A. A. Abro, S. Memon, S. Abro, E. Sam, Ru-yu He, M. H. Rind, Z. Solangi, T., Muhammad, B. Ali, W. Ahmed, W. Dev, M. Abro, N. Rajput, S. Nizamani, M. Nargis, A. R., Kumbhar
{"title":"小麦(triticum aestivum l .)耐旱性评价苗期早期采用聚乙二醇诱导渗透胁迫的品种","authors":"A. A. Abro, S. Memon, S. Abro, E. Sam, Ru-yu He, M. H. Rind, Z. Solangi, T., Muhammad, B. Ali, W. Ahmed, W. Dev, M. Abro, N. Rajput, S. Nizamani, M. Nargis, A. R., Kumbhar","doi":"10.36899/japs.2020.4.0111","DOIUrl":null,"url":null,"abstract":"Drought is a grave concern due to changing climate phenomenon which drastically affects wheat production throughout the world. Screening drought tolerant varieties of wheat are important for ameliorating productivity of water scarce areas. An experiment was conducted at physiology division Nuclear Institute of Agriculture Tandojam (Latitude: 25.433 Longitude: 68.533) Sindh, Pakistan during 2016-2017. Treatment included a factorial combination using a completely randomized design (CRD) with three replications. Six wheat cultivars (cv. cultivars IBWSN-1010, IBWSN-1025, TD-1, ESW-9525, Khirman and Chakwal-86) were investigated for their response at seedling stage under different water stress treatments (T-1 0, T-2 -0.5, T-3 -0.75 and T-4 -1.0 MPa) in controlled conditions. The results of experiments with reference to cultivars revealed that cultivar Khirman & IBWSN-1010 showed maximum shoot length (17.33 and 16.68 cm), while the cultivar Khirman and TD-1showed maximum root length (10.02 and 8.67 cm), shoot fresh weight (34.46 g 10 -1 shoots), root fresh wt. (71.76 g 10 -1 shoots), shoot dry wt. (13.55 g 10 -1 shoots), root dry wt. (13.62 g 10 - 1 roots),while the cultivar IBWSN-1010 observed more chlorophyll contents (0.27 mg g1 fresh wt) and ionic contents (K + and Ca2 + , and K + /Ca2 + ratio)(1.05, 1.03 and 0.93 %). Among all the wheat cultivars tested Khirman and IBWSN-1010 are tolerant cultivar sand have the potential to perform better under drought conditions, whereas IBWSN-1025 and Chakwal-86 were moderately tolerant under water stress conditions. Moreover, the cultivars i.e. TD-1 and ESW-9525 are the sensitive cultivars under drought environment. It may be concluded from present in-vitro studies that osmotic stress significantly reduced the shoot/root length fresh and dry weight in all six wheat cultivars. The maximum reduction (P≤0.05) was found at higher osmotic stress induced by PEG-6000 (-1.0 MPa).","PeriodicalId":8656,"journal":{"name":"August 1985","volume":"1 1","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2020-04-25","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"2","resultStr":"{\"title\":\"EVALUATION OF DROUGHT TOLERANCE IN WHEAT (TRITICUM AESTIVUM L.) 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Six wheat cultivars (cv. cultivars IBWSN-1010, IBWSN-1025, TD-1, ESW-9525, Khirman and Chakwal-86) were investigated for their response at seedling stage under different water stress treatments (T-1 0, T-2 -0.5, T-3 -0.75 and T-4 -1.0 MPa) in controlled conditions. The results of experiments with reference to cultivars revealed that cultivar Khirman & IBWSN-1010 showed maximum shoot length (17.33 and 16.68 cm), while the cultivar Khirman and TD-1showed maximum root length (10.02 and 8.67 cm), shoot fresh weight (34.46 g 10 -1 shoots), root fresh wt. (71.76 g 10 -1 shoots), shoot dry wt. (13.55 g 10 -1 shoots), root dry wt. (13.62 g 10 - 1 roots),while the cultivar IBWSN-1010 observed more chlorophyll contents (0.27 mg