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1.
氮、磷、钾对豫麦50旗叶蔗糖和籽粒淀粉积累的影响   总被引:11,自引:0,他引:11  
以豫麦50为对象,探讨了氮、磷、钾对小麦旗叶中蔗糖的积累及相关酶活性以及籽粒中淀粉含量和组分的影响.结果表明,施氮可以增加灌浆前期旗叶中的糖含量,施钾则提高了灌浆后期旗叶中的糖含量,而施磷则对旗叶中的糖含量影响不大.施氮、磷、钾均能增加蔗糖合成酶活性,但它们的作用时间不同:施氮活性增加在籽粒灌浆中期,施磷在灌浆前期,而施钾在灌浆前、中期.但氮亦可增加花后24 d的磷酸蔗糖合成酶活性,施磷增加了灌浆前、中期磷酸蔗糖合成酶活性,施钾则增加了灌浆后期旗叶磷酸蔗糖酶活性.施氮、磷、钾都提高了籽粒中总糖含量,增加籽粒中淀粉含量,其中施钾效果最为明显.施磷提高籽粒中直链淀粉的积累,而施钾则显著提高了籽粒中支链淀粉的含量.  相似文献   

2.
施钾时期对冬小麦旗叶光合特性和籽粒淀粉积累的影响   总被引:18,自引:4,他引:14  
在相同施钾量的基础上。采用一次性基施,1/2基施、1/2于拔节期追施。研究施钾时期对小麦旗叶光合特性和籽粒淀粉积累的影响.结果表明。分期施钾比一次性施钾提高了小麦开花后旗叶的光合速率、旗叶中磷酸蔗糖合成酶(SPS)和籽粒中腺苷二磷酸葡萄糖焦磷酸化酶(ADPGPPase)的活性,提高了籽粒中蔗糖的供应强度和淀粉积累速率。增加了籽粒产量.研究还表明。两个施钾处理均提高了小麦叶片中蔗糖的合成能力和其在籽粒中转化为淀粉的能力,施钾提高产量的主要原因是施钾较好地协调了光合物质合成、运输与转化,即较好地协调了淀粉合成的源库关系.  相似文献   

3.
 利用普通玉米(Zay mays)‘掖单22’和高油玉米‘高油115’,研究了灌浆期水分差异供应对籽粒淀粉及其组分积累、相关酶活性动态变化的影响。结果表明,两种类型玉米淀粉积累和酶活性动态变化趋势基本一致,但对水分的反应有差异。缺水提高了‘掖单22’籽粒中淀粉、支链淀粉含量,而直链淀粉含量下降,‘高油115’则是籽粒中的淀粉含量、支链淀粉和直链淀粉含量提高;充分供水使淀粉及其组分产量提高;叶片中蔗糖合成酶(SS)、磷酸蔗糖合成酶(SPS)活性随水分供应水平而提高,尤其在授粉后10~30 d增幅更加明显。充分供水明显提高籽粒中腺苷二磷酸葡萄糖焦磷酸化酶(ADPG PPase)、尿苷二磷酸葡萄糖焦磷酸化酶(UDPG PPase)、可溶性淀粉合成酶(SSS)和淀粉粒结合淀粉合成酶(GBSS)活性,缺水使籽粒中酶活性下降较早且迅速;SPS、ADPG-PPase、SSS酶活性对缺水反应比较敏感。  相似文献   

4.
结实期土壤水分亏缺影响水稻籽粒灌浆的生理原因   总被引:3,自引:0,他引:3       下载免费PDF全文
通过分析结实期土壤水分亏缺对水稻(Oryza sativa)籽粒中蔗糖向淀粉合成的生理代谢中关键酶活性及籽粒灌浆的调节作用, 探讨土壤水分亏缺影响水稻籽粒灌浆的生理机制。结果表明, 适度土壤水分亏缺诱导了灌浆高峰期(花后15-20天)水稻籽粒中蔗糖合成酶、腺苷二磷酶葡萄糖焦磷酸化酶、可溶性淀粉合成酶及淀粉分支酶活性的增加, 提高了籽粒灌浆中前期(花后10-20天)籽粒中淀粉积累速率和籽粒灌浆速率。但在灌浆后期(花后20-30天)籽粒中, 上述关键酶活性下降较快, 籽粒活跃灌浆期明显缩短, 灌浆前中期灌浆速率的增加不能完全补偿灌浆期缩短带来的同化物积累损失, 导致水分亏缺处理水稻籽粒充实不良, 结实率、籽粒重和产量显著降低。研究认为, 灌浆期土壤水分亏缺引起的灌浆后期籽粒中蔗糖向淀粉合成代谢中一些关键酶活性快速下降和籽粒内容物的供应不足是籽粒淀粉积累总量减少、粒重降低的主要生理原因。  相似文献   

