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1.
氨挥发和氮淋洗是氮肥损失的重要途径,导致严重的环境污染。有关橡胶林氮肥穴施后的氨挥发和氮淋洗损失问题的研究鲜见报道。本研究设置0 kg/hm2(对照)、100 kg/hm2(低氮)、230 kg/hm2(中氮)、400 kg/hm2(高氮)的施氮水平,分别采用通气法和渗漏盘法研究橡胶林尿素穴施后的氨挥发和氮淋洗损失特征。结果表明,旱季氨挥发损失过程大致在14~20 d内完成,雨季基本在7~10 d完成;氨挥发峰值在旱季较雨季延迟,旱季大概施肥后6~13 d达到峰值,而雨季1~3 d即达到峰值;与对照相比,低氮、中氮和高氮处理的氨挥发损失大致为9.32~21.54 kg/hm2。氮淋洗损失主要发生在雨季(5—11月),且以硝态氮淋洗为主;橡胶林氮肥穴施条件下的氮淋洗损失约为2.36~9.00 kg/hm2;随着施氮量的增加,氨挥发和氮淋洗损失均呈增加趋势。综上,橡胶林氮肥穴施后的氨挥发和氮淋洗损失并不高,其施氮量不宜超过230 kg/hm2。  相似文献   

2.
以海南岛儋州地区橡胶林为研究对象,基于涡度相关法对橡胶林水汽通量进行长期观测,获得2010年全年橡胶林水汽通量观测数据,分析全年水汽通量变化特征及其影响因子。结果表明:(1)橡胶林全年水汽通量基本为正值,水汽由生态系统进入环境,即橡胶林为水汽源;水汽通量日变化特征为单峰型,在12:00~14:00达到最大值,夜间水汽通量保持平稳,且接近0;白天水汽通量雨季(橡胶林主要生长季)远大于旱季,且变化规律性强;2010年全年总降雨量为1 763.8 mm,蒸散总量为999.6 mm,蒸散量占降雨量的56.67%;雨季8~10月降雨量远大于蒸散量,降水严重剩余;旱季蒸散量接近降雨量的2倍。(2)水汽通量与净辐射呈现正相关,且达到显著水平;雨季相关性最好,5~10月R2为0.760 4,其次是旱季,11~12月R2为0.614 3,1~4月相关性最差(R2为0.290 3)。(3)橡胶林水汽通量与气温呈现正相关,雨季相关性高于旱季。(4)水汽通量与饱和水汽压差正相关,雨季相关性最好,R2为0.362 1。(5)不同月份,影响橡胶林水汽通量的主要环境因子不同,净辐射、饱和水汽压差是水汽循环最主要的驱动力,无论在旱季还是雨季都是影响水汽通量最主要的影响因子。  相似文献   

3.
以玉米品种郑单958为试材,设常温下喷施清水(CK)、常温下喷施苯肽胺酸(PA)、低温下喷施清水(LT)和低温下喷施苯肽胺酸(LT+PA)4个不同处理,低温处理7 d后将玉米幼苗移入常温环境下恢复3 d,测定各处理幼苗生长情况、细胞质膜透性、活性氧(ROS)、抗氧化酶活性和氮代谢相关指标。结果表明,低温胁迫下,幼苗叶片活性氧和丙二醛(MDA)含量显著增加,膜透性增大,胁迫前期会诱导酶促抗氧化防御系统活性增强,随胁迫时间延长,抗氧化酶活性均呈下降趋势;氮素吸收量逐步减少,氮代谢相关酶活性呈明显降低趋势,玉米幼苗生长受到严重抑制。叶面喷施苯肽胺酸可显著减少膜损伤来促进根系对NO3-的吸收和提高抗氧化酶活性,同时氮代谢关键酶活性的上升和GS/GOGAT代谢途径的正常运行在氮代谢中发挥积极作用。  相似文献   

