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71.
[目的] 研究不同收获期对2种玉米农艺性状和生物学产量的影响,选择适宜在内蒙古乌兰察布市凉城县制作青贮饲料的玉米品种以及最佳收获期。[方法] 以全株青贮玉米吉东81和粮用玉米甘优702为试验材料,试验期为2019年9月5日至10月5日,设11个收获日期,分析不同收获日期2种玉米株高以及各部位鲜物质产量、干物质含量和干物质产量的变化。[结果] 2种玉米株高随着收获期的延长呈先增加后平稳趋势,9月17日吉东81和甘优702的株高最高,分别为3.51 m和2.94 m,试验期间吉东81的平均株高显著(P <0.05)高于甘优702。2种玉米茎叶、秆、果穗和整株鲜物质产量呈先上升后下降趋势,干物质含量呈递增趋势,干物质产量呈先上升后平稳趋势。2种玉米整株平均鲜物质产量差异不显著(P >0.05),吉东81的整株平均干物质含量和干物质产量显著(P <0.05)低于甘优702。[结论] 全株青贮玉米品种吉东81最佳收获期为9月23—26日,粮用玉米品种甘优702最佳收获期为9月17—20日,且在相同种植条件下全株青贮玉米品种吉东81更适合在内蒙古乌兰察布市凉城县推广。 相似文献
72.
抽穗扬花期高温胁迫对不同耐热性水稻生理指标的影响 总被引:1,自引:0,他引:1
高温热害对水稻生产造成了巨大的损失,其危害机理研究刚刚起步。为了研究不同耐热性水稻在高温胁迫下主要生理指标的变化情况,对其生理指标与耐热性的关系进行分析。结果表明:不同品种的水稻,耐热性存在差异,可以通过耐热系数筛选不同的耐热品种;高温胁迫对不同耐热性水稻的生理指标有较大的影响,绝大多数的生理指标随高温处理时间延长,表现出先增大,达到峰值后下降的趋势;耐热性强的水稻品种,各个生理指标的峰值出现的较晚,耐热性差的品种,较早达到峰值;耐热系数和生理指标相关分析表明耐热系数除与MDA含量呈正相关关系外,与各生理指标上呈负相关关系,其中与CAT酶活性相关系数到达了-0.75222**。高温胁迫下,水稻水稻生理指标会发生很大的变化;每个生理指标基本都有峰值出现,表明生物体高温热害是应激物质等调节存在反馈机制;高温胁迫时生理指标变化与耐热性有一定的相关性。 相似文献
73.
L. H. M. Broers 《Euphytica》1989,44(3):273-282
Summary Partial resistance (PR) in wheat to wheat leaf rust (Puccinia recondita f.sp. tritici) is characterized by a slow epidemic build-up despite a susceptible infection type. Two greenhouse tests and two field tests, in which 11 spring wheat cultivars were exposed to five wheat leaf rust races, revealed some indication for race-specificity of PR.In the greenhouse, the expression of PR was highly dependent on the environment. Significant cultivar-race interactions in the first experiment were lost in the second experiment probably due to cultivar-environment and cultivar-race-environment interactions.In the polycyclic field tests several factors played a role in explaining the inconsistency of the cultivar-race interactions, such as differences in initial inoculum, genotypic differences in earliness, interplot interference or environmental conditions.One cultivar-race combination showed a significant but small interaction towards susceptibility in both field experiments. The interaction was probably too small to detect in the monocyclic greenhouse tests. The results do not conflict with the idea that a gene-for-gene relationship could exist between PR-genes in the host and genes in the pathogen.Some problems with regard to the selection of PR in wheat to wheat leaf rust are discussed. 相似文献
74.
