Institute of Vegetables, Zhejiang Academy of Agricultural Sciences, 198 Shiqiao Road, Hangzhou 310021, China.
J Exp Bot. 2012 Feb;63(3):1155-66. doi: 10.1093/jxb/err329. Epub 2011 Nov 21.
Heat stress can cause severe crop yield losses by impairing reproductive development. However, the underlying mechanisms are poorly understood. We examined patterns of carbon allocation and activities of sucrose cleavage enzymes in heat-tolerant (HT) and -sensitive (HS) tomato (Solanum lycopersicum L.) lines subjected to normal (control) and heat stress temperatures. At the control temperature of 25/20 °C (day/night) the HT line exhibited higher cell wall invertase (CWIN) activity in flowers and young fruits and partitioned more sucrose to fruits but less to vegetative tissues as compared to the HS line, independent of leaf photosynthetic capacity. Upon 2-, 4-, or 24-h exposure to day or night temperatures of 5 °C or more above 25/20 °C, cell wall (CWIN) and vacuolar invertases (VIN), but not sucrose synthase (SuSy), activities in young fruit of the HT line were significantly higher than those of the HS line. The HT line had a higher level of transcript of a CWIN gene, Lin7, in 5-day fruit than the HS line under control and heat stress temperatures. Interestingly, heat induced transcription of an invertase inhibitor gene, INVINH1, but reduced its protein abundance. Transcript levels of LePLDa1, encoding phospholipase D, which degrades cell membranes, was less in the HT line than in the HS line after exposure to heat stress. The data indicate that high invertase activity of, and increased sucrose import into, young tomato fruit could contribute to their heat tolerance through increasing sink strength and sugar signalling activities, possibly regulating a programmed cell death pathway.
热应激通过损害生殖发育会导致严重的作物产量损失。然而,其潜在机制尚不清楚。我们研究了在正常(对照)和热应激温度下,耐热(HT)和敏感(HS)番茄(Solanum lycopersicum L.)品系的碳分配模式和蔗糖裂解酶活性。在对照温度 25/20°C(白天/夜晚)下,HT 品系的花和幼果中的细胞壁转化酶(CWIN)活性较高,与 HS 品系相比,蔗糖更多地分配到果实中,而较少分配到营养组织中,而与叶片光合能力无关。在 2、4 或 24 小时暴露于白天或夜晚温度比 25/20°C 高 5°C 或更高的温度下,HT 品系幼果的细胞壁(CWIN)和液泡转化酶(VIN),但不是蔗糖合酶(SuSy)活性明显高于 HS 品系。在对照和热应激温度下,HT 品系的 Lin7 基因转录本水平在 5 天果实中高于 HS 品系。有趣的是,热诱导了INVINH1 基因(一种抑制转化酶的基因)的转录,但降低了其蛋白丰度。在暴露于热应激后,编码磷脂酶 D 的 LePLDa1 基因的转录水平在 HT 品系中低于 HS 品系,该酶可降解细胞膜。这些数据表明,高温下年轻番茄果实中较高的转化酶活性和蔗糖导入可能通过增加库强度和糖信号转导活性来提高其耐热性,可能调节程序化细胞死亡途径。