4.
海南黑山羊生长期的能量与蛋白质需要量   总被引:1,自引:0,他引:1  
试验选用12只海南黑山羊断奶羔羊(约4月龄),采用饲养试验和消化代谢试验,研究生长期海南黑山羊的能量和蛋白质需要量及其代谢规律。试验羊分成4组,采用4×4拉丁方设计。按照Keral(1982)适宜于发展中国家的山羊饲养标准为参考设计了高能高氮、低能高氮、高能低氮、低能低氮4种能氮比的日粮。结果表明:舍饲海南黑山羊生长期干物质采食量与代谢体重和日增重的关系为DMI(g/d)=27.18W^0.75+0.83△W+210.76(r=0.8916);总能、消化能、粗蛋白质和可消化蛋白质需要量的估测模型分别为GEI(MJ/d)=0.82W0.75+0.028△W+3.76(r=0.7804),DEI(MJ/d)=0.59W^0.75+0.021△W-0.24(r=0.6651),CPI(g/d)=2.45W^0.75+0.26△W+22.14(r=0.5712),DCP(g/d)=2.69W^0.75+0.03△W-0.38(r=0.6605);生长期海南黑山羊日粮总能代谢率平均为58.88%,粗蛋白的消化率平均为57.08%,净蛋白利用率平均为35.25%,每增重1g体沉积蛋白质需要量为0.37g。  相似文献   

5.
为进一步了解缺氮对油菜养分吸收的影响,以甘蓝型油菜中双11号为材料,采用营养液培养方法,设置正常供氮和缺氮两个处理,培养14d后收获,分析缺氮对油菜植株表型、生物量、植株养分含量及养分吸收相关基因表达的影响。结果表明,缺氮严重抑制油菜植株生长,地上部生物量显著减少,叶片瘦小、黄化,茎秆呈紫红色。缺氮促进油菜根系生长,植株根冠比增加。缺氮处理对油菜叶、茎、根中大量元素含量的影响有所不同,缺氮油菜叶、茎、根的氮浓度及氮含量都显著降低;油菜叶、茎的磷浓度在缺氮胁迫时显著增加,根的磷浓度显著降低,而茎和根的磷含量在缺氮胁迫时都显著降低,但叶片磷含量不受影响;油菜不同部位钾浓度和钾含量在缺氮胁迫时都显著降低,并且缺氮处理14d显著抑制油菜大部分钾通道蛋白基因以及3个根部特异钾转运蛋白基因的表达,说明缺氮对油菜钾吸收运转相关基因表达的影响,可能导致油菜植株钾含量的降低。  相似文献   

6.
通过田间试验,研究了超级杂交稻Y两优1号在不同施氮量(0~225 kg/hm2)处理下各生育时期的碳、氮积累特性及其关系。结果表明,随植株的生长,生物量和碳积累量不断增加,但氮积累主要集中在幼穗分化期以前;在0~225 kg/hm2范围内,随施氮量增加,水稻生长中后期(拔节期—成熟期)植株的生物量及碳、氮积累量均呈增加趋势,而碳氮比呈下降趋势,多项指标与施氮量的相关性均达显著或极显著水平;植株碳、氮含量呈极显著正相关,说明植株对碳、氮的吸收表现为相互促进的关系。  相似文献   

7.
为探明橡胶林的生物量和碳储量,以更好地了解橡胶林在区域生态系统中的碳汇作用,研究了西双版纳地区成龄橡胶林及另外2种主要类型人工林——澳洲坚果林和茶园的生物量与碳储量及其分配特征。采用完全收获法采集平均标准木全株,划取样方采集土壤、林下植被和枯落物,并对所有样品进行实际称重和含碳量测定,进而计算生物量和碳储量。结果表明:橡胶林的总生物量为(289.18±15.15)t/hm2,其中林木生物量占比97.06%;橡胶林的总碳储量为(285.02±15.12)t/hm2,其中土壤碳储量占比54.18%、林木碳储量占比45.30%。橡胶林的总生物量远高于茶园[(56.82±12.10)t/hm2]和澳洲坚果林[(44.46±3.83)t/hm2],但三者生物量分配特征相同,均是林木生物量占绝大部分而枯落物和林下植被占比很小;橡胶林的总碳储量也远高于澳洲坚果林[(162.70±3.83)t/hm2]和茶园[(112.03±8.52)t/hm2],且三者都是土壤碳储量占比最大、林木碳储量其次,但澳洲坚果林和茶园都是土壤碳储量的占比(88.18%和77.64%)远高于林木碳储量的占比(10.76%和21.70%)。尽管橡胶林的生物量和碳储量与热带雨林(生物量约420 t/hm2,碳储量约310 t/hm2)相比低很多,但比其他类型人工林高,而橡胶林复合种植模式可进一步显著提高林分生物量的积累和储碳固碳能力,提升橡胶林生态系统的生产力和碳汇功能。本研究为评估橡胶树种植对区域生态系统碳平衡的影响提供了基础依据。  相似文献   