Summary Leaves and plants of different ages of a susceptible and two resistant groundnut genotypes were mechanically inoculated with peanut bud necrosis virus, and the percentage of plants with systemic symptoms (incidence) and the incubation period were determined. The incidence decreased sharply in all three genotypes with the age of the inoculated leaves and plants. The incubation period increased with the age of leaves and plants. Apparently, only young tissue of young plants is susceptible, while mature tissue and plants are highly resistant. This mature tissue and plant resistance occurs irrespective of the susceptibility level of the genotype to peanut bud necrosis virus, however, it develops earlier in the resistant than in the susceptible genotypes.Abbreviations IP50
incubation period
- PBNV
peanut bud necrosis virus
- TSWV
tomato spotted wilt virus 相似文献
75.
对两个亚热带优质蛋白玉米群体的适应性混合选择研究:Ⅱ.相关响应 总被引:6,自引:0,他引:6
在两个源于亚热带的优质蛋白玉米(QPM)群体,中群13和中群14中,对早开花性状进行4轮混合选择,籽 粒产量和植株形态特征发生显著的相关响应。1989至1991年在北京作的4年评价试验中,中群13和中群14平均每轮每亩籽粒产量分别增加41.8(28.7%)和41.5kg(29.0%)。与线性回归响应(b=37.4和40.4kg)相吻合。1991年在北京、济南、武功、成都和海南三亚作的5点联合试验中 相似文献
76.
J. E. Parlevliet 《Euphytica》1978,27(2):369-379
Summary The latent period (LP) is a crucial component of partial resistance. Five cultivars, L94, Sultan (Su), Volla (Vl), Julia (Ju) and Vada (Va), representing the known range in partial resistance and LP were crossed in a diallel, and the F1, F2 and F3 tested. The LP effectuated by the five cultivars is about 9, 101/2, 101/2, 13 and 151/2 days, respectively. The crosses Su×L94, Vl×L94 and Ju×L94 had an F2 positively skewed. Their F2 means were similar or only slightly larger than the F1 means. The F2 frequency distributions in the crosses Vl×Su, Ju×Su and Ju×Vl were normal or nearly so with F1 and F2 means similar to each other and to the mid-parent value. The crosses involving Va as a parent again showed a positive skewness but with F2 means considerably larger than the F1 moans.Most F2's ranged from the low parent to the high parent values without transgression. In the crosses Va×L94 (reported earlier) and Ju×L94 the parental values were not recovered among 216 and 154 F2 plants, respectively. The cross Ju×Va showed transgression beyond the low parent, Ju.From these data it is concluded, assuming no linkage, that seven loci are involved. The + alleles (governing a longer LP) are thought to be distributed over the parents as follows: % MathType!MTEF!2!1!