5.
小麦开花后旗叶中蔗糖合成与籽粒中蔗糖降解   总被引:26,自引:1,他引:25  
在小麦开花后,旗叶中蔗糖磷酸合成酶(SPS)活性在开花后14d内一直维持较高水平,蔗糖合成酶(SS)的活性在开花后14-28d较高,蔗糖的含量与SPS活性呈显著正相关,籽粒中蔗糖合成酶(SS)在开花后28d内一直维持较高的活性;与此相对应,籽粒蔗糖的含量在开花后28d内呈明显的下降趋势。而旗叶和籽粒中SS活性均与籽粒淀粉的积累速率呈极显著正相关。  相似文献   

6.
灌浆期间冬小麦多穗型品种豫麦49和大穗型品种豫麦66旗叶中蔗糖磷酸合成酶活性和可溶性糖含量变化均呈单峰曲线,后者的峰值出现较晚,灌浆中后期叶片中相关的酶活性下降缓慢。两品种旗叶中硝酸还原酶活性变化趋势基本相同,开花后5~20d问,豫麦49旗叶中NR活性高于豫麦66,20~35d间情况相反。在整个灌浆期间豫麦49籽粒淀粉积累速率呈双峰曲线,峰值分别出现在花后15~20d和25~30d问;豫麦66则为单峰曲线,峰值出现较晚但持续时间较长。  相似文献   

7.
氮、钾水平对小麦籽粒蛋白质合成关键酶活性的影响   总被引:1,自引:0,他引:1  
戴廷波  邹铁祥  荆奇  姜东  曹卫星 《生态学报》2009,29(9):4976-4982
在大田栽培条件下,以蛋白质含量差异的两个冬小麦(Triticum aestivum L.)品种宁麦9号(低蛋白)和扬麦10号(中蛋白)为材料,研究了不同氮、钾施肥水平对小麦旗叶与籽粒中游离氨基酸含量、蛋白质合成关键酶活性和籽粒蛋白质含量的影响及其与开花期旗叶氮、钾营养的关系.结果表明,氮、钾施肥显著提高了小麦花后旗叶与籽粒中游离氨基酸和籽粒蛋白质含量、旗叶谷氨酰胺合成酶(GS)及籽粒GS和谷丙转氨酶(GPT)活性,其中氮肥的作用大于钾肥、氮钾肥配合达到最大,对扬麦10号的效应大于宁麦9号.开花期旗叶氮/钾比随施氮水平的增加呈二次曲线变化,随施钾水平的增加呈下降趋势.旗叶GS活性和成熟期籽粒蛋白质含量与氮/钾比均呈显著或极显著的二次曲线关系.因此,旗叶和籽粒中蛋白质合成关键酶活性受开花期旗叶氮/钾比的显著影响,是氮、钾素影响小麦籽粒蛋白质形成的重要生理原因.  相似文献   

8.
小麦非结构性碳水化合物分配对水分胁迫的生理响应   总被引:1,自引:0,他引:1  
以‘西旱2号’小麦为试材,采用水分胁迫和复水处理方法,研究了小麦发育过程中不同水分胁迫下非结构性碳水化合物(NSC)在小麦旗叶、茎、叶鞘等器官中的动态变化,以及籽粒中碳代谢相关酶(可溶性淀粉合成酶SSS和淀粉粒结合态合成酶GBSS)活性的变化.结果表明:不同程度水分胁迫对小麦旗叶、茎、叶鞘等器官中蔗糖含量无显著影响.随水分胁迫的深入,花后12~ 18 d旗叶中淀粉含量显著增加;水分胁迫缩短了花后茎和叶鞘中淀粉的积累时间,抑制了茎中淀粉的转化和分配;而叶鞘中淀粉的积累逐渐增大,在中度水分胁迫下积累提前终止.在水分胁迫初期,各营养器官中的NSC含量为旗叶>茎>叶鞘;随着水分胁迫的深入,各营养器官中的NSC含量为茎>旗叶>叶鞘.小麦主要营养器官中NSC的分配速率及主要代谢酶的变化可能是小麦对水分胁迫的一种生理调节反应.  相似文献   

9.
施钾时期对食用甘薯光合特性和块根淀粉积累的影响   总被引:12,自引:0,他引:12  
在施钾240 kg·hm-2水平下,研究施钾时期对甘薯叶片光合特性和块根淀粉积累的影响.结果表明:与一次性施钾(全部基施)相比,分期施钾(1/2基施+1/2栽后75 d追施)提高了甘薯叶片的光合速率及叶片中磷酸蔗糖合成酶和块根中腺苷二磷酸焦磷酸化酶活性,提高了块根中淀粉积累速率(生育期平均增幅为6.7%),显著增加了块根产量(增幅为8.2%).与不施钾处理相比,两个施钾处理均提高了叶片中蔗糖的合成能力和蔗糖在块根中转化为淀粉的能力.  相似文献   