8.
为探究氮高效的机制,研究油菜苗期碳氮代谢规律,以两个氮效率差异显著的油菜种质(氮高效种质A294和氮低效种质A364)为材料,通过设置正常(CK, 9.5 mmol/L)和低氮(LN, 0.475 mmol/L)两个处理,比较不同氮效率油菜在根系形态、氮吸收转运同化、光合碳代谢生理指标以及碳氮代谢相关基因表达等方面的差异。结果表明,氮高效的A294在低氮胁迫下根系发达,植株生物量和氮累积量显著高于A364,前者根系吸收及向地上部转运氮的能力较强,而氮同化关键酶硝酸还原酶和谷氨酰胺合成酶活性在两个种质间无显著差异;同时,A294叶片SPAD值、光合色素含量、净光合速率及磷酸蔗糖合酶基因BnaSPS的表达均更高。进一步分析发现,低氮胁迫下A294根系中硝酸盐转运蛋白基因BnaNPF7.3的表达显著高于A364,而BnaNPF7.2b在A364根系的表达则显著高于A294;此外,A364可溶性糖含量的根叶比及根系中蔗糖合酶基因BnaSUS表达高于A294,说明低氮胁迫下氮高效油菜A294可以将更多的营养元素(氮)分配至地上部,使叶片保持较高的光合速率,为生物体构建提供保障;而氮低效油菜种质A364则倾向于将有限的营养元素(氮)分配在根系并维持其生长发育,同时其根系可溶性糖消耗占比高于A294,导致其根冠比高于A294。由此认为,油菜在响应外界氮缺乏胁迫时,氮素与能量物质(可溶性糖)的分配与消耗差异会影响叶片碳代谢(光合作用、蔗糖合成)速率,最终导致油菜苗期氮效率的差异。  相似文献   

9.
研究低氮胁迫对不同氮效率玉米品种幼苗生长及叶片碳氮代谢的影响,分析比较不同氮效率玉米品种对低氮胁迫响应的差异。采用水培方法,以氮高效品种郑单958、正红311和氮低效品种川单428、先玉508为试验材料,在低氮胁迫(0.04 mmol/L)、正常氮(4 mmol/L)和低氮恢复处理3个氮水平下,分别测定苗期干物质积累量、叶片碳氮代谢产物含量及碳氮代谢相关酶活性,比较不同氮效率品种间的差异。结果表明,低氮胁迫显著降低玉米叶片和整株干物质重量、叶片氮代谢指标(硝酸还原酶和谷氨酰胺合成酶活性、可溶性蛋白和游离氨基酸含量),提高根系干重、根冠比、叶片碳代谢指标(蔗糖合成酶和蔗糖磷酸合成酶活性、可溶性总糖和淀粉含量)。不同品种间各指标的变化幅度随着时间的延长表现出不同规律,氮高效品种在氮素胁迫下对碳氮代谢的平衡能力更强,受低氮环境影响较小,植株的恢复能力较强,对胁迫环境具有更强的耐性和适应性。  相似文献   

10.
不同播期下水热因子对燕麦生长、产量和品质的影响   总被引:2,自引:0,他引:2  
为了解不同播期下水热因子变化对燕麦生长、产量和品质的影响,以白燕2号裸燕麦品种为材料,于2018-2019年探究了5个不同播期(4月18、4月28日、5月8日、5月18日、5月28日)对燕麦生长、产量和品质的影响。结果表明:(1)随着播期的推后,燕麦生育期缩短5~14 d;播期每推迟10 d,营养生长期平均推迟5~9 d;燕麦拔节到抽穗期的降雨分配、全生育期降雨总量和苗期积温提高。(2)拔节到抽穗期的降雨量和整个生育期降雨总量增加有利于燕麦产量提高,分蘖到拔节期积温和拔节到抽穗期的降雨量与粗蛋白含量呈显著正相关,抽穗到灌浆期的降雨量与粗脂肪含量呈显著正相关,但灌浆到成熟期期间降雨不利于燕麦产量和品质的形成。(3)5月28日播种的燕麦生长表现最佳,株高、茎粗和籽粒产量分别较4月18日播种提高了21.57%、25.12%和24.91%;燕麦品质以5月18日播种表现最优,β-葡聚糖、粗蛋白和粗脂肪含量分别较4月18日播种平均提高了43.11%、9.22%和14.65%。总之,我国北方燕麦主产区不同的播期主要因为各生育时期的降雨量不同而影响燕麦产量和品质,其中拔节到灌浆期间的降雨量增加有利于燕麦粗脂肪和粗蛋白含量提高,燕麦全生育期总降雨量增加有利于产量形成。  相似文献   