+-% feaafiart1ev1aaatCvAUfeBSjuyZL2yd9gzLbvyNv2CaerbuLwBLn% hiov2DGi1BTfMBaeXatLxBI9gBaerbd9wDYLwzYbItLDharqqtubsr% 4rNCHbGeaGqiVu0Je9sqqrpepC0xbbL8F4rqqrFfpeea0xe9Lq-Jc9% vqaqpepm0xbba9pwe9Q8fs0-yqaqpepae9pg0FirpepeKkFr0xfr-x% fr-xb9adbaqaaeGaciGaaiaabeqaamaabaabaaGceaqabeaacaqGmb% GaaeyoaiaabsdacaqGGaGaaeiiaiaabccacaqGGaGaaeiiaiaabcca% caqGGaGaaeiiaiaab2cacaqGTaGaaeiiaiaabccacaqGGaGaaeiiai% aabccacaqGGaGaaeiiaiaabccacaqGTaGaaeylaiaabccacaqGGaGa% aeiiaiaabccacaqGGaGaaeiiaiaabccacaqGGaGaaeylaiaab2caca% qGGaGaaeiiaiaabccacaqGGaGaaeiiaiaabccacaqGGaGaaeiiaiaa% b2cacaqGTaGaaeiiaiaabccacaqGGaGaaeiiaiaabccacaqGGaGaae% iiaiaabccacaqGTaGaaeylaiaabccacaqGGaGaaeiiaiaabccacaqG% GaGaaeiiaiaabccacaqGGaGaaeylaiaab2cacaqGGaGaaeiiaiaabc% cacaqGGaGaaeiiaiaabccacaqGGaGaaeiiaiaabccacaqGTaGaaeyl% aiaabccaaeaacaqGtbGaaeyDaiaabccacaqGGaGaaeiiaiaabccaca% qGGaGaaeiiaiaabccacaqGGaGaaeiiaiaabccacaqGRaGaae4kaiaa% bccacaqGGaGaaeiiaiaabccacaqGGaGaaeiiaiaabccacaqGRaGaae% 4kaiaabccacaqGGaGaaeiiaiaabccacaqGGaGaaeiiaiaabUcacaqG% RaGaaeiiaiaabccacaqGGaGaaeiiaiaabccacaqGGaGaaeiiaiaab2% cacaqGTaGaaeiiaiaabccacaqGGaGaaeiiaiaabccacaqGGaGaaeii% aiaabccacaqGTaGaaeylaiaabccacaqGGaGaaeiiaiaabccacaqGGa% GaaeiiaiaabccacaqGGaGaaeylaiaab2cacaqGGaGaaeiiaiaabcca% caqGGaGaaeiiaiaabccacaqGGaGaaeiiaiaabccacaqGTaGaaeylaa% qaaiaabAfacaqGSbGaaeiiaiaabccacaqGGaGaaeiiaiaabccacaqG% GaGaaeiiaiaabccacaqGGaGaaeiiaiaabUcacaqGRaGaaeiiaiaabc% cacaqGGaGaaeiiaiaabccacaqGGaGaaeiiaiaabUcacaqGRaGaaeii% aiaabccacaqGGaGaaeiiaiaabccacaqGGaGaaeylaiaab2cacaqGGa% GaaeiiaiaabccacaqGGaGaaeiiaiaabccacaqGGaGaaeiiaiaabUca% caqGRaGaaeiiaiaabccacaqGGaGaaeiiaiaabccacaqGGaGaaeiiai% aab2cacaqGTaGaaeiiaiaabccacaqGGaGaaeiiaiaabccacaqGGaGa% aeiiaiaabccacaqGTaGaaeylaiaabccacaqGGaGaaeiiaiaabccaca% qGGaGaaeiiaiaabccacaqGGaGaaeiiaiaab2cacaqGTaaabaGaaeOs% aiaabwhacaqGGaGaaeiiaiaabccacaqGGaGaaeiiaiaabccacaqGGa% GaaeiiaiaabccacaqGGaGaae4kaiaabUcacaqGGaGaaeiiaiaabcca% caqGGaGaaeiiaiaabccacaqGGaGaae4kaiaabUcacaqGGaGaaeiiai% aabccacaqGGaGaaeiiaiaabccacaqGRaGaae4kaiaabccacaqGGaGa% aeiiaiaabccacaqGGaGaaeiiaiaabccacaqGRaGaae4kaiaabccaca% qGGaGaaeiiaiaabccacaqGGaGaaeiiaiaabccacaqGRaGaae4kaiaa% bccacaqGGaGaaeiiaiaabccacaqGGaGaaeiiaiaab2cacaqGTaGaae% iiaiaabccacaqGGaGaaeiiaiaabccacaqGGaGaaeiiaiaabccacaqG% GaGaaeylaiaab2caaeaacaqGwbGaaeyyaiaabccacaqGGaGaaeiiai% aabccacaqGGaGaaeiiaiaabccacaqGGaGaaeiiaiaabUcacaqGRaGa% aeiiaiaabccacaqGGaGaaeiiaiaabccacaqGGaGaaeiiaiaabUcaca% qGRaGaaeiiaiaabccacaqGGaGaaeiiaiaabccacaqGGaGaae4kaiaa% bUcacaqGGaGaaeiiaiaabccacaqGGaGaaeiiaiaabccacaqGGaGaae% 