首页> 外文期刊>International Journal of Biometeorology: Journal of the International Society of Biometeorology >Boron application improves yield of rice cultivars under high temperature stress during vegetative and reproductive stages
【24h】

Boron application improves yield of rice cultivars under high temperature stress during vegetative and reproductive stages

机译:硼应用在营养和生殖阶段期间在高温胁迫下提高水稻品种产量

获取原文
获取原文并翻译 | 示例
           

摘要

It is reported that high temperatures (HT) would cause a marked decrease in world rice production. In tropical regions, high temperatures are a constraint to rice production and the most damaging effect is on spikelet sterility. Boron (B) plays a very important role in the cell wall formation, sugar translocation, and reproduction of the rice crop and could play an important role in alleviating high temperature stress. A pot culture experiment was conducted to study the effect of B application on high temperature tolerance of rice cultivars in B-deficient soil. The treatments comprised of four boron application treatments viz. control (B0), soil application of 1 kg B ha(-1) (B1), soil application of 2 kg B ha(-1) (B2), and foliar spray of 0.2% B (Bfs); three rice cultivars viz. Annapurna (HT stress tolerant), Naveen, and Shatabdi (both HT stress susceptible); and three temperature regimes viz. ambient (AT), HT at vegetative stage (HTV), and HT at reproductive stage (HTR). The results revealed that high temperature stress during vegetative or flowering stage reduced grain yield of rice cultivars mainly because of low pollen viability and spikelet fertility. The effects of high temperature on the spikelet fertility and grain filling varied among cultivars and the growth stages of plant when exposed to the high temperature stress. Under high temperature stress, the tolerant cultivar displays higher cell membrane stability, less accumulation of osmolytes, more antioxidant enzyme activities, and higher pollen viability and spikelet fertility than the susceptible cultivars. In the present work, soil application of boron was effective in reducing the negative effects of high temperature both at vegetative and reproductive stages. Application of B results into higher grain yield under both ambient and high temperature condition over control for all the three cultivars; however, more increase was observed for the susceptible cultivar over the tolerant one. The results suggest that the exogenous application of boron had a substantial effect on cell membrane stability, sugar mobilization, pollen viability, and spikelet fertility, hence the yield. The cultivars due to their variation in the tolerance level for high temperature stress behaved differently, and at high temperature stress, more response of the application of boron was seen in susceptible cultivars.
机译:据报道,高温(HT)将导致世界水稻生产的显着减少。在热带地区,高温是水稻生产的约束力,最具破坏性效果是穗穗菌性无菌性。硼(B)在细胞壁形成,糖易位和稻米作物的繁殖中起着非常重要的作用,并且可以在减轻高温胁迫方面发挥重要作用。进行了盆栽培养实验,以研究B应用对B缺乏土壤水稻品种高温耐受性的影响。该治疗包括四个硼施用治疗。对照(B0),土壤施用1千克(-1)(B1),土壤施用2kg b ha(-1)(b2),叶面喷雾0.2%b(bfs);三种稻米品种viz。 Annapurna(HT压力耐受),Naveen和Shatabdi(HT强调易感);和三个温度制度viz。环境(AT),HT在营养阶段(HTV),并在生殖阶段(HTR)。结果表明,营养过程中的高温胁迫或开花阶段期间的高温胁迫降低了水稻品种的籽粒产量,主要是由于低花粉活力和小穗生育率。高温对小穗生育和谷物填充的影响在暴露于高温胁迫时的品种和植物生长阶段不同。在高温胁迫下,耐栽培品种呈现更高的细胞膜稳定性,渗透性的积累,更高的抗氧化酶活性,以及​​比易感品种更高的花粉活力和小穗生育。在本作的工作中,硼的土壤应用有效降低营养和生殖阶段的高温的负面影响。 B中的施加在所有三种品种的环境中,在环境和高温条件下较高的谷物产量;然而,对于耐受性易感品种,观察到更多的增加。结果表明,硼的外源性应用对细胞膜稳定性,糖动员,花粉活力和小穗生育具有大量影响,因此产量。由于它们在高温胁迫的耐受水平的变化引起的品种表现不同,并且在高温胁迫下,在易感品种中观察到硼的应用更响应。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号