10.
防雨池栽条件下,设置渍水、干旱和对照3个土壤水分处理,每水分处理下再设置两个施氮水平,研究了花后渍水和干旱逆境下氮素水平对两个蛋白质含量不同的小麦品种光合特性和籽粒淀粉积累的影响.结果表明,与对照相比,花后渍水和干旱处理显著降低小麦旗叶净光合速率和SPAD值,干物质积累量下降.干旱处理下,增施氮肥提高旗叶光合速率和SPAD值,渍水处理下则相反.水分逆境明显降低籽粒可溶性总糖含量,且渍水处理下增施氮肥降低小麦叶片和籽粒可溶性总糖含量,干旱状态下规律相反.渍水处理下增施氮肥降低淀粉积累速率.水分逆境明显降低小麦粒重、产量和淀粉产量,且干旱处理下增施氮肥有利于籽粒重、产量和淀粉产量的提高,而渍水下增施氮肥使粒重和产量进一步降低.试验结果表明,花后渍水和干旱逆境下施用氮肥对小麦旗叶光合速率和籽粒淀粉积累有明显的调节效应.  相似文献   

11.
硫营养对小麦籽粒淀粉合成及相关酶活性的影响   总被引:20,自引:0,他引:20  
在田间条件下,研究了施硫对小麦籽粒淀粉合成及相关酶活性的影响.结果表明:在0~20 cm土层土壤有效硫含量为5.84 mg/kg的地块上施硫不仅提高了小麦籽粒中蔗糖的含量,而且催化蔗糖降解代谢的蔗糖合成酶(SS)活性提高,利于籽粒蔗糖的降解.施硫显著提高了灌浆期间籽粒可溶性淀粉合成酶(SSS)活性,并使腺苷二磷酸葡萄糖焦磷酸化酶(ADPGPPase)和束缚态淀粉合成酶(GBSS)活性在灌浆中、后期维持在较高水平,对直链和支链淀粉的合成都起促进作用, 使总淀粉积累增加,千粒重提高,产量增加.  相似文献   

12.
以河套蜜瓜为试材,在果实迅速膨大期通过去果处理改变库源关系,研究源叶净光合速率,蔗糖、还原糖和淀粉含量及其代谢相关酶活性的昼夜变化规律。结果表明:(1)源叶的净光合速率为单峰曲线,无明显的"光合午休"现象,去果处理对其无影响。(2)源叶中蔗糖和还原糖含量的昼夜变化为单峰曲线,蔗糖磷酸合成酶和蔗糖合成酶合成方向活性的昼夜变化为双峰曲线,蔗糖合成酶分解方向、酸性转化酶和中性转化酶活性的昼夜变化无明显规律,改变库源关系对这些指标均无显著影响;蔗糖含量升高受蔗糖磷酸合成酶和蔗糖合成酶合成方向正调控,而蔗糖含量降低则受多种酶的共同调节。(3)源叶中淀粉含量和腺苷二磷酸葡萄糖焦磷酸化酶活性的昼夜变化为单峰曲线,去果处理可以显著提高淀粉含量和腺苷二磷酸葡萄糖焦磷酸化酶活性,淀粉含量升高受腺苷二磷酸葡萄糖焦磷酸化酶正调控。  相似文献   

13.
Weight of individual grains is a major yield component in wheat. The non-uniform distribution of single grain weight on a wheat spike is assumed to be closely associated with starch synthesis in grains. The present study was undertaken to determine if the enzymes involved in starch synthesis cause the differences in single grain weight between superior and inferior grains on a wheat spike. Using two high-yield winter wheat (Triticum aestivum L.) varieties differing in grain weight and three nitrogen rates for one variety, the contents of amylose and amylopectin, and activities of enzymes involved in starch synthesis in both superior and inferior grains were investigated during the entire period of grain filling. Superior grains showed generally higher starch accumulation rates and activities of enzymes including SS (sucrose synthase), UDPGPPase (UDP-glucose pyrophosphorylase), ADPGPPase (ADP-glucose pyrophosphorylase), SSS (soluble starch synthase) and GBSS (starch granule bound starch synthase) and subsequently produced much higher single grain weight than inferior grains. Nitrogen increased enzyme activities and starch accumulation rates, and thus improved individual grain weight, especially for inferior grains. The SS, ADPGPPase and SSS were significantly correlated to amylopectin accumulation, while SS, ADPGPPase, SSS and GBSS were significantly correlated to amylose accumulation. This infers that SS, ADPGPPase and starch synthase play key roles in regulating starch accumulation and grain weight in superior and inferior grains on a wheat spike.  相似文献   