4kaiaabUcacaqGGaGaaeiiaiaabccacaqGGaGaaeiiaiaabccacaqG% GaGaaeylaiaab2cacaqGGaGaaeiiaiaabccacaqGGaGaaeiiaiaabc% cacaqGGaGaae4kaiaabUcacaqGGaGaaeiiaiaabccacaqGGaGaaeii% aiaabccacaqGGaGaaeiiaiaabUcacaqGRaaaaaa!1BBA!\[\begin{gathered} {\text{L94 - - - - - - - - - - - - - - }} \hfill \\ {\text{Su + + + + + + - - - - - - - - }} \hfill \\ {\text{Vl + + + + - - + + - - - - - - }} \hfill \\ {\text{Ju + + + + + + + + + + - - - - }} \hfill \\ {\text{Va + + + + + + + + - - + + + + }} \hfill \\ \end{gathered} \]The genes are supposed to act additively (intermediate inheritance) with the exception of one locus (the 6th or 7th locus) which shows dominance for the shorter LP (for the-alleles). The effect of this locus on LP seems considerably larger than that of the other loci. There are indications of physiological barriers, which means that LP's shorter than the one of L94 or much longer than that of Va are not possible.The effect of + genes in genotypes governing LP's close to these barriers (with very few or very many + alleles respectively) is smaller than in genotypes governing intermediate LP's. 相似文献
77.
为探讨生茸期梅花鹿日粮中铜的最适宜添加范围,将20只2岁雄性梅花鹿随机分成A、B、C、D共4组,每组5只。A组饲喂不添加铜的全价颗粒料,B、C、D组在全价颗粒料的基础上分别添加15、40、80 mg/kg蛋氨酸螯合铜。结果:梅花鹿生茸期日粮加铜,改善了营养物质消化率,除干物质外,对其他营养物质消化率影响均达到显著或极显著水平(P<0.05或P<0.01),变化趋势40 mg/kg时发生改变;梅花鹿生茸期日粮中添加铜对血液生化指标有影响,其中对血清铜蓝蛋白活性影响最为显著(P<0.05),当日粮铜添加量为40 mg/kg时,其活性达到最大值;梅花鹿日粮加铜,对血清及毛中铜含量影响显著(P<0.05);梅花鹿鹿茸产量随日粮加铜量的增加呈现先上升后下降的趋势,在日粮铜添加量为40 mg/kg时,茸产量达到最大值;梅花鹿鹿茸氨基酸含量随日粮加铜量的增加而增加,鹿茸含铜量随铜水平的增加呈现先上升后下降状态。综合各项指标,梅花鹿生茸期日粮铜的适宜添加量为40 mg/kg。 相似文献
78.
79.
80.
针对北方地区核桃受晚霜危害制约生产效益的问题,在渭河平原中部选择避晚霜品种及适宜的授粉品种,对12个早实核桃品种物候期进行了观察.结果表明:不同早实核桃品种物候期各异.早实核桃各物候期(除展叶期)均与有效积温呈极显著正相关.“辽核3号”、“辽核4号”、“香玲”、“鲁光”、“扎343”、“维纳”、“吐来尔”、“强特勒”为雄先型品种;“西林2号”、“西扶2号”、“温185”、“中林5号”为雌先型品种.“西林2号”、“西扶2号”、“中林5号”、“维纳”、“吐来尔”和“强特勒”雌雄花期部分相遇;“香玲”、“鲁光”、“辽核3号”、“辽核4号”、“温185”、“扎343”雌雄花期不相遇;“西林2号”、“西扶2号”、“香玲”、“鲁光”、“扎343”可为“辽核3号”、“辽核4号”、“温185”授粉;“扎343”和“温185”可以相互授粉.“香玲”、“鲁光”、“扎343”的雌花期基本能避开晚霜危害;“维纳”、“吐来尔”、“强特勒”能避开晚霜危害,是渭北栽培核桃的首选品种. 相似文献