Guo Kai, Li Zhonghua, Tian Hanxue, Du Xueqiong, Liu Zhen, Huang Hui, Wang Pengcheng, Ye Zhengxiu, Zhang Xianlong, Tu Lili
National Key Laboratory of Crop Genetic Improvement, Huazhong Agricultural University, Wuhan, China.
College of Agronomy and Biotechnology, Southwest University, Chongqing, China.
Front Plant Sci. 2020 May 7;11:446. doi: 10.3389/fpls.2020.00446. eCollection 2020.
Photosynthetic rate is one of the key factors limiting yield of cotton. Reactive oxygen species (ROS) generated by abiotic stress imposes numerous detrimental effects and causes tremendous loss of yield. It is worth to study whether ROS scavenging enzymes could affect yield through regulating photosynthetic rate in cotton. In this study, we created transgenic cotton with changes of endogenous ROS by overexpressing or suppressing the expression of cytosolic ascorbate peroxidases (s), which are hydrogen peroxide (HO) scavenging enzymes in plants. The suppression of cytosolic s by RNAi brings about a great influence on plant growth and development. Plant height and leaf size declined, and yield-related traits including single boll weight, seed weight, seed size, and lint weight dropped significantly, in IAO lines (cytosolic -suppressed lines). The stunted plant growth was due to the decrease of plant photosynthetic rate. The evidences showed that increased ROS level in guard cells inhibited stomatal opening and suppressed the absorption of CO and HO in IAO line. The decrease of water content and the increase of water loss rate in leaf exacerbated the decline of photosynthetic rate in cytosolic -suppressed lines. Based on these results, it implies that cytosolic s as a whole play an important role in maintaining REDOX balance to regulate photosynthetic rate and yield in cotton.
光合速率是限制棉花产量的关键因素之一。非生物胁迫产生的活性氧(ROS)会造成诸多有害影响,并导致产量的巨大损失。研究ROS清除酶是否能通过调节棉花的光合速率来影响产量是很有意义的。在本研究中,我们通过过表达或抑制植物中过氧化氢(H₂O₂)清除酶——胞质抗坏血酸过氧化物酶(s)的表达,创建了内源性ROS发生变化的转基因棉花。RNA干扰对胞质s的抑制对植物生长发育产生了重大影响。在IAO系(胞质s抑制系)中,株高和叶片大小下降,包括单铃重、种子重量、种子大小和皮棉重量在内的产量相关性状显著降低。植株生长发育受阻是由于植物光合速率降低所致。证据表明,IAO系保卫细胞中ROS水平的升高抑制了气孔开放,并抑制了CO₂和H₂O₂的吸收。叶片含水量的降低和水分流失率的增加加剧了胞质s抑制系光合速率的下降。基于这些结果,这意味着胞质s总体上在维持氧化还原平衡以调节棉花光合速率和产量方面发挥着重要作用。