11.
The impact of nitrogen source on the response of cucumber (Cucumis sativus) seedlings to sub-toxic concentrations (<10−6 ) of metolachlor and EPTC was studied in nutrient solutions. Nitrogen increased the phytotoxicity of low concentrations of both herbicides. The presence of a relatively high ammonium level (5m ) in solution enhanced growth inhibition (up to 50%), increased total nitrogen (20%) and protein content (26%), and resulted in less K+ (50%) and Ca2+ (70%) absorption. Under optimal nitrogen nutrition conditions, metolachlor temporarily inhibited plant growth, and both herbicides decreased the protein content in cucumber leaves. The effect of herbicides at the high ammonium level on plant growth was stronger and more long-lasting compared with control growing conditions.  相似文献   

12.
药用植物菘蓝的特定染色体附加到甘蓝型油菜所产生的附加系表现一定的抗病毒活性,但尚无营养成分、菜薹和菜籽产量、综合效益方面的研究。本研究以抗病毒油菜菘油1号为父本,细胞核雄性不育系川A-3为母本选育出菘油2号,并对其进行油蔬两用产量、农艺性状、菜薹营养、种子品质、综合效益等方面的研究。结果表明,具有菘蓝染色体特异标记的植株占48.56%,其菜薹营养丰富,维生素C和锌含量明显高于西兰花1-1-5、白花菜rB-112、红菜薹Q10005、初冬牛心甘蓝和萝卜CP4,氨基酸、蛋白质含量明显高于白花菜rB-112、红菜薹Q10005、初冬牛心甘蓝和萝卜CP4,与西兰花1-1-5相当。从播种到始摘薹的天数平均为117 d,菜薹产量为16 908.8 kg/hm2,较摘薹对照增产75.1%。与单纯收籽栽培相比,摘薹后末花期延迟6~10 d,株高、全株角果数、每角粒数、千粒重、单株产量,含油量都显著降低,其末花期理论生物量平均124.3 t/hm2,收获油菜籽1127.3 kg/hm2,较摘薹对照增产16.4%,较单纯收油菜籽栽培减产42...  相似文献   

13.
Nitrate(NO3-) and ammonium(NH4+) are two main inorganic nitrogen(N) sources during crop growth.Here,we enhanced the expression of OsAMT1.1,which encodes a NH4+ transporter,using the NO3--inducible promoter of OsNAR2.1 and an ubiquitin promoter in transgenic rice plants.Under field condition of 120 kg/hm2 N,agronomic N use efficiency,N recovery efficiency and N transport efficiency,and grain yield o...  相似文献   

14.
To ascertain the reasons for the high plant mortality in fibre-hemp (Cannabis sativa L.) crops in the Netherlands changes in biomass yield, plant mortality and plant morphology were investigated in a hemp cultivar grown at initial densities of 10, 30, 90 and 270 plants m−2. At 90 plants m−2 this cultivar was compared with a high bast-fibre cultivar and a late-flowering cultivar. Rate of canopy establishment and early growth rate increased with increasing plant density. At 90 and 270 plants m−2, plants died as a result of self-thinning. Self-thinning was associated with a reduced crop growth rate. In self-thinning stands, dry biomass (B, g m−2) was related to density of surviving plants (D, m−2) as log B = 3.81 − 0.304 log D. At the same crop growth rate, the rate at which plants died from self-thinning was higher in hemp than in other herbaceous dicots. The proportion of stem in the total dry matter increased with increasing plant density. Stem yield was maximum at 90 plants m−2. Stem quality improved with increasing density as the bark content in the stem increased, but self-thinning reduced the bark content in the stem. Optimum plant density was close to that resulting after self-thinning. In hemp the relationship between yield and optimum plant density is approximated by the equation of its self-thinning line. The late-flowering cultivar yielded more than the other two cultivars because it grew faster during the latter part of the growing season.  相似文献   

