Division of Plant Physiology, Indian Agricultural Research Institute, New Delhi, 110012, India.
International Rice Research Institute, DAPO Box. 7777, Metro Manila, Philippines.
Sci Rep. 2017 Aug 15;7(1):8227. doi: 10.1038/s41598-017-07464-6.
Elevated [CO] (e[CO]) environments have been predicted to improve rice yields under future climate. However, a concomitant rise in temperature could negate e[CO] impact on plants, presenting a serious challenge for crop improvement. High temperature (HT) stress tolerant NL-44 and high yielding basmati Pusa 1121 rice cultivars, were exposed to e[CO] (from panicle initiation to maturity) and a combination of e[CO] + HT (from heading to maturity) using field based open top chambers. Elevated [CO] significantly increased photosynthesis, seed-set, panicle weight and grain weight across both cultivars, more prominently with Pusa 1121. Conversely, e[CO] + HT during flowering and early grain filling significantly reduced seed-set and 1000 grain weight, respectively. Averaged across both the cultivars, grain yield was reduced by 18 to 29%. Despite highly positive response with e[CO], Pusa 1121 exposure to e[CO] + HT led to significant reduction in seed-set and sink starch metabolism enzymatic activity. Interestingly, NL-44 maintained higher seed-set and resilience with starch metabolism enzymes under e[CO] + HT exposure. Developing rice cultivars with higher [CO] responsiveness incorporated with increased tolerance to high temperatures during flowering and grain filling using donors such as NL-44, will minimize the negative impact of heat stress and increase global food productivity, benefiting from [CO] rich environments.
升高的[CO](e[CO])环境预计将在未来气候下提高水稻产量。然而,温度的同时升高可能会抵消 e[CO]对植物的影响,这对作物改良提出了严峻的挑战。耐高温(HT)的 NL-44 和高产的巴斯马蒂 Pusa 1121 水稻品种,在田间开顶式气室中暴露于 e[CO](从颖花分化到成熟)和 e[CO]+HT(从抽穗到成熟)的组合中。升高的[CO]显著增加了两个品种的光合作用、结实率、穗重和粒重,对 Pusa 1121 的影响更为显著。相反,开花期和早期灌浆期的 e[CO]+HT 分别显著降低了结实率和千粒重。在两个品种中平均,粒产量降低了 18%至 29%。尽管 Pusa 1121 对 e[CO]的反应非常积极,但暴露于 e[CO]+HT 导致结实率和库淀粉代谢酶活性显著降低。有趣的是,NL-44 在 e[CO]+HT 暴露下,种子结实率和淀粉代谢酶的恢复能力更高。利用 NL-44 等供体,培育对开花期和灌浆期高温具有更高[CO]响应性和耐受性的水稻品种,将最大限度地减少热胁迫的负面影响,提高全球粮食产量,从富含[CO]的环境中受益。