g1 fresh wt) and ionic contents (K + and Ca2 + , and K + /Ca2 + ratio)(1.05, 1.03 and 0.93 %). Among all the wheat cultivars tested Khirman and IBWSN-1010 are tolerant cultivar sand have the potential to perform better under drought conditions, whereas IBWSN-1025 and Chakwal-86 were moderately tolerant under water stress conditions. Moreover, the cultivars i.e. TD-1 and ESW-9525 are the sensitive cultivars under drought environment. It may be concluded from present in-vitro studies that osmotic stress significantly reduced the shoot/root length fresh and dry weight in all six wheat cultivars. 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引用次数: 2
摘要
干旱是由于气候变化而引起的一个严重问题,它严重影响了全世界的小麦生产。选育耐旱小麦品种对提高缺水地区的生产力具有重要意义。实验于2016-2017年在巴基斯坦信德省坦多贾姆核农业研究所(纬度:25.433经度:68.533)生理学部进行。治疗包括使用完全随机设计(CRD)的三次重复的因子组合。6个小麦品种(cv;以IBWSN-1010、IBWSN-1025、TD-1、ESW-9525、Khirman和chakwal86为研究对象,研究了不同水分胁迫处理(t -10、T-2 -0.5、T-3 -0.75和T-4 -1.0 MPa)在苗期的反应。对照试验结果表明,品种Khirman和IBWSN-1010的茎长最大(17.33和16.68 cm),品种Khirman和td -1的根长最大(10.02和8.67 cm),茎鲜重最大(34.46 g 10 -1枝),根鲜重最大(71.76 g 10 -1枝),茎干重最大(13.55 g 10 -1枝),茎干重最大(13.55 g 10 -1枝)。品种IBWSN-1010的叶绿素含量(0.27 mg g1 fresh wt)和离子含量(K +、Ca2 +及K + /Ca2 +比值)(1.05、1.03和0.93%)均高于IBWSN-1010。在所有小麦品种中,Khirman和IBWSN-1010是耐干旱品种,在干旱条件下表现较好,而IBWSN-1025和Chakwal-86在水分胁迫条件下表现中等。此外,TD-1和ESW-9525是干旱环境下的敏感品种。从目前的离体研究可以看出,渗透胁迫显著降低了6个小麦品种的茎/根长、鲜重和干重。PEG-6000诱导的高渗透胁迫(-1.0 MPa)下,降低幅度最大(P≤0.05)。
EVALUATION OF DROUGHT TOLERANCE IN WHEAT (TRITICUM AESTIVUM L.) CULTIVARS AT EARLY SEEDLING STAGE USING POLYETHYLENE GLYCOL INDUCED OSMOTIC STRESS
Drought is a grave concern due to changing climate phenomenon which drastically affects wheat production throughout the world. Screening drought tolerant varieties of wheat are important for ameliorating productivity of water scarce areas. An experiment was conducted at physiology division Nuclear Institute of Agriculture Tandojam (Latitude: 25.433 Longitude: 68.533) Sindh, Pakistan during 2016-2017. Treatment included a factorial combination using a completely randomized design (CRD) with three replications. Six wheat cultivars (cv. cultivars IBWSN-1010, IBWSN-1025, TD-1, ESW-9525, Khirman and Chakwal-86) were investigated for their response at seedling stage under different water stress treatments (T-1 0, T-2 -0.5, T-3 -0.75 and T-4 -1.0 MPa) in controlled conditions. The results of experiments with reference to cultivars revealed that cultivar Khirman & IBWSN-1010 showed maximum shoot length (17.33 and 16.68 cm), while the cultivar Khirman and TD-1showed maximum root length (10.02 and 8.67 cm), shoot fresh weight (34.46 g 10 -1 shoots), root fresh wt. (71.76 g 10 -1 shoots), shoot dry wt. (13.55 g 10 -1 shoots), root dry wt. (13.62 g 10 - 1 roots),while the cultivar IBWSN-1010 observed more chlorophyll contents (0.27 mg g1 fresh wt) and ionic contents (K + and Ca2 + , and K + /Ca2 + ratio)(1.05, 1.03 and 0.93 %). Among all the wheat cultivars tested Khirman and IBWSN-1010 are tolerant cultivar sand have the potential to perform better under drought conditions, whereas IBWSN-1025 and Chakwal-86 were moderately tolerant under water stress conditions. Moreover, the cultivars i.e. TD-1 and ESW-9525 are the sensitive cultivars under drought environment. It may be concluded from present in-vitro studies that osmotic stress significantly reduced the shoot/root length fresh and dry weight in all six wheat cultivars. The maximum reduction (P≤0.05) was found at higher osmotic stress induced by PEG-6000 (-1.0 MPa).