14.
Wheat leaf non-sequential senescence at the late grain-filling stage involves the early senescence of younger flag leaves compared to that observed in older second leaves. On the other hand, sequential senescence involves leaf senescence that follows an age-related pattern, in which flag leaves are the latest to undergo senescence. The characteristics of sugar metabolism in two sequential senescence cultivars and two non-sequential senescence cultivars under both natural and drought conditions were studied to elucidate the underlying mechanism of drought tolerance in two different senescence modes. The results showed that compared to sequential senescence wheat cultivars, under natural and drought conditions, non-sequential senescence wheat cultivars showed a higher leaf net photosynthetic rate, higher soluble sugar levels in leaves, leaf sheaths, and internodes, higher leaf sucrose synthase (SS) and sucrose phosphate synthase (SPS) activity, and higher grain SS activity, thereby suggesting that non-sequential senescence wheat cultivars had stronger source activity. Spike weight, grain weight per spike, and 100-grain weight of non-sequential senescence cultivars at maturity were significantly higher than those of sequential senescence cultivars under both natural and drought conditions. These findings indicate that the higher rate of accumulation and the higher mobilization of soluble sugar in the leaves, leaf sheaths and internodes of non-sequential senescence cultivars improve grain weight and drought tolerance. At the late grain-filling stage, drought conditions adversely affected leaf chlorophyll content, net photosynthetic rate, soluble sugar and sucrose content, SS and SPS activity, gain SS activity, and weight. This study showed that higher rates of soluble sugar accumulation in the source was one of the reasons of triggering leaf non-sequential senescence, and higher rates of soluble sugar mobilization during leaf non-sequential senescence promoted high and stable wheat yield and drought tolerance.  相似文献   

15.
灌浆期间的豫麦66和豫麦49旗叶中蔗糖磷酸合成酶(SPS)和籽粒中蔗糖合成酶(SS)活性均呈单峰曲线变化,峰值分别出现在花后20和15 d,整个灌浆期内豫麦66 SPS与SS活性均高于豫麦49;豫麦66籽粒中腺苷二磷酸葡萄糖焦磷酸化酶(AGPP)和淀粉分支酶(SBE)活性均呈单峰曲线变化,峰值出现在花后20 d,而可溶性淀粉合成酶(SSS)活性则呈双峰曲线变化,峰值分别出现在花后10和20 d,且第二个峰值显著高于第一个.  相似文献   

16.
冬小麦籽粒淀粉合成相关酶活性的日变化   总被引:5,自引:0,他引:5  
蔗糖向淀粉的转化是决定小麦籽粒产量的重要因素。田间条件下研究了两个小麦(TriticumaestivumL.)品种“鲁麦22”和“鲁麦14”籽粒淀粉合成相关酶:蔗糖合酶(sucrosesynthase,SS)、腺苷二磷酸葡萄糖焦磷酸化酶(ADP-glucosepyrophosphorylase,ADPGPPase)、可溶性淀粉合酶(solublestarchsynthase,SSS)、束缚态淀粉合酶(starchgranule-boundsynthase,GBSS)的活性以及籽粒ATP含量的日变化。结果表明,上述酶活性呈现明显的昼夜变化特征,酶活性一般在白天较低,而在夜间呈现较高活性,而籽粒ATP含量趋势相反。相关分析表明,白天较低的酶活性可能与气温超过其适宜温度有关。对籽粒淀粉合成相关酶活性日变化的可能因子进行了讨论。  相似文献   

17.
The high sucrose phosphate synthase (SPS) capacity and the low soluble acid invertase activity of mature leaves of the first flush of leaves remained stable during second flush development. Conversely, fluctuations of sucrose synthase (SS) activity were in parallel with the sucrose requirement of the second flush. Sucrose synthase activity (synthesis direction) in first flush leaves could increase in 'response' to sink demand constituted by the second flush growth. Only the ptotosynthates provided by flush mature leaves were translocated for a current flush, while the starch content of these leaves remained stable. After their emergence, second flush leaves showed an increase in SPS and SS (Synthetic direction) activities. The high sucrose synthesis in second flush leaves was used for leaf expansion. When young leaves were 30% fully expanded (stage II20), SPS activity showed little change whereas SS activity declined rapidly toward and after full leaf expansion. The starch accumulation in the young leaves occured simultaneously with their expansion. Developing leaves showed a high level of acid invertase activity until maximum leaf expansion (stage II1). In first and second flush leaves, changes in acid invertase activity correlated positively with changes in reducing sugar concentrations. Alkaline invertase and sucrose synthase (cleavage direction) activities showed similar changes with low values when compared with those of acid invertase activity, especially in second flush leaves. The present results suggest that soluble acid invertase was the primary enzyme responsible for sucrose catabolism in the expanding common oak leaf.  相似文献   

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