15.
研究龙眼幼苗在不同温度(10、15、20、25、30、35℃)和不同氮营养(硝态氮、3/4硝态氮+1/4铵态氮、1/2硝态氮+1/2铵态氮、1/4硝态氮+3/4铵态氮、铵态氮)供应条件下吸收氮素的动力学特征,比较龙眼吸氮能力变化,并探讨龙眼对氮形态的偏好性,为龙眼不同季节(物候期)选择适用氮肥形态提供依据。结果显示,温度和供氮形态对龙眼吸氮能力有显著影响(P<0.05)。在中低温度(10~25℃)等量供应硝态氮和铵态氮条件下,龙眼根系吸收氮素(硝态氮和铵态氮之和)的最大吸收速率(Imax)最高或较高,而亲和力(Am)和离子吸收补偿点(Cmin)则随温度和氮形态变化不大,故此时龙眼吸氮能力强。在高温(30℃)且仅供应铵态氮时,根系具有最高ImaxAm,同时Cmin最低,最有利于龙眼吸氮。在极端高温(35℃)时将铵态氮和硝态氮以3∶1的比例配合供应,则Imax最高,Am较高且Cmin较低,有利龙眼对氮素的吸收。另外,等量硝态氮和铵态氮共存条件下,龙眼在低温(10~15℃)时吸收铵态氮的Imax更高、Am更强而且Cmin更低,明显偏好铵态氮;在中高温(20~35℃)时吸收硝态氮的Imax更高,但Am更弱且Cmin更高,对氮形态的偏好性不明显。对照华南龙眼生长物候期,建议在龙眼秋梢生长期施用铵态氮为主、硝态氮为辅;在花前至小果期可以1∶1的比例施用硝态氮和铵态氮;在果实膨大期,可全部施用铵态氮或以3∶1的比例施入铵态氮和硝态氮。  相似文献   

16.
【目的】明确优质高产软米粳稻的产量和品质对氮肥的响应特征。【方法】在前期品种筛选的基础上,选择2个优质食味高产型软米品种为研究对象,设置60 kg/hm2(N1)、120 kg/hm2(N2)、180 kg/hm2(N3)、240 kg/hm2(N4)、300 kg/hm2(N5)与360 kg/hm2(N6) 6个氮肥(以纯氮计)水平,对其产量性状和品质指标进行了测定与分析。【结果】依赖于单位面积穗数、每穗粒数和群体颖花量的协同增加,软米产量在N5下最高,但与N4间无显著差异。随施氮量增加,米粒的外观、黏度、平衡度和食味值呈先增后减,而硬度则先减后增,并在N4或N5下出现峰值;出糙率、出精率和整精米率均随施氮量增加而提高,但垩白米率和垩白度呈先降后增,并在N5水平下最低。随施氮量的增加,直链淀粉含量和胶稠度下降,蛋白质含量升高。米粉峰值黏度、热浆黏度、崩解值和最终黏度随施氮量的增加呈先增后减,在N4或N5下最高。【结论】因此,优质食味软米在240 kg/hm2和300 kg/hm2条件下取得产量和品质的协调,240 kg/hm2是品质、产量和效益兼顾的最佳施氮量。  相似文献   

17.
Globe artichoke (Cynara scolymus L.) and cultivated cardoon (C. cardunculus L. var. altilis DC.) are horticulturally important crop plants. These species have potential as biomass and oilseed crops. We field tested, for 3 years, two artichoke and two cardoon cultivars and one wild cardoon (C. cardunculus L. var. sylvestris Lam.) population on the Sicilian plain of Catania (37°27′ N, 15°04′ E, 10 m a.s.l.). On a 3-year average, the dry aboveground biomass resulted about 31 t ha−1 in both cultivated cardoons, 18.8 t ha−1 in wild cardoon, 13.7 t ha−1 in globe artichoke ‘3/10 V.S.’ and 9.9 t ha−1 in globe artichoke ‘374’ F1. The caloric values of aboveground biomass (except for seeds), which was not significantly different among genotypes, ranged between 16 005 and 17 028 KJ kg−1 of dry matter. The cultivated cardoon ‘Gigante di Lucca’ had the greatest grain yield (on 3-year average, 2.6 t ha−1), whereas the two globe artichokes had the lowest yield (on 3-year average, 0.5 t ha−1). Regardless of genotypes and years, the grains contain 20.1% crude protein, 24.4% oil, 18.5% crude fiber and 4.1% ash (dry weight basis). The grains of globe artichokes showed the highest crude protein content (21.6%), whereas those of cardoons the highest oil content (25.2%).  相似文献   

