and mitochondrial respiratory electron transport chain complexes, as well as the relative expression levels of SUTs (sucrose transporter), SWEETs (sugars will eventually be exported transporters), SUSs, INVs, CINs (cell-wall INV 1), SnRK1A (sucrose-nonfermenting 1-related kinase 1) and SnRK1B, were observed in OE-1 plants. Accordingly, notable increases in contents of ATP and ATPase were presented in OE-1 plants under low-light conditions, while they were decreased in d1 plants. Importantly, INV and ATPase activators (sucrose and Na SO , respectively) increased spikelet fertility by improving the energy status in the pistil under low-light conditions, and the ATPase inhibitor Na VO induced spikelet sterility and decreased ATPase activity. These results suggest that RGA1 could alleviate the low-light stress-induced impairment of pollen tube elongation to increase spikelet fertility by promoting sucrose unloading in the pistil and improving the metabolism and allocation of energy.

摘要

弱光胁迫会损害光合作用和能量效率,并导致小穗不育;然而,弱光胁迫对雌蕊中花粉管伸长的影响仍知之甚少。基因RGA1编码异源三聚体G蛋白的Gα亚基,通过防止水稻植株雌蕊中花粉管伸长的停止,增强了花期的弱光耐受性。在此过程中,在OE-1植株中观察到酸性转化酶(INV)、蔗糖合酶(SUS)和线粒体呼吸电子传递链复合物的活性显著增加,以及蔗糖转运蛋白(SUTs)、糖最终输出转运蛋白(SWEETs)、SUSs、INVs、细胞壁INV 1(CINs)、蔗糖非发酵1相关激酶1(SnRK1A)和SnRK1B的相对表达水平显著增加。因此,在弱光条件下,OE-1植株中ATP和ATP酶的含量显著增加,而在d1植株中则降低。重要的是,INV和ATP酶激活剂(分别为蔗糖和Na₂SO₄)通过改善弱光条件下雌蕊中的能量状态提高了小穗育性,而ATP酶抑制剂Na₃VO₄诱导了小穗不育并降低了ATP酶活性。这些结果表明,RGA1可以通过促进雌蕊中的蔗糖卸载以及改善能量代谢和分配,减轻弱光胁迫诱导的花粉管伸长损伤,从而提高小穗育性。

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