18.
【目的】探明籼粳杂交稻甬优2640的氮素吸收利用特点。【方法】籼粳杂交稻甬优2640、常规粳稻连粳7号和常规籼稻扬稻6号种植于大田,设置6种施氮量处理(0、100、200、300、400、500 kg/hm 2)和 15N示踪微区试验。【结果】在0~400 N kg/hm 2范围内,甬优2640的稻谷产量随施氮量的增加而提高;连粳7号和扬稻6号的产量则是先增加后降低,在施氮量300 kg/hm 2时产量最高;相同施氮量下,甬优2640的产量均高于连粳7号和扬稻6号。甬优2640产量较高,这得益于地上部较高的干物质量和库容量(总颖花量)。适量增施氮肥提高了籽粒中 15N积累量,但其在籽粒中的分配比例却随施氮量的增加而降低。甬优2640穗中的 15N分配比例高于连粳7号和扬稻6号。高施氮量降低水稻氮收获指数。增施氮肥明显提高3个水稻品种穗分化期、抽穗期和灌浆中期叶片的硝酸还原酶、谷氨酰胺合成酶和谷氨酸合酶活性;相同施氮量下,甬优2640的各种酶活性显著高于连粳7号和扬稻6号。【结论】籼粳杂交稻甬优2640较常规水稻品种具有更强的氮素吸收与利用能力。  相似文献   

19.
以基因型TF291柱花草为供试材料,分析低磷处理(5 μmol/L)对柱花草生长、抗氧化物质及抗氧化保护酶的影响,探索柱花草抗氧化系统在低磷胁迫下的响应机制。结果表明:(1)与对照磷处理(250 μmol/L)相比,低磷处理抑制了柱花草生长,其叶绿素浓度、最大光化学效率、地上部和根部生物量均显著降低(P<0.05)。(2)随着低磷处理时间的增加,15 d时叶片CAT、POD、SOD、ASP、PAL活性和类黄酮含量显著提升(P<0.05);30 d时叶片CAT、SOD、ASP、PPO活性和MDA、H2O2含量显著提高(P<0.05)。本研究结果可为进一步探索低磷胁迫下柱花草抗氧化系统的分子响应机制提供重要依据。  相似文献   

20.
We examined the effects of salinity on four wild (Phaseolus angustissimus, Phaseolus filiformis, P. microcarpus, and P. vulgaris) and two cultivated (P. acutifolius and P. vulgaris L.) Phaseolus species. Relative growth rate (RGR, g g−1 per day), unit leaf rate (ULR, g m−2 per day), leaf area ratio (LAR, m2 g−1), specific leaf area (SLA, m2 g−1), leaf weight ratio (LWR, g leaf g−1), and rate of ion uptake were calculated for the period between 10 and 20 days after planting. Salinity significantly reduced RGR, ULR, LAR, and SLA whereas LWR showed no definite trend. In all species, except in P. filiformis, ULR, but not LAR, was significantly correlated with RGR, indicating that ULR was an important factor underlying the salinity-induced differences in RGR among species. In P. filiformis, high salinity reduced SLA, and consequently LAR. The significant correlation of SLA and LAR with RGR suggested that growth components affecting leaf area expansion were the primary factors explaining the inhibition of growth in this species. Increasing salinity progressively decreased leaf water vapor conductance. The rate of CO2 assimilation decreased gradually with salinity, showing significant reductions only at the highest salt level (80 mM NaCl). Approximately two-thirds of the reduction in CO2 assimilation rate at high salinity was attributable to reduced stomatal conductance. In P. filiformis, however, neither stomatal conductance nor CO2 assimilation were affected by salt stress. Leaf water and osmotic potentials declined significantly as stress intensified. However, osmotic adjustment permitted the maintenance of positive turgor throughout the growth period. Salinity had a significant effect on tissue concentrations of Na+, K+, Ca2+, and Cl and on the uptake rate of Na+, K+, Ca2+, and Cl. Thus, in addition to the toxic effects of high concentrations of Na+ and Cl in plant tissue, saline-induced changes in mineral nutrient uptake likely contributed to the reduction of plant growth. It appears that salt tolerance in P. filiformis is associated with Na+ exclusion and organ Na+ compartmentation in roots and stems as well as sustained K+ concentration in leaves and better stomatal control through osmotic adjustment. All other Phaseolus species are Na+ excluders, and maintained turgor-driven extension growth by accumulating Cl (osmotic adjustment), but subsequent weight gain reductions suggest that this led to ion toxicity.  相似文献   

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